Forehead pad for respiratory mask

Information

  • Patent Grant
  • 10195385
  • Patent Number
    10,195,385
  • Date Filed
    Wednesday, March 18, 2015
    9 years ago
  • Date Issued
    Tuesday, February 5, 2019
    5 years ago
Abstract
A forehead pad for use in a respiratory mask with a forehead support, which includes a base portion to contact a user's forehead, a support post connected to the base portion, and a head adapted to connect the support post to a forehead support. A pair of forehead pads may be joined with a connector.
Description
BACKGROUND OF THE INVENTION

1. Field of the Invention


The invention relates to forehead pads. These pads can be used with a respiratory mask for Non-invasive Positive Pressure Ventilation (NPPV) treatment of Sleep Disordered Breathing (SDB).


2. Background of the Invention


Nasal masks are commonly used in the treatment of respiratory conditions and sleep disorders by delivering a flow of breathable gas to a user to either assist the user in respiration or to provide a therapeutic form of gas to the user to prevent sleep disorders such as obstructive sleep apnea (OSA). These nasal masks typically receive a gas through a supply line, which delivers the gas into a chamber formed by walls of the mask.


The mask is generally semi-rigid and has a face portion that is in communication with the nose and/or mouth of a user. The mask is normally secured to the user's head by straps. The straps are adjusted to pull the mask against the face with sufficient force to achieve a gas-tight seal between the mask and the user's face. Gas is thus delivered to the mask through the aperture to the user's nasal passages and/or mouth.


One of the problems that arises with the use of the mask is that in order for the straps to be tight, the mask is compressed against the user's face and may push unduly hard on the user's nose. Additionally the mask may move around on the user's face. Therefore, masks often contain a forehead support that creates addition contact points between the mask and the user's head. The forehead support minimizes the movement of the mask as well as minimizes uncomfortable pressure points of the mask by preventing the mask from pushing too strongly against the user's nose and/or facial region.


Forehead supports typically have attached thereto a soft comfortable patient-contacting forehead pad. Forehead pads are generally constructed from soft materials, such as silicone, in contrast to the forehead support, which is generally rigid. One form of prior art forehead pad is disclosed in U.S. Pat. No. 6,119,693, the contents of which are hereby incorporated by reference in their entirety.


A problem with existing forehead pads is the mechanism by which the pad is connected to forehead support. The pad must be secured in such a way so as to be easy to insert and remove, but not be unintentionally dislodged. Furthermore, regardless of the relative proximity between the forehead support/pad and the mask frame, there should be no sharp edges against which the user's face can make contact, leading to further discomfort.


One form of known forehead pad is used on the AIR PILOT mask, manufactured by MPV, Truma, Germany, shown in FIGS. 50 to 57. This forehead pad includes a stalk adapted to be pulled through a hole on an arm of a forehead support. The pad also includes two rows of three slots adapted to engage with two rows of three teeth which project rearwardly from the arm of the forehead support. Problems with this type of forehead pad include: (i) it is difficult to assemble; (ii) it is difficult to remove; (iii) it may become dislodged during the night and present sharp teeth to the forehead of a patient; (iv) it has a vague assembly which makes it difficult to know when it is in the correct position; (v) its construction leads to regions of high pressure under the teeth; and (vi) it presents an edge to the forehead of a patient when rocked at an angle.


A further problem with existing forehead pads is that they can lead to uneven pressure on the user's forehead, leading to discomfort and marks on the face. For example, one form of known forehead pad includes a patient contacting surface and a pair of reinforcing struts, as shown in FIGS. 16 to 17. During use, the pad is subject to a compressing force that can lead to pressure points, lines or ridges on the patient contacting surface in the region where the reinforcing struts join it. This can lead to uneven pressure on the user's forehead. The use of existing forehead pads also results in sweating by the user.


Another problem with a known form of forehead support is the mechanism for engaging the forehead pad with the forehead support. The forehead support includes a pair of rigid L-shaped catches c adapted to slidably engage with a recess in the forehead pad, as shown in FIGS. 18 to 20. A problem can arise if a pad is not in position when the forehead support is in use: the catch may abut against the forehead of a user. This can lead to discomfort and marking of the forehead.


Therefore, there exists a need in the art for a forehead pad that overcomes the problems listed above.


