This application claims the benefit of U.S. patent application Ser. No. 14/453,805, filed Aug. 7, 2014, which claims priority to EP Application No. 13003987, filed Aug. 9, 2013, the entire disclosures of which are hereby incorporated by reference.
The present invention relates to a nebulizer for nebulizing a fluid.
WO 2006/125577 A2 discloses a nebulizer which comprises, as a reservoir for fluid which is to be atomized or nebulized, an insertable rigid container having an inner bag containing the fluid and a pressure generator with a drive spring for delivering and atomizing the fluid. The container is pre-installed in nebulizer in a delivery state. The pre-installed container is held by a transportation lock unmovable within the housing in the delivery state in order to avoid any undesired opening of the container. Before being used for the first time a lower housing part of the nebulizer is completely closed. Thus, the pre-installed container is opened by a delivery tube piercing a sealing and a septum to fluidically connect to the inner bag of the container. Further, the transportation lock is opened so that the container can move inside the nebulizer back and forth.
By rotating the lower housing part the drive spring can be put under tension and fluid can be sucked into a compression chamber of the pressure generator. Simultaneously, the container is moved into the lower housing part in a stroke movement within the nebulizer and when tensioned for the first time the container may be pierced through its base by a piercing element in the lower housing part to allow venting of the container. After manual operation of a stop element the drive spring is released and moves the delivery tube into the pressure chamber so that the fluid is put under pressure by the drive spring and is delivered or atomized through a nozzle into a mouthpiece as an aerosol, without the use of propellant gas.
WO 2007/022898 A2, US 2011/0011393 A1, and WO 2012/162305 A1 disclose a similar nebulizer. A container can be inserted into a housing of the nebulizer. The housing is closed by a lower housing part. The container is moving axially forth and back during conveying of the fluid to be nebulized, and during pressure generation and nebulization. A counter device can be arranged in the lower housing part. The counter device locks the nebulizer against further use if a predetermined number of operations has been reached or exceeded. Then, the housing part may be replaced together with the counter device and the container. The container may be connected inseparably with the housing part. Further, the nebulizer comprises a device for permanently locking the nebulizer when a certain number of containers have been used or when a certain number of operations have been reached.
Object of the present invention is to provide a nebulizer allowing easy and/or improved handling and/or secure or defined indication of handling and state.
According to one aspect of the present invention, the nebulizer comprises preferably a blocking device which is adapted to block opening of the housing, when the nebulizer or, in particular, its energy store is in a tensioned state (In this tensioned state, the nebulizer is in a loaded state, i.e. in a ready-to-discharge state, in particular in a state in which a dose of fluid is dispensed or discharged upon the actuation of a stop element). Preferably, the housing can only be opened if the nebulizer is in an untensioned state or discharged state. This allows or ensures secure handling and/or a defined position of the preferably moveable container when opening the nebulizer and/or replacing the container.
According to another aspect of the present invention, the nebulizer comprises preferably a blocking device, preferably the blocking device mentioned above, adapted to block indexing (i.e. the stepwise movement) of an indicator member, when the nebulizer or its energy store is in a tensioned state. This allows or ensures easy and/or improved handling and/or secure or defined indication of handling and state, in particular when the indicator member shows a required container replacement only when the nebulizer or its energy store is not in a tensioned state, i.e. preferably after relaxing the energy store or a drive spring of the nebulizer.
Preferably, the indicator member shows numbers and/or symbols, in particular indicating any required steps such as container replacement, closing of the housing, or the like.
Preferably, the blocking device controls blocking of opening of the housing by means of the indicator member, in particular by blocking required indexing of the indicator member.
Preferably, the blocking device blocks indexing of the indicator member in the tensioned state. The indicator member, in turn, blocks preferably opening of the housing in the tensioned state. Thus, the blocking device preferably indirectly (in particular by means of the indicator member and/or control member) controls or blocks opening of the housing and/or locks the nebulizer or housing part selectively against opening.
Preferably, the nebulizer comprises a counter device for counting pressurizing and/or dispensing operations of the nebulizer and a guidance device which comprises the indicator member and/or control member. In particular, an actuation part of the counter device cooperates with the guidance device when a predetermined number of pressurizing and/or dispensing operations have been reached or exceeded with the current container. Thus, the guidance device can indicate a required container replacement and/or enable the opening of the housing when a container has to be replaced.
The control of opening of the nebulizer via the indicator member allows a simple integration of the blocking device and/or results in a well defined indication of the necessary steps to a user and/or allows a secure handling for the user.
According to a further aspect of the present invention, the nebulizer comprises preferably an indicator device for indicating a tensioned state of the nebulizer or its energy store. This allows visualization of the status (tensioned or not tensioned) and facilitates handling of the nebulizer.
According to another aspect of the present invention, the nebulizer comprises preferably a manually depressible actuator member at a housing part, wherein the housing part is detachable together with the actuator member from the housing of the nebulizer for replacing the container when the actuator member is depressed. This facilitates the handling in particular because the user can detach the housing part together with the still depressed actuator member from the nebulizer and does not have to leave the actuator member at the nebulizer.
Preferably, the actuator member is or forms a push button. This allows very easy and intuitive manual actuation.
The actuator member or push button acts preferably on a retaining element arranged on or at the nebulizer non-detachable. Thus, the housing part is detached from the retaining elements as well when the housing part is detached from the nebulizer.
The retaining element forms preferably a catch or snap for preferably automatically holding or securing the housing part when it is shifted onto or into the nebulizer, most preferably with two catch positions, i.e. a first catch position with partly closed housing part or housing of the nebulizer and a second catch position with completely closed housing part or housing.
Preferably, the retaining element is blocked against release when the blocking device or indicator member blocks release of the retaining element. In particular, the blocking device or indicator member may block the retaining element against depression and, thus, against release (in this case, the retaining element cannot be depressed and, thus, the actuator member or push button can neither be depressed), in particular when a predetermined number of doses of fluid have not yet been dispensed from the current container, the nebulizer is still tensioned and/or a further container replacement is not allowed.
The above aspects of the present invention and the further aspect described below can be realized independently from each other, and in any combination.
Further advantages, features, characteristics and aspects of the present invention will become apparent from the claims and the following description of a preferred embodiment with reference to the drawings. It shows:
In the Figures, the same reference numerals are used for identical or similar parts, resulting preferably in corresponding or comparable properties and advantages, even if the associated description is not repeated.
When the fluid 2, preferably a liquid, more particularly a pharmaceutical composition, is nebulized, an aerosol 14 (
The nebulizer 1 is provided with or comprises an insertable or replaceable container 3 containing the fluid 2. The container 3 thus forms a reservoir for the fluid 2, which is to be nebulized. Preferably, the container 3 contains multiple doses of fluid 2 or active substance in particular sufficient to provide up to 200 dosage units or doses, for example, i.e. to allow up to 200 sprays or applications. A typical container 3, as disclosed in WO 96/06011 A1, holds e.g. a volume of about 2 to 20 ml.
It has to be noted that the dose can vary, in particular depending on the fluid 2 or medicament. The nebulizer 1 can be adapted respectively.
Further, the number of doses contained in the container 3 and/or the total volume of the fluid 2 contained in the container 3 can vary depending on the fluid 2 or respective medicament and/or depending on the container 3 and/or depending on the necessary medication or the like.
Preferably, the container 3 can be replaced or exchanged, wherein the number of containers 3, which can be used with the same nebulizer 1, is preferably restricted, e.g. to a total number of four or five containers 3.
The container 3 is preferably substantially cylindrical or cartridge-shaped and once the nebulizer 1 has been opened the container 3 can be inserted therein preferably from below and changed if desired. It is preferably of rigid construction, the fluid 2 in particular being held in a collapsible bag 4 in the container 3. In particular, the container 3 comprises a venting hole 31 which is opened before or during first use.
The nebulizer 1 comprises a delivery mechanism, preferably a pressure generator 5, for conveying and nebulizing the fluid 2, particularly in a preset and optionally in an adjustable dosage amount. The nebulizer or pressure generator 5 comprises preferably a holder 6 for releasably holding the container 3, a drive spring 7 associated to the holder 6, only partly shown, and/or a stop element 8 preferably in form of or with a button for preferably manual actuation or depressing, which stop element 8 can catch and block the holder 6 and can be manually operated to release the holder 6 allowing drive spring 7 to expand. The nebulizer 1 or pressure generator 5 comprises preferably further a conveying element, such as a conveying tube 9, a non-return valve 10, a pressure chamber 11 and/or a nozzle 12 for nebulizing the fluid 2 into a mouthpiece 13. The completely inserted container 3 is fixed or held in the nebulizer 1 via the holder 6 such that the conveying tube 9 penetrates into the container 3. The holder 6 is preferably constructed so that the container 3 can be exchanged.
When the drive spring 7 is axially tensioned in the tensioning process the holder 6 with the container 3 and the conveying tube 9 are moved downwards in the drawings and fluid 2 is sucked out of the container 3 into the pressure chamber 11 of the pressure generator 5 through the non-return valve 10. In this state, the holder 6 is caught by the stop element 8 so that the drive spring 7 is kept compressed. Then, the nebulizer 1 is in the so-called loaded or tensioned state.
During the subsequent relaxation in the nebulization process after actuation or pressing of the stop element 8 the fluid 2 in the pressure chamber 11 is put under pressure as the conveying tube 9 with its now closed non-return valve 10 is moved back in the pressure chamber 11, here in the drawings upwards, by the relaxation or force of the drive spring 7 and now acts as a pressing ram or piston. This pressure forces the fluid 2 through the nozzle 12, whereupon it is nebulized into the aerosol 14, as shown in
Generally, the nebulizer 1 operates with a spring pressure of 5 to 200 MPa, preferably 10 to 100 MPa on the fluid 2, and/or with a volume of fluid 2 delivered per stroke of 10 to 50 μl, preferably 10 to 20 μl, most preferably about 15 μl. The fluid 2 is converted into or nebulized as aerosol 14, the droplets of which have an aerodynamic diameter of up to 20 μm, preferably 3 to 10 μm. Preferably, the generated jet spray has an angle of 20° to 160°, preferably 80° to 100°. These values also apply to the nebulizer 1 according to the teaching of the present invention as particularly preferred values.
A user or patient (not shown) can inhale the aerosol 14, preferably while an air supply can be sucked into the mouthpiece 13 through at least one optional air supply opening 15.
Preferably, the drive spring 7 can be manually activated or tensioned (or the nebulizer 1 can be loaded), in particular by actuation of an actuation member.
The nebulizer 1 comprises preferably a housing or (upper) housing part 16 and optionally a biasing or inner part 17 preferably which is rotatable relative thereto (
The nebulizer 1 comprises preferably an in particular manually operable (lower) housing part or cap 18 releasable fixed, particularly fitted or held onto the inner part 17, preferably by means of a retaining element 19.
Preferably, the housing parts 16 and 18 and/or other parts form a housing of the nebulizer 1. In order to insert and/or replace the container 3, preferably the housing can be opened and/or the housing part 18 can be detached from the nebulizer 1 or its housing. Generally and preferably, the container 3 can be inserted before the housing is closed and/or before the housing part 18 is connected to the housing. Preferably, the container 3 is inserted, opened and/or fluidically connected to the delivery mechanism automatically or simultaneously when (completely) connecting the housing part 18 to the housing/nebulizer 1 and/or when (completely) closing the housing/nebulizer 1.
The actuation member, preferably the housing part 18, can be actuated, here rotated relative to the upper housing part 16, carrying with it or driving the inner part 17. As a result the drive spring 7 is tensioned in the axial direction by means of a gear or transmission (not shown) formed between the inner part 17, in particular its upper part 17a, and the holder 6 and acting on the holder 6. During tensioning the container 3 is moved axially downwards until the container 3 assumes an end position as shown in
The housing part 18 preferably forms a cap-like lower housing part and fits around or over a lower free end portion of the container 3. As the drive spring 7 is tensioned the container 3 moves with its end portion (further) into the housing part 18 or towards the end face thereof, while an aeration means, such as an axially acting spring 20 arranged in the housing part 18, comes in contact with base 21 of the container 3 and pierces the container 3 or a base seal thereon with a piercing element 22 when the container 3 makes contact with it for the first time, to allow air in or aeration.
The nebulizer 1 comprises preferably a counter device 23, which counts in particular actuations of the nebulizer 1, preferably by detecting its tensioning or the rotation of the inner part 17 relative to the upper part 16 or housing. Preferably, the counter device 23 or an associated lock locks the (further) actuation or use of the nebulizer 1, e.g. blocks further rotation of the housing part 18/inner part 17 and, thus, tensioning of the nebulizer 1 or its drive spring 7 and/or blocks actuation of the stop element 8, when a certain number of actuations or operations or discharged doses has been reached or exceeded.
A preferred construction and mode of operation of the inhaler or nebulizer 1 will now be described in more detail with reference to
Preferably, the container 3 is pre-installed. This can be realized in particular as shown in WO 2006/125577 A2 or as described in the following.
The container 3 comprises a fluid outlet 24 for outputting the fluid 2 to be dispensed. In particular, the fluid outlet 24 allows a fluidic connection between the container 3 or its bag 4 on one hand and the nebulizer 1, its pressure generator 5 or the conveying element on the other hand.
The fluid outlet 24 has an inner closure 25 that is preferably formed by a septum, a membrane, a plastic seal or the like and/or is provided inside the container 3. Optionally, a second or outer closure 26 can be provided such that successive opening is possible by means of one common element, in particular the conveying element or conveying tube 9 or the like, and/or by piercing.
Preferably, the first or inner closure 25 is formed or supported by a closure part 27 extending from the outlet or head end of the container 3 into the container 3 or bag 4. The second or outer closure 26 is preferably located adjacent to the head or axial end of the container 3 and/or held or connected to a flange 28, which can be formed by the closure part 27 or any other suitable part. However, other constructional solutions are possible.
In the delivery state according to
In particular, the container 3 is attached to or held by or secured in the housing part 18, in particular by a transportation lock 29, which is preferably arranged within or at the housing part 18.
The transportation lock 29 holds the container 3 preferably temporarily, in particular before attaching the housing part 18 to the nebulizer 1 and/or in the delivery state. In particular, the transportation lock 29 holds the container 3 fixed during the fluidic connection of container 3 and/or during the mechanic connection of container 3, here with holder 6. Preferably, the transportation lock 29 holds the container 3 fixed during opening, in particular piercing, the container 3.
In the delivery state, in which the nebulizer 1 can be shipped or delivered to the user or is still packed, the nebulizer 1 or the housing part 18 is preferably secured, in particular by means of a securing member 30, e.g. a banderole, such that the container 3 and/or housing part 18 are held sufficiently spaced from the nebulizer 1 or upper housing part 16 and/or prevented from being completely closed or completely inserted or pushed on the conveying element or tube 9, the housing or inner housing part 17 or the like and/or such that (complete) opening of the container 3, namely of the first closure 25, is prevented.
Once the security member 30 has been removed a user (not shown) can push the housing part 18 fully on in the axial direction and thereby open the container 3, i.e. first closure 25, by inserting the conveying element or conveying tube 9.