SUMMARY OF THE INVENTION

One aspect of the invention is directed towards a mask assembly having a forehead support and a forehead pad that provide more comfort to a user.


Another aspect of the invention is directed towards a forehead pad that distributes contact pressure around the user's forehead.


Another aspect of the invention is directed towards a forehead pad that permits a wide range of motion.


Another aspect of the invention is directed towards a forehead pad that lessens or avoids contact between the user and the edges of the forehead pad.


Another aspect of the invention is directed towards a forehead pad that achieves an even pressure distribution with no localized regions of high forces.


Another aspect of the invention is directed towards providing a forehead pad that is easy to insert in a forehead support and is flexible enough to accommodate a range of different forehead sizes and shapes.


Another aspect of the invention is directed towards a forehead pad that tapers smoothly from the support post to the base region, causing lines of force to be smoothly and evenly carried from the support post to the base region, resulting in an even distribution of the pressure across a user's forehead.


Another aspect of the invention is directed towards a forehead pad for a forehead support of a respiratory mask that comprises a plate region connected to a support post, the support post including a forehead support engaging mechanism.


Another aspect of the invention is directed towards a forehead pad that it is relatively easy to engage with a forehead support but relatively more difficult to disengage.


Another aspect of the invention is directed towards a forehead pad that lessens or avoids contact between the user and the edges of the forehead support.


Another aspect of the invention is directed towards a forehead pad that includes a base portion to contact a user's forehead, a support post comprising a necked down region connected to the base portion, and a head adapted to connect the support post to a forehead support of a respiratory mask.


Another aspect of the invention is directed towards a forehead pad assembly that includes at least two pads, each pad comprising a base portion to contact a user's forehead, a support post comprising a necked down region connected to the base portion, and a head adapted to connect the support post to a forehead support of a respiratory mask. The assembly further comprises at least one connector to connect adjacent base portions.


Other aspects, features and advantages of this invention will become apparent from the following detailed description when taken in conjunction with the accompanying drawings, which are a part of this disclosure and which illustrate, by way of example, principles of preferred embodiments.





BRIEF DESCRIPTION OF FIGURES


FIG. 1 is a perspective view of a respiratory mask and forehead pad according to one embodiment of the present invention;



FIG. 2 is a perspective and enlarged view of the forehead support shown in FIG. 1, without the mask frame and pads;



FIG. 3 is a perspective view of one embodiment of a forehead pad according to the present invention;



FIG. 4 is a perspective view of a respiratory mask and forehead pad according to one second embodiment of the present invention;



FIG. 5 is a perspective view of another embodiment of a forehead pad according to the present invention;



FIG. 6 is a top view of a forehead support including a pair of forehead pads and a forehead of a user;



FIG. 7 is a perspective view of the contact surface of one embodiment of a forehead pad showing raised surfaces;



FIG. 8 is a cross-sectional view of one embodiment of a forehead pad showing a hollowed out region;



FIG. 9 is a top view of an embodiment of a forehead pad assembly showing two pads joined by a flexible connector;



FIG. 10 is a right side view of one embodiment of a forehead pad in a respiratory mask showing contact with a user;



FIG. 11 is a cross-sectional view of one embodiment of a forehead pad engaged with one embodiment of a forehead support;



FIG. 12 is a cross-sectional view of another embodiment of a forehead pad engaged with another embodiment of a forehead support;



FIG. 13 is a cross-sectional view of another embodiment of a forehead pad engaged with another embodiment of a forehead support;



FIG. 14 is a cross-sectional view of another embodiment of a forehead pad engaged with another embodiment of a forehead support;



FIG. 15 is a top view of the embodiment of the forehead support shown in FIG. 14;



FIG. 16 is a cross-section of a prior art forehead pad;



FIG. 17 is a cross-section of the forehead pad shown in FIG. 16 in a compressed state;



FIG. 18 is a cross-section of a prior art forehead pad;



FIG. 19 is a front view of a prior art forehead support;



FIG. 20 is a top view of the forehead support shown in FIG. 19;



FIG. 21 is a side view of another embodiment of a forehead pad according to the present invention;



FIG. 22 is a bottom view of the embodiment shown in FIG. 21;



FIG. 23 is a top view of the embodiment shown in FIG. 21;



FIG. 24 is another side view of the embodiment shown in FIG. 21;



FIG. 25 is a cross-sectional view of the embodiment shown in FIG. 24 along axis 25-25;



FIG. 26 is a perspective view of the embodiment shown in FIG. 21;



FIG. 27 is a perspective view of another embodiment of a forehead support according to the present invention;



FIG. 28 is an end view of another embodiment of a forehead pad according to the present invention;



FIG. 29 is a side view of the embodiment shown in FIG. 28;



FIG. 30 is a perspective view of the embodiment shown in FIG. 28;



FIG. 31 is a top view of the embodiment shown in FIG. 28;



FIG. 32 is a rear view of the embodiment shown in FIG. 9;



FIG. 33 is a top view of the embodiment shown in FIG. 32;



FIG. 34 is a front view of the embodiment shown in FIG. 32;



FIG. 35 is an end view of the embodiment shown in FIG. 9;



FIG. 36 is a cross-sectional view of the embodiment shown in FIG. 35 along axis 36-36;



FIG. 37 is a an expanded cross-sectional view of the embodiment shown in FIG. 35;



FIG. 38 is a rear view of another embodiment a forehead pad according to the present invention;



FIG. 39 is a top view of the embodiment shown in FIG. 38;



FIG. 40 is a cross-sectional view of the embodiment shown in FIG. 38 along axis 40-40;



FIG. 41 is a front view of the embodiment shown in FIG. 38;



FIG. 42 is an end view of the embodiment shown in FIG. 39;



FIG. 43 is a cross-sectional view of the embodiment shown in FIG. 42 along axis 43-43;



FIG. 44 is an expanded cross-sectional view of the embodiment shown in FIG. 42;



FIG. 45 is a cross-sectional view of one embodiment of a forehead pad engaged with one embodiment of a forehead support according to the present invention;



FIG. 46 is side view of the embodiment shown in FIG. 45;



FIG. 47 is a cross-sectional view of another embodiment of a forehead pad engaged with another embodiment of a forehead support according to the present invention;



FIG. 48 is a top view of the embodiment of the forehead pad and the embodiment of the forehead support shown in FIG. 47;



FIG. 49 is a top view of the embodiment of the forehead pad engaged with the embodiment of the forehead support shown in FIG. 47 during an intermediate assembly step;



FIG. 50 is a front view of a prior art forehead pad;



FIG. 51 is a top view of the forehead pad shown in FIG. 50;



FIG. 52 is bottom side view of the forehead pad shown in FIG. 50;



FIG. 53 is a left view of the forehead pad shown in FIG. 50;



FIG. 54 is a top view of a prior art forehead pad;



FIG. 55 is a perspective view of the forehead pad shown in FIG. 55;



FIG. 56 is a top view of a prior art forehead support;



FIG. 57 is a front view of a prior art forehead support;



FIG. 58 is a top view of another embodiment of a forehead pad according to the present invention;



FIG. 59 is a front perspective view of another embodiment of a forehead pad according to the present invention;



FIG. 60 is a rear perspective view of the forehead pad shown in FIG. 59;



FIG. 61 is a cross-sectional view of the forehead pad shown in FIG. 59 along the minor axis;



FIG. 62 is a cross-sectional view of the forehead pad shown in FIG. 59 along the major axis;



FIG. 63 is a perspective view of another embodiment of a forehead pad according to the present invention;



FIG. 64 is a cross-sectional view of another embodiment of a forehead pad according to the present invention;



FIG. 65 is a cross-sectional view of another embodiment of a forehead pad according to the present invention;



FIG. 66 is a cross-sectional view of another embodiment of a forehead pad according to the present invention;



FIG. 67 is a partial cross-sectional view another embodiment of a forehead pad according to the present invention;



FIG. 68 shows an embodiment of a forehead pad according to the present invention flexed in a first direction;



FIG. 69 shows an embodiment of a forehead pad according to the present invention flexed in a second direction;



FIG. 70 shows an embodiment of a forehead pad according to the present invention flexed in a third direction; and



FIG. 71 shows an embodiment of a forehead pad according to the present invention flexed in a fourth direction.