To prevent unwanted opening of the container 3, particularly of the first closure 25, in the delivery state of the nebulizer 1, and/or to prevent (axial) movement of the container 3 relative to the associated housing part 18 before complete closing of the nebulizer 1, preferably the transportation lock 29 is provided. By frictional, forcible or interlocking engagement, for example, the transportation lock 29 prevents the container 3 from undesirably moving axially.
Preferably, the opening of the transportation lock 29 occurs automatically when closing the nebulizer 1 or its housing completely, i.e. when snapping or pushing on the housing part 18 completely towards the upper housing part 16. During this (preferably linear, axial or telescopic) closing movement, the transportation lock 29 is opened and the container 3 released in axial direction preferably during or after piercing or opening the container 3 and/or preferably during only a last part of the movement and/or just little before the final completely closed position is reached or just when the final completely closed position is reached.
During the closing movement in which preferably parts 17 and 18 are joined, the transportation lock 29 is preferably opened by the direct or indirect interaction with or actuation by the housing of the nebulizer 1, the inner part 17 or its lower part 17b or the like. Preferably, the container 3 and/or first closure 25 are opened as well as the transportation lock 29 by means of a common actuation and/or component, here the closing movement of the nebulizer 1 or its housing or bottom part 18.
In the following, a preferred embodiment of the nebulizer 1 according to the present invention will be described in more detail with reference to the further Figures, wherein only essential differences from the nebulizer 1 described above or shown in
The nebulizer 1 or its housing or housing part 18 comprises preferably a securing device 32 which may have different functions. The securing device 32 may hold the container 3 such that the container 3 is moveable back and forth within the completely closed housing for conveying the fluid 2, pressure generation and/or nebulization, wherein the securing device 32 may ensure that the container 3 is inseparable from the housing or housing part 18. Thus, only complete replacement of the housing part 18 together with the respective container 3 is possible. Alternatively or additionally, the securing device 32 may form the transportation lock 29. Alternatively or additionally, the securing device 32 may prevent that the used container 3 and/or used housing part 18 can be (re)connected to or used with the nebulizer 1 once more.
When the securing device 32 or transportation lock 29 is closed, the container 3 is held or counter-beared for opening by inserting the conveying element or tube 9, preferably wherein a press-fit is formed between the conveying element or tube 9 and the container 3 or closure part 27, and/or for (completely) connecting the container (head) to the holder 6. With other words, the transportation lock 29 or securing device 32 form preferably a counter-bearing for the container 3 during closing of the nebulizer 1.
When the securing device 32 or transportation lock 29 is closed, the container 3 is held spaced from the piercing element 22.
The securing device 32 is preferably located or arranged or fixed at or in the housing part 18 as shown in
Preferably, the securing device 32 comprises or consists of a metal and/or stamped part and/or consists of a single, unitary part. The securing device 32 may consist of two or more parts, preferably connected by means of gluing, crimping, riveting, welding, or the like.
Preferably, the securing device 32 is made of steel, in particular spring steel. Preferably, the securing device 32 is produced from sheet material by cutting, stamping or the like and/or by bending. Preferably, the securing device 32 or a part thereof forms a cage, in particular encompassing the container 3 or an end portion thereof, in particular the container base 21.
Preferably, the securing device 32 comprises holding elements 33 and/or locking elements 34.
The elements 33 and/or 34 are preferably designed like arms, fingers, leaves or the like. In particular, the elements 33 and 34 are alternately distributed over the circumference of the container 3. Preferably, the securing device 32 comprises multiple holding elements 33 and multiple locking elements 34, in particular three or more holding elements 33 and three or more locking elements 34. Preferably, the elements 33 and 34 extend at least essentially axially and/or in the direction of the back and forth movement of the container 3 and/or in the direction of the longitudinal or main extension of the nebulizer 1 or main dispensing direction of the aerosol 14.
Preferably, the elements 33 and 34 are held by or connected with a base 35 of the securing device 32, as shown in
Preferably, the securing device 32 or base 35 comprises or holds the piercing element 22 for piercing the container 3, i.e. opening the container base 21 or its venting hole 31 or a respective sealing of the container 3 or the like in the activated and tensioned state, i.e. when the container 3 reaches its lower end position. In the shown and preferred embodiment, the piercing element 22 is formed by a respective bending of a spring portion 36 of the securing device 32 or its base 35. The spring portion 36 can support or facilitate the (complete or final) connection of the container 3 to the holder 6.
The securing device 32 or base 35 comprises preferably at least one or multiple fixing portions 37 for fixing the securing device 32 at or in the nebulizer 1 or housing or housing part 18. In particular, the fixing portions 37 may fix the securing device 32 when it is pressed into the housing part 18 by cooperating with the sidewall of the housing part 18. However, it is also possible to overmold the securing device 32, its base 35, the fixing portions 37 or the like. Moreover, the securing device 32 could be connected with the housing part 18 or the like in any other suitable manner, in particular, by a separate fixing member, by gluing or the like.
As already mentioned, the securing device 32 preferably forms the transportation lock 29 for holding the container 3 unmovable in the housing or housing part 18 in the delivery state of the nebulizer and/or before attaching the housing part 18 to the nebulizer 1. In this situation (in particular in the delivery state), the container 3 or a preferably radially protruding and/or circumferentially extending part or edge 38 thereof, preferably formed at the container base 21, is held preferably in a form-fit manner and/or between the holding elements 33 and locking elements 34, in particular between respectively formed or bent end portions 33a and 34a of the elements 33 and 34, respectively, as shown in
In the shown embodiment, the container 3 and/or edge 38 is caught between the end portions 33a and 34a, preferably alternatively. The holding elements 33 and/or end portions 33a grip or extend over the edge 38, and the locking elements 34 or its end portions 34a grip or extend under the edge 38, so that the edge 38 and container 3 are securely held in between, in particular by form-fit, preventing any axial movement of the container 3 relative to the securing device 32 and relative to the associated housing part 18 in this state or delivery state, i.e. with locked transportation lock 29/securing device 32.
Preferably, the end portions 33a and/or 34a are formed like claws or the like and/or extend preferably radially inwardly.
Preferably, the elements 33 and/or 34 can flex with its free ends radially outwardly.
Preferably, the securing device 32 is designed such that the associated container 3 can be connected with the securing device 32 by a respective axial force or movement, wherein the elements 33 and/or 34 flex preferably automatically outwardly as required to receive the container 3 in the locked position as shown in
For example, the ends of the end portions 33a could be inclined such that the container 3 may be inserted into or connected with the securing device 32 by a respective axial movement so that the holding elements 33 flex outwardly to allow passing of edge 38.
Preferably, the holding elements 33 or its end portions 33a prevent separation of the container 3 from the securing device 32 and, thus, from the associated housing part 18 or the like.
In the present embodiment, the holding elements 33 extend preferably above the end portions 33a and/or form or comprise preferably arm-like guiding and/or locking portions 33b. These axial extensions and/or these portions 33b extend axially beyond the end portions 33a and/or may cooperate with the container 3 or its edge 38 during axial assembly of the container 3 with the securing device 32 such that the holding elements 33 are flexed sufficiently outwardly so that the edge 38 can pass the end portions 33a and the container base 21 can be seated on the end portions 34a of the locking elements 34.
The locking elements 34 preferably comprise actuation portions 34b at its free ends extending axially beyond the end portions 34a. The actuation portions 34b may radially guide the container 3 and/or facilitate insertion of the container 3 or its edge 38 between the free ends of the locking elements 34 although the locking elements 34 are preferably radially inwardly biased as well as the holding elements 33.
When, the container 3 is held with its edge 38 between the end portions 33a and 34a, the transportation lock 29/securing device 32 is closed, i.e. the container 3 cannot move axially within the housing part 18 or nebulizer 1.
For opening the transportation lock 29 or securing device 32, the locking elements 34 and/or its end portions 34a are flexed preferably radially outwardly so that the container 3 can freely move axially, in particular restricted such that the edge 38 can only move axially within the securing device 32 and/or that the axial movement is restricted (in the drawings upwardly) by the holding elements 33 or its end portions 33b and/or such that the container 3 cannot be separated from the securing device 32. This opening of the transportation lock 29 or securing device 32 will take place when activating the nebulizer 1, when using the nebulizer 1 for the first time and/or when completely closing the nebulizer 1. Then, the container 3 can axially move, in particular back and forth and/or with its edge 38 between the end portions 33a and the piercing element 22 in the present embodiment. This situation is schematically shown in the schematic section according to
In
Preferably, the container is finally or completely or correctly connected to holder 6 when tensioning the nebulizer 1 or its drive spring 7 for the first time after completely closing the nebulizer 1. However, it is generally also possible that the nebulizer 1 is in the tensioned state, i.e. the drive spring 7 is already tensioned and the holder 6 is in the lower position, before or during (first) assembly with lower housing part 18. Consequently, the holder 6 should directly connect with the container 3 when completely closing the housing part 18, and the situation shown in
In
Preferably, the transportation lock 29 is opened or the locking elements 34 are flexed outwardly when completely closing the nebulizer 1 or its housing part 18, in particular by cooperation with or abutment of the inner part 17, its lower part 17b, a retaining part 39 and/or a securing part 40.
The retaining part 39 is preferably arranged at the upper housing part 16 or inner part 17. The securing part 40 is preferably arranged in the lower housing part 18.
The retaining part 39 is connected to the lower or free end of the inner part 17 or its lower part 17b in order to hold, bear or support an end (the lower end) of the drive spring 7.
In the embodiment shown in
In the preferred embodiment shown in
Preferably, the securing part 40 and/or locking elements 34 or actuation portions 34b comprise a respectively inclined guiding surface 41 or the like to convert the axial closing movement or movement of the securing part 40 into the desired radial opening movement of the locking elements 34 or actuation portions 34b and, thus, of the end portions 34a to open the transportation lock 29, in particular when the housing has been completely closed or when the housing part 18 has been pushed completely on the nebulizer 1.
However, other constructional solutions are possible to realize opening of the transportation lock 29 or securing device 32 or its locking elements 34 or end portions 34a when closing the nebulizer 1 or its housing parts 18.
In the preferred embodiment the securing part 40 serves alternatively or additionally another purpose. Namely, the securing part 40 prevents the locking portions 33b from moving radially apart or flexing radially outwards before the nebulizer 1 is assembled with its housing part 18 for the first time.
As already mentioned, the securing device 32 prevents preferably that a container 3 can be connected to or used with the nebulizer 1 once more. In particular, the securing device 32 can prevent that a used housing part 18 or used container 3 can be reconnected to the nebulizer 1 once it has been detached from the nebulizer 1. Thus, the securing device 32 prevents any undesired reuse of the container 3 and/or housing part 18 with its preferably inseparable container 3.
In the present embodiment, the undesired reuse is prevented in that the locking portions 33b force apart or move apart or radially and/or outwards at least after the used container 3 and/or housing part 18 has been detached from the nebulizer 1 such that the used container 3 and/or housing part 18 cannot be connected to or used with the nebulizer 1 once more. Preferably, the locking portions 33b are biased such that the locking portions 33b force apart or move radially and/or outwards after release.
In the preferred embodiment, the locking portions 33b are held together or held against moving apart, radially and/or outwards by the securing part 40 (schematically indicated in
The securing part 40 may cooperate with the locking portions 33b or protrusions 33c thereof (shown in
Preferably, the securing part 40 has opened the transportation lock 29 or locking elements 34 in the last part of the closing movement or just when completely closing the nebulizer 1 as already mentioned.
The schematic section of
The securing part 40 may additionally secure the holding elements 33 or its end portions 33a against radial opening when the securing part 40 is in its lower position as shown in
In the preferred embodiment, the counter device 23 is arranged preferably at the housing part 18 as schematically shown in
The counter device 23 counts the actuations or operations of the nebulizer 1 or the discharged doses, preferably for the respective container 3.
Preferably, the counter device 23 counts actuations or operations by detecting the rotation of the inner part 17 relative to the upper part 16 of the housing. With other words, the counter device 23 may count the tensioning the nebulizer 1 or its drive spring 7. However, other constructional solutions are possible.
Preferably, the counter device 23 comprises a threaded spindle or shaft 42 with an associated, preferably unitary formed drive gear 43. The counter device 23 comprises preferably further a rider 44 associated to the threaded shaft 42 and cooperating with the threaded shaft 42 such that the rider 44 is axially moved along the threaded shaft 42 as the shaft 42 is rotated.
The threaded shaft 42 is rotatable beared preferably in the lower housing part 18 and/or extents preferably parallel to the axial or longitudinal direction of the nebulizer 1 and/or to the axial or stroke movement of the container 3.
The drive gear 43 is located preferably at an upper end of the threaded shaft 42 and/or housing part 18, in particular such that it can mesh with a preferably inner toothing 45 of the housing or upper housing part 16 of the nebulizer 1 in the assembled state, i.e. when the housing of the nebulizer 1 is completely closed, as schematically shown in
The counter device 23 or its rider 44, in particular the axial position of the rider 44 along the threaded shaft 42, may show or indicate the number of operations, in particular of tensioning, actuations or doses, which have already been performed or used with the current container 3 or which can still be performed with the current container 3. This operation number can in particularly been shown by a pointer 46 and/or an associated scale or the like which are visible reasonable through a corresponding window or transparent part of the housing part 18. It has to be noted that the number has not be shown precisely. In particular, it may be sufficient that the counter device 23, the rider 44 or its pointer 46 give a rough indication of the number. For this purpose, it may be sufficient if the scale shows only different colored areas or regions roughly indicating said number. Further, it has to be noted that other constructional solutions are possible as well.
The counter device 23 works preferably mechanically. This allows a very simple and robust construction and a very secure operation.
The counter device 23 may control or provide preferably locking of the nebulizer 1, indicating any required container replacement and/or container counting. For this purpose, the monitoring 23 or the rider 44 comprises preferably an actuation part 47 as schematically shown in
The counter device 23 is associated to the respective housing part 18 and, thus, preferably to only one container 3 and counts operations of the nebulizer 1 with the respective container 3, i.e. counts (only) the number of doses of fluid 2 removed or still removable from this container 3.
It has to be noted that the first container 3 may be pre-installed together with the associated housing part 18 in the delivery state. This pre-installment is optional. Preferably, further separate containers 3 are delivered together with the nebulizer 1, wherein each container 3 is inseparably connected with an associated housing part 18 and, thus, with an associated counter device 23. Preferably, the counter device 23 or threaded shaft 42 of each housing part 18 is designed or provided with inhibition or brake means, such that any undesired counting or rotation is prevented before the respective housing part 18 is mounted to the nebulizer 1.
The nebulizer 1 comprises preferably a device 48 for counting the number of containers 3 that have been used or still can be used with the nebulizer 1 and/or for indicating or displaying said container numbers and/or symbols indicating container replacement and/or end of use. This device 48 is preferably for monitoring and/or user guidance.
Preferably, said numbers and/or symbols are visible or shown through a transparent part or window 49 of the nebulizer 1, in particular located in the upper housing part 16 as schematically indicated in
The nebulizer 1 or device 48 comprises preferably a member 50 for indicating or displaying said container number, symbols, a status, and/or user instructions, e.g. relating to container replacement, and/or for controlling locking of the nebulizer 1. Thus, the member 50 is also called indicator member and/or control member. Preferably, both functions are achieved by the same or one single member 50. However, it is also possible that the indicator member and the control member are formed by separate parts or multiple parts. Preferably, the following description shall be understood in such a broad sense.
Preferably, the nebulizer 1 or device 48 comprises a spring 51 for driving or moving, in particular rotating, the member 50. This spring 51 is shown in
—in particular in multiple steps and/or from an initial (rotational) position to a final (rotational) position—only by spring force or by means of the spring 51.
The spring 51 is preferably a helical, sleeve-like, ring-like and/or torsional spring and/or a leg spring. It is preferably located coaxially with and/or adjacent to the driven member 50
The spring 51 is preferably mounted in a biased state so that it applies a rotational force to the member 50. For this purpose, the spring 51 is supported with one end or leg at the nebulizer 1, in particular at the upper housing part 16, and engages with its other end or leg with member 50, e.g. by abutting a respective shoulder or bearing portion 67 (shown in
The member 50 is preferably formed by a unitary and/or molded part. The member 50 is preferably at least essentially ring-like and forms or comprises a preferably closed ring.
The member 50 comprises or is provided with numbers 52 indicating said container number, and/or with said symbols 53 for user guidance, in particular for indicating container replacement and/or end of use of the nebulizer 1. Preferably, the numbers 52 and symbols 53 are shown and/or arranged on the member 50 such that one or more numbers 52 and one or more symbols 53 alternate. In particular, between preferably consecutive numbers 52 one or more symbols 53 are arranged and/or shown such that these symbols 53 indicate e.g. necessary container replacement, opening of the nebulizer 1, closing of the nebulizer 1 or the like. This may be communicated or indicated by respective arrows, colors, marks or the like as symbols 53. Further, the last symbol 53 may indicate end of use of the nebulizer 1 or complete locking of the nebulizer 1, e.g. by an “X” or the like. This symbol 53 may be shown for example when the allowable number of operations or actuations of the nebulizer 1 have been reached or exceeded of the last container 3 that may be used with or in the nebulizer 1, i.e. indicating total or final locking of the nebulizer 1. In the present embodiment, preferably a sequence of at least two different symbols 53 is shown between different or consecutive numbers 52. This sequence of symbols 53 comprises preferably a first symbol 53 (e.g. arrow downwards) indicating opening of the nebulizer 1 for container replacement and a second symbol 53 (e.g. arrow upwards) indicating closure of the nebulizer 1 for completing container replacement. However, it is also possible to show only one, potentially similar or identical symbol 53 between the different or consecutive numbers 52, such as one symbol 53 indicating container replacement. Preferably, only one special or end symbol 53, such as “X”, is shown at the end when the allowable number of operations or actuations of the nebulizer 1 has been reached or exceeded for the last container 3 and/or when the nebulizer 1 is finally blocked and/or when no further container 3 can be inserted.
The member 50 comprises preferably engagement or stop portions 54 which are preferably formed by radial protrusions or the like in the present embodiment. The stop positions 54 are used preferably to allow or realize a stepwise movement or rotation (indexing) of the member 50.
The member 50 comprises further preferably blocking portions 55 which extend preferably axially and/or cooperate with the retaining element 19 to selectively lock the nebulizer 1 or housing part 18 against opening, in particular by selectively blocking the retaining element 19 against depressing or radial inward movement.
The member 50 comprises preferably control portions 56 for controlling or driving an associated lock 57 of the nebulizer 1. The control portions 56 are formed preferably by protrusions or indentions or inclined guiding surfaces or the like which preferably extend radially and/or which are preferably formed on an outer circumference of the member 50 or its ring portion. However, other arrangements are possible as well.
The lock 57 is preferably formed by a locking member 58 or a portion 59 thereof, which is preferably tongue-like, leaf-like and/or flexible.
The locking member 58 is preferably made of metal and/or formed by plate material and/or a stamped part or the like. The locking member 58 is preferably ring-like and/or sleeve-like.
The portion 59 is preferably bent or indented or provided with such a form, in particular in radial direction and/or provided with a crimp, corrugation 60 or the like, for cooperating with the member 50 and/or at least one or more or all of the control portions 56, in particular such that depending on the rotational movement or position of the member 50 the portion 59 is radially flexed, in particular outwards, or not. For example, the control portions 56 are indented or recessed so that a portion 59 is not flexed radially outwards if the respective corrugation 60, which extends radially inwards from the respective portion 59, is received in a portion 56 located adjacent to this corrugation 60 on the inner side. If the member 50 is in another rotational portion, the corrugation 60 may abut on the non-recessed outer periphery of member 50 so that the respective portion 59 is flexed outwards and the lock 57 is closed. Thus, the lock 57 is driven or controlled, namely closed and opened, by means of the control member 50, in particular depending on its rotational position.
As already mentioned, the device 48 or member 50 is preferably driven by spring force, in the present embodiment by the force of spring 51. In particular, the member 50 is rotated or indexed stepwise by means of the force of the spring 51, wherein a ratchet or stop mechanism is provided to ensure the only stepwise moving or rotating of the member 50. In particular, stop means engage with the stop portions 54 of the member 50. In the present embodiment, the mechanism or stop means are preferably formed by one or two stop elements 61. The stop elements 61 are preferably formed like arms and/or by the locking member 58. The stop elements 61 are preferably elastically flexible to selectively allow a stop portion 54 to pass, i.e. to selectively allow the member 50 to index one step further, or to block a stop portion 54 and, thus, member 50 against further rotation. Preferably, the stop elements 61 are biased into a stopping position such that each stop element 61 extends into the way of movement of the stop portions 24 such that no stop portion 54 can pass the respective stop element 61.
Preferably, at least two stop elements 61 are provided and preferably offset such that stop elements 61 can be actuated alternatively to allow the member 50 to index or move further by one step, i.e. by one rotational movement or increment when the stop elements 61 are alternatively actuated, e.g. flexed, in particular in axial and/or radial direction, to allow one stop portion 54 to pass. The stop elements 61 are preferably flexed upwards to allow the respective stop portion 54 to pass. The actuation of the stop elements 61 will be explained in more detail below.
The stop elements 61 or its free ends may be provided with a broadened abutment or engagement body or surface, in particular by respectively bending the element or arm 61, by overmolding or the like. Each stop element 61 may be provided with a contact element 61a as schematically shown in
In the following, the operation and handling of the nebulizer 1 will be explained in more detail.
The nebulizer 1 may be delivered with a pre-installed container 3 and pre-attached housing part 18. In this case, the nebulizer 1 or its housing part 18 is not completely closed so that the container 3 is not yet fluidically connected or opened.
Alternatively the nebulizer 1 may be delivered with a separate container 3 and housing part 18. In this case the container 3 and the housing part 18 are preferably pre-assembled, i.e. form a unit that is separate from the nebulizer 1.
In any case, the nebulizer 1 is preferably delivered together with multiple containers 3, e.g. four or five containers 3, wherein each container 3 is inseparably connected to an associated housing part 18. These units of containers 3 and housing parts 18 can be exchanged so that the nebulizer 1 can be used with multiple containers 3 one after the other.
In both cases, the container 3 is preferably held unmoveably at or within the housing part 18 by the closed transportation lock 29 or securing device 39.
In both cases, the housing part 18 comprises preferably a coding, e.g. by one or more grooves, protrusions, ribs 62 or the like distributed around the inner circumference of the housing part 18 and/or axially extending, as schematically indicated in
Before (completely) closing the nebulizer 1 or its housing part 18, the device 48 or indicator member 50 may indicate by a respective symbol 53, such as an arrow pointing upwards, to completely close the nebulizer 1 or housing part 18.
When the housing part 18 is completely closed, the container 3 associated to the housing part 18 is fluidically connected to the nebulizer 1. This is detected or registered by the nebulizer 1 or device 48. This detection of the connection of the housing part 18 and, thus, of an associated container 3 is preferably realized mechanically, in particular by actuating one of the stop elements 61 to allow the member 50 to index one step further, i.e. until the other stop element 61 stops further indexing or rotation of the member 50. In the present embodiment, this registration or actuation is preferably achieved by a protrusion 64 formed at the housing part 18, in particular at its upper front face, as shown in particular in
As already mentioned, the container 3 is preferably inseparable from the housing part 18, the associated counter device 23 and/or associated securing device 32. Thus, after connection of a new container 3 with the nebulizer 1, the associated counter device 23 starts counting of the number of operations or uses of the respective container 3 that have already been performed or still can be performed. This operation number may be indicated or shown by the counter device 23 or its rider 44 or pointer 46 as already mentioned, while the device 48 or member 50 preferably only shows the container number 52, i.e. the number of containers 3 that have already been used or still can be used with the nebulizer 1.
Preferably, the nebulizer 1 is blocked against opening until the current container 3 has been (sufficiently) emptied, and/or until a predetermined number of operations or actuations has been reached or exceeded. This blocking of the nebulizer 1 or its housing part 18 against opening and/or container replacement is preferably achieved by a respective blocking portion 55 of the member 50 located below the retaining element 19 in this state as schematically indicated e.g. in
When a predetermined number of operations or actuations of the nebulizer 1 has been reached, the nebulizer 1 is blocked against further use with the current container 3. This blocking is also called first locked state.
The first locked state is entered preferably by means of the counter device 23. In particular, the rider 44 or its actuation part 47 cooperate with the device 48 to enter the first locked state, when a predetermined number of operations have been reached or exceeded with the current container 3. Particularly, the rider 44 or its actuation part 47 reach an upper axial position in this state and actuate a respective stop element 61 or contact element 61a that is in blocking position or engagement with a stop portion 54. Thus, the stop element 61 or contact element 61a is preferably flexed or deformed such that the previously stopped stop portion 54 can pass and the member 50 is free to index one step further by the force of spring 51.
The above indexing of the member 50 by one step leads to the first locked state. In this state, the nebulizer 1 or retaining element 19 is unblocked so that it can be opened. In particular, the blocking portion 55 blocking actuation of the retaining element 19 in the previous state is moved further, so that the retaining element 19 is not blocked any more, but can be actuated or pushed in order to allow detachment of the housing part 18 for container replacement.
In the first locked state the nebulizer 1, device 48 or member 50 indicates preferably by a respective symbol 53, in particular by an arrow pointing downwards, that container replacement is necessary and/or that the nebulizer 1 is locked against further use with the current container 3.
By the above indexing of the member 50 to reach the first locked state, the nebulizer 1 is locked against further use. This is achieved in particular in that the member 50 drives the lock 57 to lock the nebulizer 1 against further actuation, preferably against further tensioning of the drive spring 7 and/or against rotating of the housing part 18. This is preferably realized in that the rotation of the member 50 flexes the lock 57 or portion 59 of the locking member 58 radially outwards so that the flexed portion 59 leaves its non-locking position, into which it is biased, and locks further rotation of the inner part 17 relative to the upper housing part 16. This locking is in particularly achieved in that a free end of the portion 59 engages into a respective toothing or against respective abutment surfaces formed at the inner surface of the upper housing part 16. In this respect it has to be noted that the device 48 is preferably arranged or mounted on inner part 17, particular on its upper part 17a, wherein the preferably ring-like locking member 58 is preferably arranged around the rotatable member 50. The locking member 58 is preferably secured against rotation relative to the inner part 17 by respective form fit engagement, preferably of the inner part 17 or at least one protrusion 17c thereof into a recess 65 of the locking member 58. In the present embodiment, the recess 65 is preferably formed like a pocket or a portion cut-out of the periphery from one axial side. In particular, the locking member 58 may be provided with two or more recesses 65 as schematically shown in
Consequently, only member 50 is rotatable relative to inner part 17 and, thus, to locking member 58. However, locking member 58 is rotatable together with inner part 17 relative to upper housing part 16.
As already mentioned, the control member 50 is moveable, in particular rotatable, relative to locking member 58. This relative rotation is meant when any rotation or indexing of the control member 50 is mentioned. In this context, it has to be considered that the device 48 and the locking member 58 are rotated together with the inner part 17, but this rotation is different as this is the movement for tensioning the energy store, here spring 7, and/or for delivering or sucking fluid 2 out of the container 3 by in particular axial movement of the conveying element or tube 9.
The construction mentioned above, results in that the device 48 is rotated together with the inner part 17 each time the lower housing part 18 is rotated, i.e. when tensioning the drive spring 7. This rotation is preferably performed in 180° steps. Therefore, the device 48 or indicator member 50 comprises preferably two sets of respective number 52 and/or symbols 53 that are shown alternately through the window 49.
Thus, the member 50 comprises preferably two groups of numbers 52 and/or symbols 53, each group with the respective sequence of numbers 52 and/or symbols 53, wherein the groups are arranged offset by 180° on the member 50. This offset correspondence to the rotational angle for each rotational actuation of the lower housing part 18 and inner part 17 for tensioning the nebulizer 1/drive spring 7.
Preferably, the control portions 56 and/or the peripheral parts of the control member 50 in between the portion 56 form an inclined or control plane or surface cooperating with the portion 59 or its cam or corrugation 60 such that the lock 57 or the locking can be actuated alone by the force of the spring 51 acting on the member 50. In particular, the spring 51 or member 50 drives the lock 57. Further, the member 50 controls the lock 57 or the locking. As the member 50 also forms an indicator member, the indicator member drives the lock 57 or locking as well.
In the present embodiment, the locking member 58 is preferably arranged outside or around the control member 50 at least around a cylindrical main part of control member 50. In particular, the locking member 58 encompasses or covers at least substantially the cylindrical main part of the control member 50. The locking member 58 comprises preferably two openings 66 (shown in
In the first locked state, the member 50 is preferably stopped against further rotation by the protrusion 64 where any other part corresponding to the attachment of the housing part 18. When the housing part 18 is detached from the nebulizer 1 or its upper housing part 16 or inner part 17 for container replacement, this detachment is registered by unblocking the further movement or rotation of the member 50. In particular, a stop portion 54 of the member 50 which has been stopped by protrusion 64 or the like, can pass after detachment of the housing part 18 so that the member 50 can index one step further. In this further rotational position, the nebulizer 1 is still in its first locked state, i.e. is still locked against further use, in particular against further actuation or tensioning of the drive spring 7. However, the member 50 may show the next symbol 53, in particular an arrow pointing upwards, indicating that a new container 3 has to be connected and/or that a new housing part 18 has to be connected to the nebulizer 1. This situation correspondents to the initial situation before first assembly of the nebulizer 1 with the housing part 18 as already described.
It has to be noted that the stop element 8 is preferably blocked against actuation, in particular against release of the holder 6 and drive spring 7 in the first locked state. This actuation locking will also be achieved by the device 48 or member 50.
When the housing part 18 and the associated container 3 have been replaced, this is registered by the device 48, in particular by actuation of the corresponding stop element 61 by means of the protrusion 64. Then the member 50 indexes one step further and shows the next container number 52. Then, the lock 57 is reset, i.e. opened or unlocked again. Thus, the nebulizer 1 is unlocked and can be used further with the new container 3. Simultaneously, the container 3 or housing part 18 is preferably locked again against opening or container replacement, in particular in that the next blocking portion 55 is positioned below retaining element 19 to prevent actuation of the retaining element 19 which is necessary for opening the nebulizer 1.