DETAILED DESCRIPTION OF ILLUSTRATED EMBODIMENTS


FIG. 1 shows an example of a respiratory mask assembly 100. The mask assembly includes a frame portion 101, a forehead support 102, and a forehead pad 300. The mask is adapted to fasten securely and comfortably to a user's face. In particular, the mask assembly 100 comprises a seal-forming region 103 that covers the user's nose and/or mouth and a contains opening 104 to which an air delivery tube can be attached. Air or oxygen flows through the opening 104 under positive pressure.


The forehead support 102 is advantageously connected to the frame portion 101 of the mask assembly 100, e.g., by a pivot device 105, which can be adjusted to allow the forehead support 102 to the accommodate the configuration of a user's face. The forehead support 102 is preferably made from a thermoplastic material. One embodiment of a forehead support is shown in greater detail in FIG. 2.


The forehead support 102 can be configured to be essentially straight or it can be curved. The essential straight embodiment is shown in FIG. 2. In the case where the forehead support is curved, the curvature generally follows the curvature of the user's forehead. While this is the most likely structure, it is within the scope of the present invention to use a forehead support 102 that has the opposite curvature, or any combination thereof.


The forehead support 102 can be provided with one or more openings. These openings can be adapted to serve numerous purposes including points of connection to the mask frame, points of connection to any another support surface, points of connection 201 for straps to secure the mask to the user, and apertures 202 for a forehead pad.


In a preferred embodiment of the forehead support 102, the apertures 202 are designed to receive a head of the forehead pad 300. The apertures 202 can be disposed about the forehead support 102 in a manner to allow a user to adjust the position of the forehead pad 300. The apertures 202 are also designed to allow a user to attach the forehead pad 300 securely to the forehead support 102. In a preferred embodiment, the apertures 202 designed to allow a user to attach the forehead pad 300 securely and reversibly to the forehead support 102.


The forehead pad 300 in accordance with a first embodiment of the invention is shown in greater detail in FIG. 3. The forehead pad 300 comprises a base portion 305 to contact a user's forehead, a support post 301 connected to the base portion, and a head 302 adapted to be connected to the forehead support 102. In this embodiment, the head 302 is bullet or cone shaped, or otherwise tapered. However, other shapes are possible as long as they serve the purpose of the invention.


The base portion 305, support post 301, and head 302 can be separate pieces, designed to fit with each other. In one embodiment, the base portion 305 and the support post 301 can be constructed as one piece. In another embodiment, the support post 301 and the head 302 can be constructed as one piece. In yet another embodiment, the base portion 305 and the head 302 can be constructed without a support post 301. Finally, in a preferred embodiment, the base portion 305, the support post 301, and the head 302 are molded integrally into one piece.


The embodiment shown in FIG. 3 contains a necked down region 303 between the base of the head 302 and the top of the support post 301. In a preferred configuration, the forehead pad is adapted to releasably engage with the forehead support 102. The function of the necked down region 303 is to facilitate this feature. The necked down region 303 is such that its diameter is smaller than the diameter of the base of the head 302. This results in a lip 304a between the base of the head 302 and the necked down region 303 and another lip 304b between the necked down region 303 and the support post 301.


In a preferred embodiment, the necked down region 303 is at least as long as the length of the aperture 202 (FIG. 2) in the forehead support 102. Insertion of the pad 300 through a first end 200 of the aperture in the forehead support 102 results in the head 302 passing through the aperture 202 and emerging out a second end 210. The support post 301 remains on the side of the first end 200 of the aperture 202 with the necked down region 303 occupying at least the length of the aperture. This feature results in easy insertion and a tight fit.


Typically, this insertion can be carried out by a user by applying axial pressure to the base portion 305 of the pad 300. While the support post 301 is flexible, it can withstand the forces needed for assembly. Using the forehead pad embodiment described in FIG. 3 and the forehead support described in FIG. 2 as examples, the head 302, as well as the lip 304a distort as axial force is applied against the first end 200 of the aperture 202, until the head 302 and the lip 304a reach a second end 210 of the aperture 202, whereupon the lip 304a re-expands to engage a first surface 215 of the forehead support 102 adjacent to the aperture 202. Further, the lip 304b abuts against a second surface 205 of the forehead support 102, to prevent axial movement of the pad 300.


The removal of the pad occurs by applying a pulling force it in a direction opposite to the axial force applied for insertion. Once again, the head 302 and the lip 304a distort as the lip 304a disengages with the first surface 215 of the forehead support 102 adjacent to the aperture 202. Lip 304a disengages with the second surface 205 of the forehead support 102. Both the head 302 and the lip 304a regain their original shape after disengagement from the forehead support 200.


The pressure can be applied by a user's fingers and the successful insertion of the pad 300 is indicated not only by the emergence of the head 302 through the first surface 215 of the aperture 202 but typically also by a clicking sound. The combination of sight, sound, and ease of insertion is useful for aged or otherwise infirm users with limited manual and/or digital dexterity. The sound produced has the added benefit of providing the user of knowledge that the pad 300 has been successfully inserted in the dark. This feature can be of importance due to the fact that the masks are used at night. Both the forehead support 102 and the forehead pad 300 are configured such that the pad 300 can be placed in different positions on the support 102 so as to achieve different positions of contact on the user's forehead.


A wide variety of methods well known to a person skilled in the art for the manufacture of the base portion, support post, and head. A preferred method of manufacture is by injection molding.


The support post 301 can project from the base portion 305 at an angle α, defined between a tangent t to the outer surface of the base portion 305 at a point of contact between the support post 301 and the base portion 305. This angle α can be about 90°, i.e., the support post 301 extends essentially straight out from the base portion 305. FIG. 3 shows an embodiment of a forehead pad 300 in which the angle α is about 90°.



FIG. 4 shows another embodiment of a respiratory mask assembly 410. The mask assembly 410 includes of a frame portion 411, a forehead support 412, and another embodiment of a forehead pad 400. The forehead support 412 is advantageously connected to the frame portion 411 of the mask 410, e.g., by a pivot device 413. The mask assembly 410 comprises a seal-forming cushion 414 that covers a user's nose and/or mouth and contains a swivel elbow 415. The swivel elbow 415 is adapted to receive a supply of air or oxygen flows at positive pressure.



FIG. 5 shows another embodiment of a forehead pad 400 in greater detail. This embodiment of the pad 400 includes a base portion 408, a support post 401, and a head 402. The general construction and operation is similar to that of the first embodiment although there are several differences in the construction, for example, the angle β between the tangent t to the outer surface of the base portion 406 at a point of contact between the support post 401 and the base portion 408 is between about 60° and about 120°. Preferably, the angle β is about 70°. One advantage of a support post 401 projecting at an angle less than 90° is to allow the base portion 400 to better fit the contours of a user's forehead, as shown in FIG. 6.


The support post 401 can be constructed in a manner so as to make it more flexible. For example, the support post 401 includes cut away portions 405. These cut away portions help the support post to be able to be bent or flexed, varying the angle β in use. In this way, a support post 401 of larger diameter may be used while still retaining a degree of flexibility as shown in FIGS. 68 to 71.


The base portion 408 can be of any shape, preferably in a pad-like configuration. In one embodiment, a contact region 407 of the base portion 408 is shaped so that the transmission of contact forces to the surface of the forehead of the user takes place under physiologically compatible pressures, as shown in FIG. 58. In a preferred embodiment, the contact region 407 is concavely curved to follow the curvature of a forehead.


The contact region 407 can optionally include a raised surface pattern 510 as shown in FIG. 7. The pattern 510 reduces the possibility of a suction effect of the pad 400 thereby reducing the drawing of blood in the region and making the pad 400 more comfortable. The raised pattern 510 has the added benefit of reducing sweating. In another embodiment, a rear surface of the pad 400 is given a sand-blasted finish to improve ventilation and reduce the likelihood of sweating.


The base portion 408 and support post 401 of the pad 400 can also include a hollowed out region 608 extending a pre-determined distance 601 into the base portion 408 and/or the support post 401 as shown in the cross-sectional view in FIG. 8. In the embodiment shown, the hollowed out region 608 extends through the base portion 408 and partly into the support post 401. This structure imparts a degree of springiness and flexibility to the forehead pad 400. Due to the essentially incompressible nature of silicone, some cut-away regions 405 assist flexibility. The use of the hollowed out region 608 allows for some movement along an axis through the support post 401.