The above sequence can be repeated, i.e. new containers 3 and new housing parts 18 can be used one after the after with the nebulizer 1, wherein the device 48 or indicator member 50 displays or shows the container number 52 and, preferably, symbols 53 for user guidance, in particular to indicate any necessary container replacement and/or indicating to open and close the nebulizer 1 or the like. The container number 52 relates in particular to the number of containers 3 that have already been used with the nebulizer 1 or still can be used with the nebulizer 1. In particular, one or more symbols 53 are displayed or shown alternately with the consecutive container numbers 52. This is realized preferably by one comment component, namely indicator member 50. However, other constructional realizations are possible.
Further, the display of the container numbers 52 and/or symbols 53 works preferably only mechanical.
In particular, the device 48 and/or the lock 57 work only mechanical.
After a predetermined number of containers 3 have been connected to or with the nebulizer 1, the nebulizer 1 will be blocked against further container replacement. After using the lastly inserted or connected container 3, the nebulizer 1 will enter the final locked state, i.e. the second locked state, preferably where the lock 57 or nebulizer 1 is blocked against resetting and/or the nebulizer 1 or housing part 18 is blocked against opening. This second locked state is entered in particular after the predetermined number of operations has been reached or exceeded with the ultimate, current container 3. Similar to the previous process the counter device 23 or its rider 44 or actuation part 47 actuates the device 48, in particular the corresponding stop element 61 to allow to index the member 50 one step further into its final rotational position. Thus, the second locked state is entered.
In the second lock state, the control member 50 cannot be rotated any further. This is realized in the present embodiment in particular in that the bearing portion 67 abuts one protrusion 17c of the inner part 17 engaging into one of the recesses 65. However, other constructional solutions are possible in order to realize the desired rotational stop or blocking for the control member 50 in the final rotational position, i.e. in the second locked state.
In the second locked state, the device 48 or member 50 does not allow opening of the nebulizer 1 or housing part 18 as it would be in the case in the first locked state. Instead, the member 50 comprises a respectively designed, preferably sufficiently long blocking portion 55 to block the retaining element 19 further against actuation and, thus, to block the nebulizer 1 against opening and container replacement.
In the second locked state, the nebulizer 1 can be locked against further actuation, in particular against tensioning of the drive spring 1 and/or rotation of the housing part 18 or inner part 17. This can be realized by actuating the lock 57, in particular by flexing portion 59 radially (preferably outwards) by the member 50 or its corresponding control portion 56. In the second locked state, the nebulizer 1 is preferably locked against any further discharge of fluid 2, in particular by blocking actuation of the stop element 8. This is preferably also realized by device 48.
Therefore, the nebulizer 1 cannot be used anymore after the second locked state has been entered. The second locked state is not reversible. In particular, resetting or unlocking of the lock 57 is not possible, but prevented in the second locked state.
As already outlined above, some general aspects or ideas of the nebulizer 1 according to the preferred embodiment can be summarized as indicated in the following.
The device 48 consists preferably only of two parts (control member 50 and locking member 58) or three parts (control member 50, spring 51 and locking member 58), but provides multiple functions, in particular displaying of numbers 42 and/or symbols 53 and/or user instructions, locking of the nebulizer 1 against further use, locking of the nebulizer 1 against tensioning, and/or locking of the nebulizer 1 against opening or container replacement.
The nebulizer 1 may comprise the indicator member 50 for showing numbers, in particular container numbers 52 and alternately symbols 53 indicating container replacement and/or nebulizer opening and/or closing.
The indicator member 50 may be moved or rotated stepwise by the force of the spring 51.
The indicator member 50 may drive the lock 57 of the nebulizer 1 such that the nebulizer 1 is locked against further use in the first locked state, when he container 3 has to be replaced, wherein the first locked state is reset by indexing the indicator member 50 and/or resetting the lock 57 if the container 3 and/or housing part 18 have been replaced.
The indicator member 50 is preferably ring-like.
The indicator member 50 works or shows the numbers 52 and/or symbols 53 mechanically. The nebulizer 1 comprises preferably the lock 57 for locking the nebulizer 1 against further use in the first locked state, in particular when the container 3 has to be replaced.
Preferably, the first locked state is reset by resetting the lock 57, if the container 3 and/or housing part 18 have been replaced. With other words, the lock 57 is preferably resettable and can be used further after container replacement. In particular, an exchange or replacement of the lock 57 is not necessary to reuse the nebulizer 1.
The nebulizer 1 comprises preferably the control member 50 for controlling or driving the lock 57.
The control member 50 is preferably moved or rotated stepwise by the force of the spring 51.
The lock 57 and/or first locked state is preferably blocked against resetting in the second locked state.
The second locked state is preferably entered when a predetermined number of containers 3 has been used or inserted into the nebulizer 1 and, preferably after a predetermined number of operations has been performed or exceeded with the nebulizer 1 after inserting the last container 3.
The control member 50 is preferably ring-like.
Preferably, the control member 50 forms the indicator member or vice versa.
The control member 50 displays preferably the numbers 52 of containers 3 that have been used or still can be used and/or the symbols 53 indicating containing replacement and/or user guidance or nebulizer handling.
The control member 50 blocks preferably opening of the nebulizer 1 and/or container replacement until a predetermined number of operations has been reached or exceeded with the current container 3.
Preferably, the nebulizer 1 is locked against opening or container replacement, in particular by means of the control member 50, in the second locked state.
Preferably, the nebulizer 1 is locked against opening or container replacement, in particular by means of the control member 50, before the first locked state has been reached.
Preferably, the lock 57 locks the nebulizer 1 in the first and/or second locked state against conveying fluid 2 into the pressure generator 5 and/or against tensioning of the drive spring 7 of the nebulizer 1 and/or against rotation or turning of the housing part 18 or inner part 17.
Preferably, the housing part 18 has to be replaced each time the container 3 is replaced. In particular, the container 3 is inseparable from the housing part 18 and/or counter device 23 or vice versa.
The securing device 32, in particular its moved apart locking portions 33b, preferably prevent that the used and/or detached container 3 can be re-connected to or reused with the nebulizer 1 once more and or prevent that a used or detached housing part 18 can be reconnected to the nebulizer 1 once more.
Preferably, the housing part 18 can be or has to be detached or opened for replacing the container 3.
Preferably, the securing device 32 is associated to the container 3 preventing that a used container 3 can be connected or used with the nebulizer once more.
The nebulizer 1 comprises preferably a blocking device 68 which—in the tensioned state of the nebulizer 1 or energy store or drive spring 7—blocks opening of the nebulizer 1 or housing and/or blocks detachment of the housing part 18 and/or blocks indexing of the member 50.
In particular, the member 50, preferably the rotational position of member 50, controls locking and unlocking of the housing or housing part 18 or retaining element 19. Thus, the blocking device 68 blocks opening of the housing or detaching of the housing part 18 in the tensioned state of the nebulizer 1 preferably via or by means of the indicator/control member 50, in particular by selectively blocking indexing of a member 50.
Preferably, the housing of the nebulizer 1 is blocked against opening in a form-fit manner when the nebulizer 1 is in its tensioned state.
Preferably, the blocking device 68 comprises a blocking element 68a as shown in different perspective views in
The blocking device 68 or blocking element 68a comprises preferably a blocking part 68b for engaging or cooperating with the member 50 (see
The blocking part 68b protrudes or extends preferably radially.
The blocking element 68a or blocking part 68b is preferably moveable axially and/or selectively in engagement with member 50, in particular with a member recess 72, and out of engagement.
Preferably, the blocking element 68a or blocking part 68b has different (axial) positions depending on the state of the nebulizer 1, namely tensioned or un-tensioned, and/or is moveable between different positions in response to the movement of the container 3 or holder 6 or drive spring 7 at its end at the holder 6.
Thus, by the cooperation of blocking part 68b with the member 50, the blocking device 68 preferably always blocks the member 50 against rotational indexing, when the nebulizer 1 or its energy store (drive string 7) is in the tensioned state.
Preferably, the blocking device 68 or its blocking part 68b prevent any indexing of the member 50 in the tensioned state of the nebulizer 1 independent on the position of the counter device 23 or its rider 44, i.e. each time the nebulizer 1 is tensioned.
The blocking element 68a is preferably received or guided in an inner recess of the inner part 17, in particular upper part 17a of inner part 17. The inner part 17 or upper part 17a comprises preferably at least one guiding element 71, in particular two guiding ribs or elements 71, in particular on opposite sides, for holding the blocking element 68a, in particular such that it can move axially relative to the inner part 17 and/or the member 50. Preferably, the blocking element 68a is snapped in a gliding rail or the like, here formed preferably by the guiding elements 71.
In the present embodiment, the blocking device 68 or blocking element 68a or blocking part 68b is moved or driven preferably by the movement of the container 3, the drive spring 7 or the holder 6. In particular, the blocking device 68 or blocking element 68a engages with an engagement part 68g into a holder recess 69 formed in the holder 6. In particular, the engagement or coupling of the blocking device 68 or blocking element 68a with the holder 6 or any other component driving or moving the blocking device 68 or blocking element 68a can be realized as a rigid connection or alternatively as a flexible or articulated engagement and/or as any other suitable drive connection e.g. with play, relative movability between the interconnected parts, an intermediate transmission element or the like.
In the tensioned state of the nebulizer the container 3, holder 6 and holder side of the drive spring 7 are in a different axial position than in the untensioned state. Thus, different positions of the blocking device 68 engaged to or triggered by at least one these components also correspond to the tensioned and untensioned state of the nebulizer 1, respectively.
In the present embodiment, the blocking device 68 or blocking element 68a comprises in addition to the blocking part 68b preferably a base 68c and/or guiding part 68d.
The base 68c holds preferably the blocking part 68b which protrudes preferably radially outwardly from the blocking element 68a or base 68c.
The guiding part 68d is provided preferably with noses 68e, in particular at opposite sides and respectively offset, such that the blocking element 68a or guiding part 68d is moveably guided and held by means of the guiding elements 71 of the inner part 17 engaging in between the noses 68e. However, other constructional solutions are possible as well.
The blocking device 68 or blocking element 68a comprises preferably an arm 68f for holding the engagement part 68g. In the present embodiment, the arm 68f extends essentially in axial direction and is inclined from the inner part 17 to the holder 6 within the inner part 17 so that the engagement part 68g can preferably completely sit in or engage into the holder recess 69 of the holder 6.
Generally it is possible to connect the engagement part 68g and, thus, the blocking element 68a, rigidly with one of the components, in particular the holder 6, for following the axial movement, in particular over the entire axial stroke. However, it is also possible to reduce the stroke of the engagement part 68g and, thus, of the blocking element 68a in comparison to the stroke of the container 3, holder 6 and the like, wherein different end stops limiting the stroke of the blocking element 68a can be provided, as it is preferred in the present embodiment.
In particular, the engagement part 68g has play (i.e. can move relative to the holder 6) in the holder recess 69 in the axial direction of movement. Alternatively or additionally, the holder recess 69 may be open towards the drive spring 7 so that the end of the drive spring 7 forms one (axial) end stop for the engagement part 63g and, thus, for the blocking element 68a. The other or upper end stop 69a is preferably formed by the other end of the holder recess 69, as shown in
The position of the end stops define the end of the movement of the engagement part 68g relative to the axial stroke or movement of the container 3 and holder 6 and, thus, defines the coupling.
In the present embodiment, the holder recess 69 is preferably open towards the drive spring 7, but forms the upper end stop 69a as indicated in
The engagement part 68g follows—at least partly, in particular depending on the position of the end stops—the axial movement of the holder 6 and/or drive spring 7 and, thus, the back and forth movement of the container 3. This drive movement of the engagement part 68g preferably transmitted by arm 68f controls, moves or drives the blocking device 68 or blocking element 68a, in particular the blocking part 68b.
The orientation or position, such as upwards, downwards, upper, lower or the like mentioned above or used in the following, refers to the usual orientation of the nebulizer 1 or container 3 where the nebulizer 1 is at least essentially vertical and/or the outlet, nozzle 12 or mouthpiece 13 points upwards and/or the housing part 18 is at the bottom of the nebulizer 1 and/or the axial direction of the container 3 or its movement is vertical and/or the fluid outlet 24 or head of the container 3 is directed vertically upwards.
The counter device 23 is preferably driven by the movement, in particular rotation, of the housing part 18 or inner part 17 relative to the housing or upper part 16 for tensioning the nebulizer 1, energy store or drive spring 7. Thus, the counter device 23 or its rider 44 or actuation part 47 will reach its final axial end position (upper position) when the nebulizer 1 is tensioned for the last time. In this end position, the counter device 23 or its rider 44 or actuation part 47 unlocks the member 50 in particular by flexing stop element 61 or contact element 61a out of locking engagement with member 50 or the respective stop portion 54. However, the blocking device 68 or blocking part 68b still prevents the member 50 from indexing one step further into the first or second locked state until the nebulizer 1 has been actuated for the last time with the present container 3 to relax the energy store or drive spring 7.
The actuation of the nebulizer 1, i.e. release of drive spring 7, results namely in that the holder 6 and container 3 move axially towards the mouthpiece 13, i.e. upwards, and, simultaneously the blocking device 68 or its blocking part 68b is moved out of engagement with member recess 72 or member 50 so that member 50 is free to index one step into the first or second locked state.
In the present embodiment, the upper end of the drive spring 7 forms the lower end stop which abuts at the lower end of the engagement part 68g of the blocking element 68a and finally moves the blocking part 68b out of engagement with member recess 72 or member 50 when the holder 6 and container 3 move upwards.
It has to be noted that during each downward movement of the holder 6 or during each tensioning of the nebulizer 1 or drive spring 7, the holder 6 or more precisely, the upper end stop 69a, moves or pushes the engagement part 68g and, thus, the blocking element 68a downwards and/or into engagement with member 50, in particular such that blocking part 68b moves axially into member 50 or its member recess 72.
In the first locked state, the member 50 unlocks the retaining element 19 so that the nebulizer 1 or its housing can be opened, in particular the housing part 18 can be detached, for replacing the container 3, in particular together with the housing part 18 and counter device 23.
It has to be noted that the member 50 comprises preferably multiple engagement possibilities, in particular member recesses 72, so that the blocking device 68 or blocking part 68b can engage into the respective member recess 72 depending on the actual rotational position of the member 50 in response to the actual number of containers 3 already used.
In the present embodiment, the indicator device 73 comprises preferably an indicator element 74. The indicator element 74 is preferably driven or moveable, in particular pivotable, by the stop element 8.
In the present embodiment, the indicator device 73 or indicator element 74 comprises preferably at least one indicator portion 75 with preferably different colors, symbols or the like for indicating the (pivotable) position of the indicator element 74 and/or of the stop element 8 and, thus, the state of the nebulizer 1 (tensioned or non-tensioned).
The nebulizer 1 or its upper part 16 comprises preferably a window 78 for viewing at least part of the indicator element 74 or indicator portion 75 to indicate the state.
In the present embodiment, the indicator element 74 comprises preferably an engagement portion 76, e.g. a protrusion, bolt or the like. The stop element 8 comprises preferably a drive portion 77, which is preferably fork-like and/or engages the engagement portion 76 for driving or moving, in particular pivoting, the indicator element 74 depending on the (radial) position of the stop element 8. However, other constructional solutions for coupling or linking the stop element 8 with the indicator device 73 are possible.
The nebulizer 1 comprises preferably a manually depressible actuator member 79, in particular in the form of a button or the like, at the housing part 18. Preferably, the actuator member 79 is received or held in a housing recess 81 formed at or by the housing part 18.
In the present embodiment, the actuator member 79 is preferably connected with or held by an actuator portion 80 or formed as a unitary piece with the actuator portion 80. Preferably, the actuator portion 80 is for securing the actuator member 79 at the housing part 18 and/or biasing the actuator member 79 into its non-depressed position shown in
Preferably, the retaining element 19 is connected with and not detachable from the nebulizer 1 or its inner part 17, i.e. is separated from the housing part 18 when detaching the housing part 18, as it is the case e.g. in the embodiment shown in
The housing part 18 comprises preferably a holding portion 82, in particular a shoulder or nose formed at the side of the housing recess 81 and/or adjacent to the actuator member 79, for interacting or cooperating with at the retaining element 19 or a retaining shoulder 83 of the retaining element 19.
Preferably, the retaining recess 84 and/or holding portion 82 comprises respectively inclined surfaces so that it is possible only to push the housing part 18 completely on the inner part 17, i.e. to completely close the housing, without actuating or depressing the actuator member 79 so that the nebulizer 1 can be completely closed as shown in
In the completely closed state, the holding portion 82 extends preferably over the retaining shoulder 83 so that the housing part 18 is secured in form-fit manner at the nebulizer 1 or inner part 17 or retaining element 19.
When depressing the actuator member 79, the retaining element 19 can flex inwardly (if not blocked by a blocking portion 55 of the member 50 as shown e.g. in
The retaining element 19 comprises preferably a retaining portion 85 which extends towards the member 50 and can be selectively blocked against depression by the blocking portion 55 depending on the rotational position of the member 50. In
It has to noted that the blocking of opening of the nebulizer 1, i.e. the blocking of detaching the housing part 18 from the nebulizer 1 or inner part 17, functions in the previous embodiment preferably in a similar manner, namely by blocking the retaining element 19 against depression by means of one of the blocking portions 55 depending on the rotational position of the member 50 (compare
As already mentioned, individual features, aspects and/or principles of the embodiments described may also be combined with one another as desired and may be used particularly in the nebulizer according to
Unlike freestanding equipment or the like the proposed nebulizer 1 is preferably designed to be portable and in particular is a mobile hand operated device.
The proposed solution may, however, be used not only in the nebulizers 1 specifically described here but also in other nebulizers or inhalers, e.g. powder inhalers or so-called metered dose inhalers.
Preferably, the fluid 2 is a liquid, as already mentioned, especially an aqueous pharmaceutical formulation or an ethanolic pharmaceutical formulation. However, it may also be some other pharmaceutical formulation, a suspension or the like.
According to an alternative embodiment the fluid 2 may also comprise particles or powder. In this case, instead of the expulsion nozzle 12, some other kind of supply device may be provided, especially an expulsion opening (not shown) or a supply channel (not shown) for supplying the fluid to or powder or the like into the mouthpiece 13. The optional air supply opening 15 then serves to supply ambient air preferably in parallel so as to general or allow an airflow with a sufficient volume for breathing in or inhaling through the mouthpiece 13.
If necessary the fluid 2 may also be atomized by means of a propellant gas.
Preferred ingredients and/or formulations of the preferably medicinal fluid 2 are listed in particular in WO 2009/115200 A1, preferably on pages 25 to 40, or in EP2 614 848 A1, paragraphs 0040 to 0087, which are incorporated herewith by reference. In particular, these may be aqueous or non-aqueous solutions, mixtures, formulations containing ethanol or free from any solvent, or the like.
Number | Date | Country | Kind |
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13003987 | Aug 2013 | EP | regional |
Number | Name | Date | Kind |
---|---|---|---|
1828864 | Hopkins | Oct 1931 | A |
2015970 | Schoene | Oct 1935 | A |
2127401 | Gillican | Aug 1938 | A |
2161071 | McGrath et al. | Jun 1939 | A |
2321428 | Schloz | Jun 1943 | A |
2329311 | Waters | Sep 1943 | A |
2362103 | Smith | Nov 1944 | A |
2651303 | Johnson et al. | Sep 1953 | A |
2720969 | Kendall | Oct 1955 | A |
2793776 | Lipari | May 1957 | A |
2974880 | Stewart et al. | Mar 1961 | A |
3032823 | Sherman et al. | May 1962 | A |
3157179 | Allen et al. | Nov 1964 | A |
3172568 | Modderno | Mar 1965 | A |
3196587 | Hayward et al. | Jul 1965 | A |
3223289 | Bouet | Dec 1965 | A |
3299603 | Shaw | Jan 1967 | A |
3348726 | La Cross | Oct 1967 | A |
3354883 | Southerland | Nov 1967 | A |
3425591 | Pugh, Sr. | Feb 1969 | A |
3440144 | Anderson et al. | Apr 1969 | A |
3457694 | Tatibana | Jul 1969 | A |
3491803 | Galik | Jan 1970 | A |
3502035 | Fedit | Mar 1970 | A |
3580249 | Takaoka | May 1971 | A |
3590557 | Vogel | Jul 1971 | A |
3606106 | Yuhas | Sep 1971 | A |
3632743 | Geller et al. | Jan 1972 | A |
3655096 | Easter | Apr 1972 | A |
3674060 | Ruekberg | Jul 1972 | A |
3675825 | Morane | Jul 1972 | A |
3684124 | Song | Aug 1972 | A |
3802604 | Morane et al. | Apr 1974 | A |
3817416 | Costa | Jun 1974 | A |
3820698 | Franz | Jun 1974 | A |
3842836 | Ogle | Oct 1974 | A |
3858580 | Ogle | Jan 1975 | A |
3861851 | Schiemann | Jan 1975 | A |
3870147 | Orth | Mar 1975 | A |
3924741 | Kachur et al. | Dec 1975 | A |
3933279 | Maier | Jan 1976 | A |
3946732 | Hurscham | Mar 1976 | A |
3949751 | Birch et al. | Apr 1976 | A |
3951310 | Steiman | Apr 1976 | A |
3953995 | Haswell et al. | May 1976 | A |
3973603 | Franz | Aug 1976 | A |
4012472 | Lindsey | Mar 1977 | A |
4031892 | Hurschman | Jun 1977 | A |
4036439 | Green | Jul 1977 | A |
4048997 | Raghavachari et al. | Sep 1977 | A |
4067499 | Cohen | Jan 1978 | A |
4094317 | Wasnich | Jun 1978 | A |
4120995 | Phipps | Nov 1978 | A |
4126559 | Cooper | Nov 1978 | A |
4153689 | Hirai et al. | May 1979 | A |
4174035 | Wiegner | Nov 1979 | A |
4177938 | Brina | Dec 1979 | A |
4178928 | Tischlinger | Dec 1979 | A |
4195730 | Hunt | Apr 1980 | A |
4245788 | Wright | Jan 1981 | A |
4275840 | Staar | Jun 1981 | A |
4315570 | Silver et al. | Feb 1982 | A |
4338765 | Ohmori et al. | Jul 1982 | A |
4377106 | Workman et al. | Mar 1983 | A |
4434908 | French | Mar 1984 | A |
4456016 | Nowacki et al. | Jun 1984 | A |
4463867 | Nagel | Aug 1984 | A |
4467965 | Skinner | Aug 1984 | A |
4474302 | Golderberg | Oct 1984 | A |
4476116 | Anik | Oct 1984 | A |
4515586 | Mendenhall et al. | May 1985 | A |
4516967 | Kopfer | May 1985 | A |
4524888 | Tada | Jun 1985 | A |
4603794 | DeFord et al. | Aug 1986 | A |
4677975 | Edgar et al. | Jul 1987 | A |
4727985 | McNeirney et al. | Mar 1988 | A |
4749082 | Gardiner et al. | Jun 1988 | A |
4796614 | Nowacki et al. | Jan 1989 | A |
4805377 | Carter | Feb 1989 | A |
4813210 | Masuda et al. | Mar 1989 | A |
4821923 | Skorka | Apr 1989 | A |
4840017 | Miller et al. | Jun 1989 | A |
4863720 | Burghart et al. | Sep 1989 | A |
4868582 | Dreinhoff | Sep 1989 | A |
4885164 | Thurow | Dec 1989 | A |
4905450 | Hansen et al. | Mar 1990 | A |
4926613 | Hansen | May 1990 | A |
4951661 | Sladek | Aug 1990 | A |
4952310 | McMahan et al. | Aug 1990 | A |
4964540 | Katz | Oct 1990 | A |
RE33444 | Lerner | Nov 1990 | E |
4973318 | Holm et al. | Nov 1990 | A |
4979941 | Ogle, II | Dec 1990 | A |
4982875 | Pozzi et al. | Jan 1991 | A |
5014492 | Fiorini et al. | May 1991 | A |
5025957 | Ranalletta et al. | Jun 1991 | A |
5059187 | Sperry et al. | Oct 1991 | A |
5060791 | Zulauf | Oct 1991 | A |
5067655 | Farago et al. | Nov 1991 | A |
5156918 | Marks et al. | Oct 1992 | A |
5174366 | Nagakura et al. | Dec 1992 | A |
5207217 | Cocozza et al. | May 1993 | A |
5230884 | Evans et al. | Jul 1993 | A |
5237797 | Varlet | Aug 1993 | A |
5246142 | DiPalma et al. | Sep 1993 | A |
5261565 | Drobish et al. | Nov 1993 | A |
5263842 | Fealey | Nov 1993 | A |
5271153 | Reiboldt et al. | Dec 1993 | A |
5282304 | Reiboldt et al. | Feb 1994 | A |
5282549 | Scholz et al. | Feb 1994 | A |
5284133 | Burns et al. | Feb 1994 | A |
5289948 | Moss et al. | Mar 1994 | A |
5339990 | Wilder | Aug 1994 | A |
5352196 | Haber et al. | Oct 1994 | A |
5380281 | Tomellini et al. | Jan 1995 | A |
5385140 | Smith | Jan 1995 | A |
5388572 | Mulhauser | Feb 1995 | A |
5394866 | Ritson et al. | Mar 1995 | A |
5408994 | Wass et al. | Apr 1995 | A |
5433343 | Meshberg | Jul 1995 | A |
5435282 | Haber et al. | Jul 1995 | A |
5435884 | Simmons et al. | Jul 1995 | A |
5451569 | Wong et al. | Sep 1995 | A |
5456522 | Beach | Oct 1995 | A |
5456533 | Streiff et al. | Oct 1995 | A |
5472143 | Bartels et al. | Dec 1995 | A |
5482030 | Klein | Jan 1996 | A |
5487378 | Robertson et al. | Jan 1996 | A |
5497944 | Weston et al. | Mar 1996 | A |
5499750 | Manifold | Mar 1996 | A |
5499751 | Meyer | Mar 1996 | A |
5503869 | Van Oort | Apr 1996 | A |
5509404 | Lloyd et al. | Apr 1996 | A |
5518147 | Peterson et al. | May 1996 | A |
5533994 | Meyer | Jul 1996 | A |
5541569 | Jang | Jul 1996 | A |
5544646 | Lloyd et al. | Aug 1996 | A |
5547094 | Bartels et al. | Aug 1996 | A |
5569191 | Meyer | Oct 1996 | A |
5574006 | Yanagawa | Nov 1996 | A |
5579760 | Kohler | Dec 1996 | A |
5584285 | Salter et al. | Dec 1996 | A |
5593069 | Jinks | Jan 1997 | A |
5599297 | Chin et al. | Feb 1997 | A |
5603943 | Yanagawa | Feb 1997 | A |
5614172 | Geimer | Mar 1997 | A |
5622162 | Johansson et al. | Apr 1997 | A |
5622163 | Jewett et al. | Apr 1997 | A |
5643868 | Weiner et al. | Jul 1997 | A |
5662098 | Yoshida | Sep 1997 | A |
5662271 | Weston et al. | Sep 1997 | A |
5676930 | Jager et al. | Oct 1997 | A |
5685846 | Michaels, Jr. | Nov 1997 | A |
5697242 | Halasz et al. | Dec 1997 | A |
5709202 | Lloyd et al. | Jan 1998 | A |
5722598 | Werding | Mar 1998 | A |
5738087 | King | Apr 1998 | A |
5740967 | Simmons et al. | Apr 1998 | A |
5763396 | Weiner et al. | Jun 1998 | A |
5775321 | Alband | Jul 1998 | A |
5782345 | Guasch et al. | Jul 1998 | A |
5827262 | Neftel et al. | Oct 1998 | A |
5829435 | Rubsamen et al. | Nov 1998 | A |
5833088 | Kladders et al. | Nov 1998 | A |
5848588 | Foley et al. | Dec 1998 | A |
5868287 | Kurokawa et al. | Feb 1999 | A |
5881718 | Mortensen et al. | Mar 1999 | A |
5884620 | Gonda et al. | Mar 1999 | A |
5902298 | Niedospial, Jr. et al. | May 1999 | A |
5934272 | Lloyd et al. | Aug 1999 | A |
5935101 | Kato et al. | Aug 1999 | A |
5941244 | Yamazaki et al. | Aug 1999 | A |
5950016 | Tanaka | Sep 1999 | A |
5950403 | Yamaguchi et al. | Sep 1999 | A |
5951882 | Simmons et al. | Sep 1999 | A |
5964416 | Jaeger et al. | Oct 1999 | A |
5975370 | Durliat | Nov 1999 | A |
5997263 | Van Lintel et al. | Dec 1999 | A |
6041777 | Faithfull et al. | Mar 2000 | A |
6041969 | Parise | Mar 2000 | A |
6053368 | Geimer | Apr 2000 | A |
6062430 | Fuchs | May 2000 | A |