Increasing the diameter of the support post 401 makes the forehead pad 400 easier to insert into the forehead support 102. Furthermore, a larger diameter reduces the likelihood of localized pressure points. However, as the support post 401 is made thicker, it becomes less flexible. Hence the preferred embodiment of the invention balances ease of insertion with flexibility.


In another embodiment, the hollowed out region 608 extends through the base portion 408, the support post 401, and the head 402 resulting in a through-bore 509 (shown in FIG. 7). The through-bore 509 may further facilitate compression of the support post 401 and head 402 during assembly and disassembly. This structure allows a flow of air and/or moisture to occur from the user's skin to the atmosphere, resulting in a reduction of sweating and a more comfortable pad 400.


The support post 401 has a diameter that is in its broadest aspect between about 0.1 cm and about 3.0 cm. More specifically the diameter of the support post of the embodiment of FIG. 9 is between about 0.5 cm and about 1.25 cm, and most preferably the diameter is about 1 cm. The term “about” is meant to indicate that the diameters are not absolute and can be deviated by one skilled in the art. Alternative embodiments, such as those shown in FIGS. 21 to 31 have different diameters.


The support post 401 has a length that is in its broadest aspect between about 0.1 cm and about 2.5 cm. More specifically the length is between about 0.5 cm and about 1.25 cm, and most preferably the length is about 1 cm. Dimensions for one form of forehead pad are shown in FIG. 37. Once again, the term “about” is meant to indicate that the lengths are not absolute and can be deviated by one skilled in the art.


The support post 401 can be straight or it can taper. An example of a straight support post is shown in the embodiment in FIG. 3. The taper can also be such that the region at the base portion is thicker than the head region, as shown in the embodiment in FIG. 5.


As would be understood by one skilled in the art, a wide variety of materials can be used to manufacture the forehead pad in accordance with the present invention. Features of any material used should include biocompatibility, flexibility and comfort. Some examples of such materials include rubber and flexible plastics. In a preferred embodiment, the pad is constructed from cured Liquid Silicone Rubber (Part#2666031, Silastic 94-595-HC) manufactured by Dow Corning, alternatively a silicone with a hardness of approximately 35-45 Shore A may be used. These examples are merely intended to be illustrative and are not limiting in any manner.


In accordance with a preferred embodiment of the present invention, at least two base pads can be joined in a forehead pad assembly 700. In this embodiment, two versions of which are shown in FIGS. 9 and 32 to 44, a connector 711 is used to connect adjacent base portions 708. Any type of connector can be used such as a strap or a flexible bridge portion. An advantage of a connector is that the assembly 700 has a one-piece design which is less likely to be lost. The plurality of base portions 708, with contact regions 707, and connectors 711 can be integrally formed with each other.


As mentioned earlier, the hollowed out region 608 can extend a pre-determined distance into the base portion 708 and/or the support post 701. This distance can be adjusted to increase flexibility of the forehead pad assembly 700. For example, the hollowed out region 608 extends a longer distance into the support post 701 in the embodiment shown in FIG. 44 when compared to the embodiment shown in FIG. 37. Increasing the distance of the hollowed out region 608 has several advantages including flexibility, minimization of contact with the edges of the base portion 708, and better airflow resulting in a reduction in sweating by the user.


The hollowed out region 608 can also have a variety of shapes including conical, pyramidal, cylindrical, or combinations thereof. It is within the scope of this invention that the hollowed out region 608 have additional sub-structures within it including ridges, bumps, or holes.


In a preferred embodiment, the two base portions 708 of a forehead pad assembly 700 are adapted in order to be situated above left and right eyebrows of the user. As shown in FIG. 10, a base portion 708 is shown against the user's forehead 813. The support post 701 is designed to act as a spring along the direction of arrow 814. The cut away portions 705 improve its flexibility while maintaining ease of insertion. Another advantage of this design is that it can better accommodate rolling and twisting of the mask 410. A further advantage of the support post 701 is that its diameter is optimized to reduce the effect of a single point of pressure on the forehead 813.


The cut away portions 705 define an undercut 720 between the cut away portions 705 and the base portion 708. The undercut 720 can be a variety of shapes including curved, square, conical, triangular, or any combinations thereof. The undercut 720 depth e can also be varied. The depth e can range between about 0.25 mm to about 1.25 mm, preferably between about 0.5 mm and about 1 mm, and most preferably about 0.75 mm. The term “about” is meant to indicate that the widths and lengths are not absolute and can be deviated by one skilled in the art.