6098618 | Jennings et al. | Aug 2000 | A |
6109479 | Ruckdeschel | Aug 2000 | A |
6110247 | Birmingham et al. | Aug 2000 | A |
6116233 | Denyer et al. | Sep 2000 | A |
6119853 | Garrill et al. | Sep 2000 | A |
6120492 | Finch et al. | Sep 2000 | A |
6123068 | Lloyd et al. | Sep 2000 | A |
6131566 | Ashurst et al. | Oct 2000 | A |
6145703 | Opperman | Nov 2000 | A |
6149054 | Cimillo et al. | Nov 2000 | A |
6152296 | Shih | Nov 2000 | A |
6171972 | Mehregany et al. | Jan 2001 | B1 |
6176442 | Eicher et al. | Jan 2001 | B1 |
6179118 | Garrill et al. | Jan 2001 | B1 |
6186409 | Srinath et al. | Feb 2001 | B1 |
6199766 | Fox et al. | Mar 2001 | B1 |
6223933 | Hochrainer et al. | May 2001 | B1 |
6224568 | Morimoto et al. | May 2001 | B1 |
6237589 | Denyer et al. | May 2001 | B1 |
6259654 | de la Huerga | Jul 2001 | B1 |
6267154 | Felicelli et al. | Jul 2001 | B1 |
6279786 | de Pous et al. | Aug 2001 | B1 |
6302101 | Py | Oct 2001 | B1 |
6315173 | Di Giovanni et al. | Nov 2001 | B1 |
6319943 | Joshi et al. | Nov 2001 | B1 |
6336453 | Scarrott et al. | Jan 2002 | B1 |
6341718 | Schilthuizen et al. | Jan 2002 | B1 |
6349856 | Chastel | Feb 2002 | B1 |
6352152 | Anderson et al. | Mar 2002 | B1 |
6352181 | Eberhard et al. | Mar 2002 | B1 |
6363932 | Forchione et al. | Apr 2002 | B1 |
6375048 | van der Meer et al. | Apr 2002 | B1 |
6392962 | Wyatt | May 2002 | B1 |
6395331 | Yan et al. | May 2002 | B1 |
6401710 | Scheuch et al. | Jun 2002 | B1 |
6401987 | Oechsel et al. | Jun 2002 | B1 |
6402055 | Jaeger et al. | Jun 2002 | B1 |
6405872 | Ruther et al. | Jun 2002 | B1 |
6412659 | Kneer | Jul 2002 | B1 |
6419167 | Fuchs | Jul 2002 | B1 |
6423298 | McNamara et al. | Jul 2002 | B2 |
6427682 | Klimowicz et al. | Aug 2002 | B1 |
6446054 | Mayorga Lopez | Sep 2002 | B1 |
6457658 | Srinath et al. | Oct 2002 | B2 |
6464108 | Corba | Oct 2002 | B2 |
6481435 | Hochrainer et al. | Nov 2002 | B2 |
6491897 | Freund et al. | Dec 2002 | B1 |
6503362 | Bartels et al. | Jan 2003 | B1 |
6513519 | Gallem | Feb 2003 | B2 |
6543448 | Smith et al. | Apr 2003 | B1 |
6548647 | Dietz et al. | Apr 2003 | B2 |
6550477 | Casper et al. | Apr 2003 | B1 |
6565743 | Poirier et al. | May 2003 | B1 |
6578741 | Ritsche et al. | Jun 2003 | B2 |
6581596 | Truitt et al. | Jun 2003 | B1 |
6584976 | Japuntich et al. | Jul 2003 | B2 |
6606990 | Stapleton et al. | Aug 2003 | B2 |
6620438 | Pairet et al. | Sep 2003 | B2 |
6626309 | Jansen et al. | Sep 2003 | B1 |
6640805 | Castro et al. | Nov 2003 | B2 |
6641782 | Mauchan et al. | Nov 2003 | B1 |
6669176 | Rock | Dec 2003 | B2 |
6679254 | Rand et al. | Jan 2004 | B1 |
6685691 | Freund et al. | Feb 2004 | B1 |
6698421 | Attolini | Mar 2004 | B2 |
6706726 | Meissner et al. | Mar 2004 | B2 |
6708846 | Fuchs et al. | Mar 2004 | B1 |
6725858 | Loescher | Apr 2004 | B2 |
6729328 | Goldemann | May 2004 | B2 |
6732731 | Tseng | May 2004 | B1 |
6745763 | Webb | Jun 2004 | B2 |
6779520 | Genova et al. | Aug 2004 | B2 |
6789702 | O'Connor et al. | Sep 2004 | B2 |
6792945 | Davies et al. | Sep 2004 | B2 |
6823862 | McNaughton | Nov 2004 | B2 |
6825441 | Katooka et al. | Nov 2004 | B2 |
6846413 | Kadel et al. | Jan 2005 | B1 |
6866039 | Wright et al. | Mar 2005 | B1 |
6889690 | Crowder et al. | May 2005 | B2 |
6890517 | Drechsel et al. | May 2005 | B2 |
6915901 | Feinberg et al. | Jul 2005 | B2 |
6929004 | Bonney et al. | Aug 2005 | B1 |
6932962 | Backstrom et al. | Aug 2005 | B1 |
6942127 | Raats | Sep 2005 | B2 |
6964759 | Lewis et al. | Nov 2005 | B2 |
6977042 | Kadel et al. | Dec 2005 | B2 |
6978916 | Smith | Dec 2005 | B2 |
6986346 | Hochrainer et al. | Jan 2006 | B2 |
6988496 | Eicher et al. | Jan 2006 | B1 |
6994083 | Foley et al. | Feb 2006 | B2 |
7040311 | Hochrainer et al. | May 2006 | B2 |
7066408 | Sugimoto et al. | Jun 2006 | B2 |
7090093 | Hochrainer et al. | Aug 2006 | B2 |
7131441 | Keller et al. | Nov 2006 | B1 |
7152760 | Peabody | Dec 2006 | B1 |
7258716 | Shekarriz et al. | Aug 2007 | B2 |
7314187 | Hochrainer et al. | Jan 2008 | B2 |
7331340 | Barney | Feb 2008 | B2 |
7341208 | Peters et al. | Mar 2008 | B2 |
7380575 | Stricklin | Jun 2008 | B2 |
7417051 | Banholzer et al. | Aug 2008 | B2 |
7451876 | Bossi et al. | Nov 2008 | B2 |
7470422 | Freund et al. | Dec 2008 | B2 |
7556037 | Klein | Jul 2009 | B2 |
7559597 | Mori | Jul 2009 | B2 |
7571722 | Wuttke et al. | Aug 2009 | B2 |
7575003 | Rasmussen | Aug 2009 | B2 |
7579358 | Boeck et al. | Aug 2009 | B2 |
7611694 | Schmidt | Nov 2009 | B2 |
7611709 | Bassarab et al. | Nov 2009 | B2 |
7621266 | Kladders et al. | Nov 2009 | B2 |
7645383 | Kadel et al. | Jan 2010 | B2 |
7652030 | Moesgaard et al. | Jan 2010 | B2 |
7665461 | Zierenberg et al. | Feb 2010 | B2 |
7681811 | Geser et al. | Mar 2010 | B2 |
7686014 | Boehm et al. | Mar 2010 | B2 |
7717299 | Greiner-Perth | May 2010 | B2 |
7723306 | Bassarab et al. | May 2010 | B2 |
7743945 | Lu et al. | Jun 2010 | B2 |
7779838 | Hetzer et al. | Aug 2010 | B2 |
7802568 | Eicher et al. | Sep 2010 | B2 |
7819342 | Spallek et al. | Oct 2010 | B2 |
7823584 | Geser et al. | Nov 2010 | B2 |
7837235 | Geser et al. | Nov 2010 | B2 |
7849851 | Zierenberg et al. | Dec 2010 | B2 |
7896264 | Eicher et al. | Mar 2011 | B2 |
7980243 | Hochrainer | Jul 2011 | B2 |
7994188 | Disse | Aug 2011 | B2 |
8062626 | Freund et al. | Nov 2011 | B2 |
8104643 | Pruvot | Jan 2012 | B2 |
8167171 | Moretti | May 2012 | B2 |
8298622 | Nakayama | Oct 2012 | B2 |
8479725 | Hausmann et al. | Jul 2013 | B2 |
8495901 | Hahn et al. | Jul 2013 | B2 |
8650840 | Holakovsky et al. | Feb 2014 | B2 |
8651338 | Leak et al. | Feb 2014 | B2 |
8656910 | Boeck et al. | Feb 2014 | B2 |
8733341 | Boeck et al. | May 2014 | B2 |
8734392 | Stadelhofer | May 2014 | B2 |
8944292 | Moreau | Feb 2015 | B2 |
8950393 | Holakovsky et al. | Feb 2015 | B2 |
8960188 | Bach et al. | Feb 2015 | B2 |
8997735 | Zierenberg et al. | Apr 2015 | B2 |
9027854 | Moser et al. | May 2015 | B2 |
9192734 | Hausmann et al. | Nov 2015 | B2 |
9238031 | Schmelzer et al. | Jan 2016 | B2 |
9744313 | Besseler | Aug 2017 | B2 |
9827384 | Holakovsky | Nov 2017 | B2 |
10004857 | Besseler | Jun 2018 | B2 |
20010008632 | Freund et al. | Jul 2001 | A1 |
20010028308 | De La Huerga | Oct 2001 | A1 |
20010032643 | Hochrainer et al. | Oct 2001 | A1 |
20010035182 | Rubin et al. | Nov 2001 | A1 |
20020000225 | Schuler et al. | Jan 2002 | A1 |
20020005195 | Shick et al. | Jan 2002 | A1 |
20020007155 | Freund et al. | Jan 2002 | A1 |
20020046751 | MacRae et al. | Apr 2002 | A1 |
20020053344 | Davies | May 2002 | A1 |
20020060255 | Benoist | May 2002 | A1 |
20020074429 | Hettrich et al. | Jun 2002 | A1 |
20020079285 | Jansen et al. | Jun 2002 | A1 |
20020092523 | Connelly et al. | Jul 2002 | A1 |
20020111363 | Drechsel et al. | Aug 2002 | A1 |
20020129812 | Litherland et al. | Sep 2002 | A1 |
20020130195 | Jaeger | Sep 2002 | A1 |
20020137764 | Drechsel et al. | Sep 2002 | A1 |
20020176788 | Moutafis et al. | Nov 2002 | A1 |
20030039915 | Holt et al. | Feb 2003 | A1 |
20030064032 | Lamche et al. | Apr 2003 | A1 |
20030066524 | Hochrainer et al. | Apr 2003 | A1 |
20030066815 | Lucas | Apr 2003 | A1 |
20030080210 | Jaeger | May 2003 | A1 |
20030085254 | Katooka et al. | May 2003 | A1 |
20030098023 | Drachmann et al. | May 2003 | A1 |
20030106827 | Cheu et al. | Jun 2003 | A1 |
20030145849 | Drinan et al. | Aug 2003 | A1 |
20030178020 | Scarrott | Sep 2003 | A1 |
20030181478 | Drechsel et al. | Sep 2003 | A1 |
20030183225 | Knudsen | Oct 2003 | A1 |
20030187387 | Wirt et al. | Oct 2003 | A1 |
20030191151 | Chaudry et al. | Oct 2003 | A1 |
20030194379 | Brugger et al. | Oct 2003 | A1 |
20030196660 | Haveri | Oct 2003 | A1 |
20030209238 | Peters et al. | Nov 2003 | A1 |
20030226907 | Geser et al. | Dec 2003 | A1 |
20040004138 | Hettrich et al. | Jan 2004 | A1 |
20040010239 | Hochrainer et al. | Jan 2004 | A1 |
20040015126 | Zierenberg et al. | Jan 2004 | A1 |
20040019073 | Drechsel et al. | Jan 2004 | A1 |
20040055907 | Marco | Mar 2004 | A1 |
20040060476 | Sirejacob | Apr 2004 | A1 |
20040069799 | Gee et al. | Apr 2004 | A1 |
20040092428 | Chen et al. | May 2004 | A1 |
20040094147 | Schyra et al. | May 2004 | A1 |
20040134494 | Papania et al. | Jul 2004 | A1 |
20040134824 | Chan et al. | Jul 2004 | A1 |
20040139700 | Powell et al. | Jul 2004 | A1 |
20040143235 | Freund et al. | Jul 2004 | A1 |
20040164186 | Kladders | Aug 2004 | A1 |
20040166065 | Schmidt | Aug 2004 | A1 |
20040182867 | Hochrainer et al. | Sep 2004 | A1 |
20040184994 | DeStefano et al. | Sep 2004 | A1 |
20040194524 | Jentzsch | Oct 2004 | A1 |
20040210199 | Atterbury et al. | Oct 2004 | A1 |
20040231667 | Horton et al. | Nov 2004 | A1 |
20050028812 | Djupesland | Feb 2005 | A1 |
20050028815 | Deaton et al. | Feb 2005 | A1 |
20050028816 | Fishman et al. | Feb 2005 | A1 |
20050061314 | Davies et al. | Mar 2005 | A1 |
20050089478 | Govind et al. | Apr 2005 | A1 |
20050098172 | Anderson | May 2005 | A1 |
20050126469 | Lu | Jun 2005 | A1 |
20050131357 | Denton et al. | Jun 2005 | A1 |
20050158394 | Staniforth et al. | Jul 2005 | A1 |
20050159441 | Hochrainer et al. | Jul 2005 | A1 |
20050183718 | Wuttke et al. | Aug 2005 | A1 |
20050191246 | Bechtold-Peters et al. | Sep 2005 | A1 |
20050194472 | Geser et al. | Sep 2005 | A1 |
20050239778 | Konetzki et al. | Oct 2005 | A1 |
20050247305 | Zierenberg et al. | Nov 2005 | A1 |
20050250704 | Bassarab et al. | Nov 2005 | A1 |
20050250705 | Bassarab et al. | Nov 2005 | A1 |
20050255119 | Bassarab et al. | Nov 2005 | A1 |
20050263618 | Spallek et al. | Dec 2005 | A1 |
20050268905 | Rasmussen | Dec 2005 | A1 |
20050268909 | Bonney et al. | Dec 2005 | A1 |
20050268915 | Wassenaar et al. | Dec 2005 | A1 |
20050269359 | Raats | Dec 2005 | A1 |
20060002863 | Schmelzer et al. | Jan 2006 | A1 |
20060016449 | Eicher et al. | Jan 2006 | A1 |
20060035874 | Lulla et al. | Feb 2006 | A1 |
20060037612 | Herder et al. | Feb 2006 | A1 |
20060067952 | Chen | Mar 2006 | A1 |
20060086828 | Bougamont et al. | Apr 2006 | A1 |
20060150971 | Lee et al. | Jul 2006 | A1 |
20060196500 | Hochrainer et al. | Sep 2006 | A1 |
20060225734 | Sagaser et al. | Oct 2006 | A1 |
20060239886 | Nakayama | Oct 2006 | A1 |
20060239930 | Lamche et al. | Oct 2006 | A1 |
20060254579 | Grychowski et al. | Nov 2006 | A1 |
20060279588 | Yearworth et al. | Dec 2006 | A1 |
20060282045 | Wilkinson et al. | Dec 2006 | A1 |
20060285987 | Jaeger et al. | Dec 2006 | A1 |
20060289002 | Hetzer et al. | Dec 2006 | A1 |
20060293293 | Muller et al. | Dec 2006 | A1 |
20070062518 | Geser | Mar 2007 | A1 |
20070062519 | Wuttke et al. | Mar 2007 | A1 |
20070062979 | Dunne | Mar 2007 | A1 |
20070090205 | Kunze et al. | Apr 2007 | A1 |
20070090576 | Geser et al. | Apr 2007 | A1 |
20070107720 | Boeck et al. | May 2007 | A1 |
20070119449 | Boehm et al. | May 2007 | A1 |
20070137643 | Bonney et al. | Jun 2007 | A1 |
20070163574 | Rohrschneider et al. | Jul 2007 | A1 |
20070181526 | Frishman | Aug 2007 | A1 |
20070183982 | Berkel et al. | Aug 2007 | A1 |
20070210121 | Stadelhofer et al. | Sep 2007 | A1 |
20070221211 | Sagalovich | Sep 2007 | A1 |
20070264437 | Zimmermann | Nov 2007 | A1 |
20070272763 | Dunne et al. | Nov 2007 | A1 |
20070298116 | Bechtold-Peters et al. | Dec 2007 | A1 |
20080017192 | Southby et al. | Jan 2008 | A1 |
20080029085 | Lawrence et al. | Feb 2008 | A1 |
20080060640 | Waldner et al. | Mar 2008 | A1 |
20080083408 | Hodson et al. | Apr 2008 | A1 |
20080092885 | von Schuckmann | Apr 2008 | A1 |
20080156321 | Bowman | Jul 2008 | A1 |
20080163869 | Nobutani | Jul 2008 | A1 |
20080197045 | Metzger et al. | Aug 2008 | A1 |
20080249459 | Godfrey et al. | Oct 2008 | A1 |
20080264412 | Meyer et al. | Oct 2008 | A1 |
20080265198 | Warby | Oct 2008 | A1 |
20080283553 | Cox et al. | Nov 2008 | A1 |
20080299049 | Stangl | Dec 2008 | A1 |
20080308580 | Gaydos et al. | Dec 2008 | A1 |
20090032427 | Cheu et al. | Feb 2009 | A1 |
20090060764 | Mitzlaff et al. | Mar 2009 | A1 |
20090075990 | Schmidt | Mar 2009 | A1 |
20090114215 | Boeck et al. | May 2009 | A1 |
20090166379 | Wright et al. | Jul 2009 | A1 |
20090170839 | Schmidt | Jul 2009 | A1 |
20090185983 | Freund et al. | Jul 2009 | A1 |
20090197841 | Kreher et al. | Aug 2009 | A1 |
20090202447 | Kreher et al. | Aug 2009 | A1 |
20090211576 | Lehtonen et al. | Aug 2009 | A1 |
20090221626 | Schmidt | Sep 2009 | A1 |
20090235924 | Holakovsky et al. | Sep 2009 | A1 |
20090272664 | Marshall et al. | Nov 2009 | A1 |
20090293870 | Brunnberg | Dec 2009 | A1 |
20090306065 | Schmidt | Dec 2009 | A1 |
20090308772 | Abrams | Dec 2009 | A1 |
20090314287 | Spallek et al. | Dec 2009 | A1 |
20090317337 | Schmidt | Dec 2009 | A1 |
20100012120 | Herder | Jan 2010 | A1 |
20100018524 | Jinks et al. | Jan 2010 | A1 |
20100018997 | Faneca Llesera | Jan 2010 | A1 |
20100044393 | Moretti | Feb 2010 | A1 |
20100056559 | Schmelzer et al. | Mar 2010 | A1 |
20100084531 | Schuchman | Apr 2010 | A1 |
20100095957 | Corbacho | Apr 2010 | A1 |
20100144784 | Schmelzer et al. | Jun 2010 | A1 |
20100168710 | Braithwaite | Jul 2010 | A1 |
20100237102 | Margheritis | Sep 2010 | A1 |
20100242557 | Spreitzer et al. | Sep 2010 | A1 |
20100242954 | Hahn et al. | Sep 2010 | A1 |
20100313884 | Elliman | Dec 2010 | A1 |
20100331765 | Sullivan | Dec 2010 | A1 |
20110005517 | Boeck et al. | Jan 2011 | A1 |
20110011393 | Geser | Jan 2011 | A1 |
20110041842 | Bradshaw | Feb 2011 | A1 |
20110168175 | Dunne et al. | Jul 2011 | A1 |
20110239594 | Nottingham et al. | Oct 2011 | A1 |
20110245780 | Helmer et al. | Oct 2011 | A1 |
20110268668 | Lamche et al. | Nov 2011 | A1 |
20110277753 | Dunne et al. | Nov 2011 | A1 |
20110290239 | Bach | Dec 2011 | A1 |
20110290242 | Bach et al. | Dec 2011 | A1 |
20110290243 | Bach et al. | Dec 2011 | A1 |
20120090603 | Dunne et al. | Apr 2012 | A1 |
20120132199 | Kiesewetter | May 2012 | A1 |
20120138049 | Wachtel | Jun 2012 | A1 |
20120138713 | Schuy et al. | Jun 2012 | A1 |
20120260913 | Bach et al. | Oct 2012 | A1 |
20120325204 | Holakovsky et al. | Dec 2012 | A1 |
20130012908 | Yeung | Jan 2013 | A1 |
20130056888 | Holakovsky | Mar 2013 | A1 |
20130125880 | Holakovsky et al. | May 2013 | A1 |
20130125881 | Holakovsky | May 2013 | A1 |
20130126389 | Holakovsky et al. | May 2013 | A1 |
20130206136 | Herrmann et al. | Aug 2013 | A1 |
20130269687 | Besseler et al. | Oct 2013 | A1 |
20140121234 | Kreher et al. | May 2014 | A1 |
20140190472 | Holakovsky et al. | Jul 2014 | A1 |
20140228397 | Schmelzer et al. | Aug 2014 | A1 |
20140331994 | Holakovsky et al. | Nov 2014 | A1 |
20150040890 | Bessler et al. | Feb 2015 | A1 |
20150040893 | Besseler | Feb 2015 | A1 |
20150041558 | Bessler et al. | Feb 2015 | A1 |
20150114387 | Bach et al. | Apr 2015 | A1 |
20150122247 | Besseler et al. | May 2015 | A1 |
20150258021 | Kreher et al. | Sep 2015 | A1 |
20150306087 | Schmelzer et al. | Oct 2015 | A1 |
20150320947 | Eicher et al. | Nov 2015 | A1 |
20150320948 | Eicher et al. | Nov 2015 | A1 |
20150352298 | Egerstrom | Dec 2015 | A1 |
20160095992 | Wachtel | Apr 2016 | A1 |
Number | Date | Country |
---|---|---|
2005201364 | Jul 2006 | AU |
1094549 | Jan 1981 | CA |
2233981 | Apr 1997 | CA |
2237853 | Jun 1997 | CA |
2251828 | Oct 1997 | CA |
2275392 | Jul 1998 | CA |
2297174 | Feb 1999 | CA |
2343123 | Apr 2000 | CA |
2434872 | Aug 2002 | CA |
2497059 | Mar 2004 | CA |
2497680 | Mar 2004 | CA |
2513167 | Oct 2004 | CA |
2557020 | Sep 2005 | CA |
2653183 | Dec 2007 | CA |
2653422 | Dec 2007 | CA |
1125426 | Jun 1996 | CN |
1849174 | Oct 2006 | CN |
101247897 | Aug 2008 | CN |
1653651 | Jul 1971 | DE |
2754100 | Jun 1978 | DE |
4117078 | Nov 1992 | DE |
19625027 | Jan 1997 | DE |
19615422 | Nov 1997 | DE |
19653969 | Jun 1998 | DE |
19902844 | Nov 1999 | DE |
10007591 | Nov 2000 | DE |
10104367 | Aug 2002 | DE |
10300983 | Jul 2004 | DE |
102004031673 | Jan 2006 | DE |
202006017793 | Jan 2007 | DE |
01102006025871 | Dec 2007 | DE |
83175 | Jul 1957 | DK |
140801 | Nov 1979 | DK |
0018609 | Nov 1980 | EP |
0289332 | Nov 1988 | EP |
0289336 | Nov 1988 | EP |
0354507 | Feb 1990 | EP |
0364235 | Apr 1990 | EP |
0372777 | Jun 1990 | EP |
0386800 | Sep 1990 | EP |
0412524 | Feb 1991 | EP |
0505123 | Sep 1992 | EP |
0520571 | Dec 1992 | EP |
0622311 | Nov 1994 | EP |
0642992 | Mar 1995 | EP |
0679443 | Nov 1995 | EP |
0735048 | Oct 1996 | EP |
0811430 | Mar 1997 | EP |
0778221 | Jun 1997 | EP |
0845253 | Jun 1998 | EP |
0845265 | Jun 1998 | EP |
0860210 | Aug 1998 | EP |
0916428 | May 1999 | EP |
0965355 | Dec 1999 | EP |
0970751 | Jan 2000 | EP |
1003478 | May 2000 | EP |
1017469 | Jul 2000 | EP |
1025923 | Aug 2000 | EP |
1068906 | Jan 2001 | EP |
1075875 | Feb 2001 | EP |
1092447 | Apr 2001 | EP |
1157689 | Nov 2001 | EP |
1211628 | Jun 2002 | EP |
1245244 | Oct 2002 | EP |
1312418 | May 2003 | EP |
1375385 | Jan 2004 | EP |
1521609 | Apr 2005 | EP |
1535643 | Jun 2005 | EP |
1595564 | Nov 2005 | EP |
1595622 | Nov 2005 | EP |
1726324 | Nov 2006 | EP |
1736193 | Dec 2006 | EP |
1795221 | Jun 2007 | EP |
1813548 | Aug 2007 | EP |
2135632 | Dec 2009 | EP |
2614848 | Jul 2013 | EP |
2262348 | Nov 2006 | ES |
2505688 | Nov 1982 | FR |
2604363 | Apr 1988 | FR |
2673608 | Sep 1992 | FR |
2756502 | Jun 1998 | FR |
1524431 | Sep 1978 | GB |
2081396 | Feb 1982 | GB |
2101020 | Jan 1983 | GB |
2279273 | Jan 1995 | GB |
2291135 | Jan 1996 | GB |
2332372 | Jun 1999 | GB |
2333129 | Jul 1999 | GB |
2347870 | Sep 2000 | GB |
2355252 | Sep 2000 | GB |
2398253 | Aug 2004 | GB |
0700839.4 | Jul 2008 | GB |
85684246 | Jul 1981 | JP |
H01288265 | Nov 1989 | JP |
H0228121 | Jan 1990 | JP |
H057246 | Feb 1993 | JP |
H0553470 | Mar 1993 | JP |
H06312019 | Nov 1994 | JP |
H07118164 | May 1995 | JP |
H07118166 | May 1995 | JP |
07323086 | Dec 1995 | JP |
H08277226 | Oct 1996 | JP |
H092442 | Jan 1997 | JP |
H0977073 | Mar 1997 | JP |
H09315953 | Dec 1997 | JP |
2001518428 | Oct 2001 | JP |
2001346878 | Dec 2001 | JP |
2002504411 | Feb 2002 | JP |
2002235940 | Aug 2002 | JP |
2003511212 | Mar 2003 | JP |
2003299717 | Oct 2003 | JP |
2004502502 | Jan 2004 | JP |
2004097617 | Apr 2004 | JP |
2005511210 | Apr 2005 | JP |
2005144459 | Jun 2005 | JP |
2006505374 | Feb 2006 | JP |
2007517529 | Jul 2007 | JP |
2007245144 | Sep 2007 | JP |
2007534379 | Nov 2007 | JP |
2008119489 | May 2008 | JP |
2008541806 | Nov 2008 | JP |
2010526620 | Aug 2010 | JP |
2010540371 | Dec 2010 | JP |
198100674 | Mar 1981 | WO |
198200785 | Mar 1982 | WO |
198300288 | Feb 1983 | WO |
198303054 | Sep 1983 | WO |
198605419 | Sep 1986 | WO |
198706137 | Oct 1987 | WO |
198803419 | May 1988 | WO |
198900889 | Feb 1989 | WO |
198900947 | Feb 1989 | WO |
198902279 | Mar 1989 | WO |
198903672 | May 1989 | WO |
198903673 | May 1989 | WO |
198905139 | Jun 1989 | WO |
199009780 | Sep 1990 | WO |
199009781 | Sep 1990 | WO |
1991014468 | Oct 1991 | WO |
199206704 | Apr 1992 | WO |
199217231 | Oct 1992 | WO |
199221332 | Dec 1992 | WO |
199222286 | Dec 1992 | WO |
1993013737 | Jul 1993 | WO |
199325321 | Dec 1993 | WO |
1993024164 | Dec 1993 | WO |
1994007607 | Apr 1994 | WO |
199417822 | Aug 1994 | WO |
199425371 | Nov 1994 | WO |
199427653 | Dec 1994 | WO |
199503034 | Feb 1995 | WO |
1995032015 | Nov 1995 | WO |
199600050 | Jan 1996 | WO |
1996006011 | Feb 1996 | WO |
199606581 | Mar 1996 | WO |
199623522 | Aug 1996 | WO |
199701329 | Jan 1997 | WO |
199706813 | Feb 1997 | WO |
199706842 | Feb 1997 | WO |
199712683 | Apr 1997 | WO |
1997012687 | Apr 1997 | WO |
199720590 | Jun 1997 | WO |
199723208 | Jul 1997 | WO |
199727804 | Aug 1997 | WO |
199735562 | Oct 1997 | WO |
199741833 | Nov 1997 | WO |
1998012511 | Mar 1998 | WO |
199827959 | Jul 1998 | WO |
199831346 | Jul 1998 | WO |
199839043 | Sep 1998 | WO |
1999001227 | Jan 1999 | WO |
1999007340 | Feb 1999 | WO |
1999011563 | Mar 1999 | WO |
1999016530 | Apr 1999 | WO |
1999043571 | Sep 1999 | WO |
199962495 | Dec 1999 | WO |
199965464 | Dec 1999 | WO |
200001612 | Jan 2000 | WO |
200023037 | Apr 2000 | WO |
2000023065 | Apr 2000 | WO |
200027543 | May 2000 | WO |
200037336 | Jun 2000 | WO |
2000033965 | Jun 2000 | WO |
200049988 | Aug 2000 | WO |
200064779 | Nov 2000 | WO |
200113885 | Mar 2001 | WO |
200128489 | Apr 2001 | WO |
2001064182 | Sep 2001 | WO |
200187392 | Nov 2001 | WO |
2001085097 | Nov 2001 | WO |
200197888 | Dec 2001 | WO |
200198175 | Dec 2001 | WO |
200198176 | Dec 2001 | WO |
200204054 | Jan 2002 | WO |
200205879 | Jan 2002 | WO |
200217988 | Mar 2002 | WO |
200232899 | Apr 2002 | WO |
2002034411 | May 2002 | WO |
2002070141 | Sep 2002 | WO |
2002089887 | Nov 2002 | WO |
2003002045 | Jan 2003 | WO |
2002014832 | Feb 2003 | WO |
2003020253 | Mar 2003 | WO |
2003022332 | Mar 2003 | WO |
2003035030 | May 2003 | WO |
2003037159 | May 2003 | WO |
2003037259 | May 2003 | WO |
2003049786 | Jun 2003 | WO |
2003050031 | Jun 2003 | WO |
2003053350 | Jul 2003 | WO |
2003057593 | Jul 2003 | WO |
2003059547 | Jul 2003 | WO |
2003068299 | Aug 2003 | WO |
2003087097 | Oct 2003 | WO |
2003097139 | Nov 2003 | WO |
2004019985 | Mar 2004 | WO |
2004022052 | Mar 2004 | WO |
2004022132 | Mar 2004 | WO |
2004022244 | Mar 2004 | WO |
2004024157 | Mar 2004 | WO |
200433954 | Apr 2004 | WO |
2004041334 | May 2004 | WO |
2004062813 | Jul 2004 | WO |
2004078236 | Sep 2004 | WO |
2004089551 | Oct 2004 | WO |
2004091704 | Oct 2004 | WO |
2004098689 | Nov 2004 | WO |
2004098795 | Nov 2004 | WO |
2005000476 | Jan 2005 | WO |
2005004844 | Jan 2005 | WO |
2005014175 | Feb 2005 | WO |
2005020953 | Mar 2005 | WO |
2005030211 | Apr 2005 | WO |
2005055976 | Jun 2005 | WO |
2005077445 | Aug 2005 | WO |
2005079997 | Sep 2005 | WO |
2005080001 | Sep 2005 | WO |
2005080002 | Sep 2005 | WO |
2005087299 | Sep 2005 | WO |
2005107837 | Nov 2005 | WO |
2005109948 | Nov 2005 | WO |
2005112892 | Dec 2005 | WO |
2005112996 | Dec 2005 | WO |
2005113007 | Dec 2005 | WO |
2006011638 | Feb 2006 | WO |
2006018392 | Feb 2006 | WO |
2006027595 | Mar 2006 | WO |
2006037636 | Apr 2006 | WO |
2006037948 | Apr 2006 | WO |
2006042297 | Apr 2006 | WO |
2006045813 | May 2006 | WO |
2006110080 | Oct 2006 | WO |
2006125577 | Nov 2006 | WO |
2006126014 | Nov 2006 | WO |
2007011475 | Jan 2007 | WO |
2007022898 | Mar 2007 | WO |
2007030162 | Mar 2007 | WO |
2007049239 | May 2007 | WO |
2007060104 | May 2007 | WO |
2007060105 | May 2007 | WO |
2007060106 | May 2007 | WO |
2007060107 | May 2007 | WO |
2007060108 | May 2007 | WO |
2007062721 | Jun 2007 | WO |
2007090822 | Aug 2007 | WO |
2007101557 | Sep 2007 | WO |
2007128381 | Nov 2007 | WO |
2007134965 | Nov 2007 | WO |
2007134966 | Nov 2007 | WO |
2007134967 | Nov 2007 | WO |
2007134968 | Nov 2007 | WO |
2007141201 | Dec 2007 | WO |
2007141203 | Dec 2007 | WO |
2008023017 | Feb 2008 | WO |
2008047035 | Apr 2008 | WO |
2008077623 | Jul 2008 | WO |
2008124666 | Oct 2008 | WO |
2008138936 | Nov 2008 | WO |
2008146025 | Dec 2008 | WO |
2009006137 | Jan 2009 | WO |
2009047021 | Apr 2009 | WO |
2009047173 | Apr 2009 | WO |
2009050978 | Apr 2009 | WO |
2009090245 | Jul 2009 | WO |
2009103510 | Aug 2009 | WO |
2009115200 | Sep 2009 | WO |
2010005946 | Jan 2010 | WO |
2010006870 | Jan 2010 | WO |
2010094305 | Aug 2010 | WO |
2010094413 | Aug 2010 | WO |
2010112358 | Oct 2010 | WO |
2010133294 | Nov 2010 | WO |
2010149280 | Dec 2010 | WO |
2011006711 | Jan 2011 | WO |
2011064160 | Jun 2011 | WO |
2011064163 | Jun 2011 | WO |
2011064164 | Jun 2011 | WO |
2011131779 | Oct 2011 | WO |
2011154295 | Dec 2011 | WO |
2011160932 | Dec 2011 | WO |
2012130757 | Oct 2012 | WO |
2012159914 | Nov 2012 | WO |
2012160047 | Nov 2012 | WO |
2012160052 | Nov 2012 | WO |
2012161685 | Nov 2012 | WO |
2012162305 | Nov 2012 | WO |
2013107640 | Jul 2013 | WO |
2013110601 | Aug 2013 | WO |
2013152861 | Oct 2013 | WO |
2013152894 | Oct 2013 | WO |
2014111370 | Jul 2014 | WO |
2015018901 | Feb 2015 | WO |
2015018903 | Feb 2015 | WO |
2015018904 | Feb 2015 | WO |
2015169431 | Nov 2015 | WO |
2015169732 | Nov 2015 | WO |
199901520 | Dec 1999 | ZA |
Entry |
---|
“Activate”. Collins English Dictionary, London: Collins, 2000, 2 pages. [Retrieved at http://search.credoreference.com/content/entry/hcengdict/activate/0 on Jun. 12, 2014]. |
“Lung Cancer”. Merck Manual Home Edition, pp. 1-7. [Accessed at www.merck.com/mmhe/print/sec04/ch057/ch057a.html, on Jul. 26, 2010]. |
Abstract in English for DE19902844, 1999. |
Abstract in English for DE4117078, 1992. |
Abstract in English for EP0354507, 1990. |
Abstract in English for FR2756502, 1998. |
Abstract in English for JPS5684246, 1979. |
Abstract in English of DE10007591, 2000. |
Abstract in English of DE202006017793, 2007. |
Abstract in English of FR2604363, Sep. 30, 1986. |
Abstract in English of JPH0553470, 1993. |
Abstract in English of JPH057246, 1993. |
Abstract in English of JPH07118164, 1995. |
Abstract in English of JPH07118168, 1995. |
Abstract in English of JPH08277226, 1996. |
Abstract in English of JPH092442, 1997. |
Abstract in English of JPH09315953, 1997. |
Abstract in English of JPH0977073, 1997. |
Abstract in English of WO199706813, 1997. |
Abstract in English of WO199839043, 1998. |
Abstract in English of WO2002070141, 2002. |
Ackermann et al.; Quantitative Online Detection of Low-Concentrated Drugs via a SERS Microfluidic System; ChemPhysChem; 2007; vol. 8; No. 18; pp. 2665-2670. |
Beasley R et al: “Preservatives in Nebulizer solutions: Risks without Benefit” Pharmacotherapy, Boston, US, Bd. 18, Nr 1, Jan. 1998. |
Beasley R et al: “Preservatives in Nebulizer solutions: Risks without Benefit” Pharmacotherapy, Boston, US, Bd. 18, Nr 1, Jan. 1998, pp. 130-139. |
Bocci et al., “Pulmonary catabolism of interferons: alveolar absorption of 125l-labeled human interferon alpha is accompanied by partial loss of biological activity” Antiviral Research, vol. 4, 1984, pp. 211-220. |
Chen, F-K et al., “A study of forming pressure in the tube-hydroforming process”. Journal of Materials Processing Technology, 192-193, 2007, p. 404-409. |
China Suppliers, Shanghai Lite Chemical Technology Co., Ltd. Product details on polyvinylpyrrolidones. Obtained online by the USPTO examiner on Apr. 24, 2011. |
Cras et al., “Comparison of chemical cleaning methods of glass in preparation for silanization”, Biosensors & Bioelectronics, vol. 14, 1999, pp. 683-688. |
Diamond et al., “Substance P Fails to Mimic Vagally Mediated Nonadrenergic Bronchodilation”. Peptides, vol. 3, 1982, pp. 27-29. |
Elwenspoek et al., “Silicon Micromachining”, Chapter 3, Mechanical Microsensors, Springer-Verlag Berlin Heidelberg, 2001, 4 pages. |
English Language Abstract of EP1068906, 2001. |
Fuchs et al., “Neopterin, biochemistry and clinical use as a marker for cellular immune reactions”. International Archives of Allergy and Immunology, vol. 101, No. 1, 1993, pp. 1-6, Abstract 1p. |
Han et al.; Surface activation of thin silicon oxides by wet cleaning and silanization; Thin Solid Films; 2006; vol. 510; No. 1-2; pp. 175-180. |
Henkel et al.; Chip modules for generation and manipulation of fluid segments for micro serial flow processes; Chemical Engineering Journal; 2004; vol. 101, pp. 439-445. |
Hoffmann et al., “Mixed self-assembled monolayers (SAMs) consisting of methoxy-tri(ethylene glycol)-terminated and alkyl-terminated dimethylchlorosilanes control the non-specific adsorption of proteins at oxidic surfaces”. Journal of Colloid and Interface Science, vol. 295, 2006, pp. 427-435. |
Husseini et al., “Alkyl Monolayers on Silica Surfaces Prepared Using Neat, Heated Dimethylmonochlorositanes with Low Vapor Pressures”. Langmuir, vol. 19, 2003, pp. 5169-5171. |
Ip et al., “Stability of Recombinant Consensus Interferon to Air-Jet and Ultrasonic Nebulization”. Journal of Pharmaceutical Sciences, vol. 84, No. 10, Oct. 1995, pp. 1210-1214. |
Jengle et al., “Intrapulmonary administration of insulin to healthy volunteers”. Journal of Internal Medicine, vol. 240, 1996, pp. 93-98. |
JP2005144459—English language abstract only. |
Kutchoukov et al., “Fabrication of nanofluidic devices using glass-to-glass anodic bonding” Sensors and Actuators A, vol. 114, 2004, pp. 521-527. |
Lougheed et al., “Insulin Aggregation in Artificial Delivery Systems”. Diabetologia, vol. 19, 1980, pp. 1-9. |
Mandal et al., “Cytophobic surface modification of microfluidic arrays for in situ parallel peptide synthesis and cell adhesion assays”, Biotechnology Progress, vol. 23, No. 4, 2007, pp. 972-978 (Author Manuscript Available in PMC, Sep. 21, 2009, 19 pages). |
Niven et al., “Some Factors Associated with the Ultrasonic Nebulization of Proteins”. Pharmaceutical Research, vol. 12, No. 1, 1995, pp. 53-59. |
Remington Pharmacy, Editor Alfonso R. Gennaro. 19th ed., Spanish Secondary Edition: Panamericana, Spain, 1995, Sciarra, J.J., “Aerosols”, pp. 2560-2582. The English translation is from the 1995 English Primary Edition, Sciarra, J.J., Chapter 95, R97-1185. |
Trasch et al., “Performance data of refloquant Glucose in the Evaluation of Reflotron”. Clinical Chemistry, vol. 30, 1984, p. 969 (abstract only). |
Wall et al., “High levels of exopeptidase activity are present in rat and canine bronchoalveolar lavage fluid”. International Journal of Pharmaceutics, vol. 97, Issue 1-3, pp. 171-181, 1993, Abstract pp. 1-2. |
Wang et al.; Self-Assembled Silane Monolayers: Fabrication with Nanoscale Uniformity; Langmuir; 2005; vol. 21; No. 5; pp. 1848-1857. |
International Search Report and Written Opinion for PCT/EP04006768, 10 pages, dated Sep. 24, 2004. |
International Search Report and Written Opinion for PCT/EP2005/001947, 11 pages, dated May 19, 2005. |
International Search Report and Written Opinion for PCT/EP2005/004792, 19 pages, dated Aug. 4, 201. |
International Search Report and Written Opinion for PCT/EP2005/055560, 13 pages, dated Mar. 2, 2006. |
International Search Report and Written Opinion for PCT/EP2006/068399, 8 pages, dated Jun. 25, 2007. |
International Search Report and Written Opinion for PCT/EP2006/068395, 8 pages, dated Jun. 25, 2007. |
International Search Report and Written Opinion for PCT/EP2006/068396, 11 pages, dated Apr. 23, 2007. |
International Search Report and Written Opinion for PCT/EP2006/068397, 13 pages, dated Feb. 21, 2007. |
International Search Report and Written Opinion for PCT/EP2006/068398, 10 pages, dated May 10, 2007. |
International Search Report and Written Opinion for PCT/EP2007/001558, 13 pages, dated Sep. 28, 2007. |
International Search Report and Written Opinion for PCT/EP2007/054488, 11 pages, dated Jul. 18, 2007. |
International Search Report and Written Opinion for PCT/EP2007/054490, 11 pages, dated Jul. 17, 2007. |
International Search Report and Written Opinion for PCT/EP2007/054492, 13 pages, dated Aug. 16, 2007. |
International Search Report and Written Opinion for PCT/EP2007/055381, 14 pages, dated Sep. 3, 2007. |
International Search Report and Written Opinion for PCT/EP2007/055383, 18 pages, dated Sep. 27, 2007. |
International Search Report and Written Opinion for PCT/EP2009/001619, 6 pages, dated Jun. 10, 2009. |
International Search Report and Written Opinion for PCT/EP2009/005949, 8 pages, dated Jan. 20, 2010. |
International Search Report and Written Opinion for PCT/EP2010/057937, 1 pages, dated Jul. 20, 2010. |
International Search Report and Written Opinion for PCT/EP2010/067896, 14 pages, dated Apr. 13, 2011. |
International Search Report and Written Opinion for PCT/EP2010/067901, 12 pages, dated Apr. 14, 2011. |
International Search Report and Written Opinion for PCT/EP2010/067902, 10 pages, dated May 2, 2011. |
International Search Report and Written Opinion for PCT/EP2012/058905, 12 pages, dated Oct. 19, 2012. |
International Search Report and Written Opinion for PCT/EP2012/059454, 16 pages, dated Jan. 14, 2013. |
International Search Report and Written Opinion for PCT/EP2012/059463, 10 pages, dated Oct. 25, 2012. |
International Search Report and Written Opinion for PCT/EP2013/001068, 9 pages, dated Jun. 5, 2013. |
International Search Report and Written Opinion for PCT/EP2013/054324, 11 pages, dated Jun. 5, 2013. |
International Search Report and Written Opinion for PCT/EP2014/067006, 15 pages, dated Nov. 24, 2014. |
International Search Report and Written Opinion for PCT/EP2015/000903, 31 pages, dated Nov. 5, 2015. |
International Search Report and Written Opinion for PCT/EP2015/059691, 22 pages, dated Oct. 8, 2015. |
International Search Report and Written Opinion for corresponding PCT/EP2010/007961, 18 pages, dated Oct. 28, 2010. |
International Search Report for PCT/EP199904803, 6 pages, dated Dec. 15, 1998. |
International Search Report for PCT/EP1999/07589, 6 pages, dated Mar. 1, 2000. |
International Search Report and Written Opinion for PCT/EP2007/003322, 13 pages, dated Aug. 17, 200. |
International Search Report and Written Opinion for PCT/EP2007/054489, 12 pages, dated Feb. 10, 2007. |
International Search Report and Written Opinion for PCT/EP2008/011112, 14 pages, dated Sep. 3, 2009. |
International Search Report and Written Opinion for PCT/EP2008/055863, 25 pages, dated Dec. 19, 2008. |
International Search Report and Written Opinion for PCT/EP2009/001153, 8 pages, dated May 20, 2009. |
International Search Report and Written Opinion for PCT/EP2010/002740, 18 pages, dated Nov. 12, 2010. |
International Search Report and Written Opinion for PCT/EP2010/053668, 11 pages, dated Nov. 8, 2010. |
International Search Report and Written Opinion for PCT/EP2011/059088, 14 pages, dated Sep. 26, 2011. |
International Search Report and Written Opinion for PCT/EP2012/055209, 10 pages, dated Jan. 6, 2012. |
International Search Report and Written Opinion for PCT/EP2007/051095, 10 pages, dated Sep. 21, 2007. |
Wall et al., “High levels of exopeptidase activity are present in rat and anine bronchoalveolar lavage fluid,” International Journal of Pharmaceutics, vol. 97, Issue 1-3, pp. 171-181, (Jan. 1993). |
International Search Report and Written Opinion for PCT/EP2014/067001 dated Sep. 9, 2014. |
International Search Report and Written Opinion for PCT/EP2014/067004 dated Jan. 10, 2014. |
Number | Date | Country | |
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20180221603 A1 | Aug 2018 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 14453805 | Aug 2014 | US |
Child | 15942737 | US |