The number, shape, and size, width w, and length 1 of the cut away portions 705 can be varied to serve a variety of purposes including ease of insertion, ease of removal, flexibility of motion when unassembled with the forehead support, flexibility of motion when assembled with the forehead support, minimization of contact between the user and the edges of the base portion 708, minimization of contact between the user and the edges of the forehead support 102, and angles between the forehead pad assembly 700 and the forehead support 102. The width w can range between about 0.25 mm to about 1.25 mm, preferably between about 0.5 mm and about 1 mm, and most preferably about 0.75 mm. The length 1 can range between about 0.05 mm to about 1.5 mm, preferably between about 0.25 mm and about 1 mm Once again, the term “about” is meant to indicate that the widths and lengths are not absolute and can be deviated by one skilled in the art.


The cut away portions 705 can have regions of similar or different widths w and similar or different lengths 1. Comparison of the embodiment of the forehead pad assembly 700 shown in FIGS. 32 to 37 with the embodiment of the forehead pad assembly 700 shown in FIGS. 38 to 44 shows a few variations in the cut away portions 705. The width w of the cut away portions 705 in the embodiment shown in FIGS. 38 to 44 is less than the width w of the cut away portions 705 in the embodiment shown in FIGS. 32 to 37.


The undercut 720 in FIG. 40 (a cross-sectional view along line 40-40 of FIG. 39) may be more pronounced than the embodiment of FIGS. 32 to 37. Thus the range of movement of the pad in the vertical plane can be increased, thereby increasing the range of users the mask will fit. In addition, the increased range of movement can help prevent the edge of the pad from coming in contact with the user's forehead, thereby increasing user compliance and comfort. Finally, the increased undercut 720, along with the shape and size of the surrounding cut away portions 705, can effect the force necessary to flex the base portion 708 with respect to the support post 701, thereby optimizing the desired flexing forces within levels acceptable to the user while still allowing adequate performance of the forehead pad assembly 700.


One advantage of reducing the width w and/or increasing the depth e is to vary the angle δ between the forehead pad assembly 700 and the forehead support 102, which in turn allows for greater range of motion and user comfort. The angle δ is the angle between a horizontal line h and a line passing through the center of the base portion 708 and the support post 701. FIGS. 45 and 46 show the embodiment of the forehead pad assembly 700 shown in FIGS. 38 to 44 assembled with the forehead support 102. The angle δ is about 25°. The angle δ of the embodiment of the forehead pad assembly 700 shown in FIGS. 32 to 37 assembled with the forehead support 102 is about 0°. Once again, the term “about” is meant to indicate that the angles are not absolute and can be deviated by one skilled in the art.


Presentation of the base portion 708 of the forehead pad assembly 700 at an angle which is generally parallel to the users forehead provides improved comfort to the user, reducing the likelihood of pressure sores which may result from an uneven presentation. In some forms of long masks, for example a full face mask, the forehead support 102 may be positioned in use higher up the forehead of the user than in a nasal mask.


In the embodiment of forehead support shown in FIG. 42, the support post 701 and base portion 708 are generally perpendicular to one another when viewed from an end. However, in other embodiments, they may be constructed at different angles. For a long mask, because of the curvature of the skull, in order that the base portion 708 of the forehead pad assembly 700 be presented generally parallel to the user's forehead, either (i) the forehead support 102 should be adapted to retain a perpendicular forehead pad assembly 700 at an angle, as shown in FIG. 45, or (ii) the forehead support 102 should be adapted to retain a non-perpendicular forehead pad assembly 700 at a right angle. In the preferred embodiment, a perpendicular pad is used and the forehead support 102 is adapted to retain and present the pad to the forehead of the user at the appropriate angle. In this way, the same forehead pad assembly 700 can be used across a range of mask systems, for example, nasal masks and full face masks, providing an economic benefit to the manufacturer through the use of common parts.



FIG. 11 shows a cross section of an embodiment of a forehead pad 900 inserted into an aperture 930 in a forehead support 940. To insert the pad 900, axial force is applied in the direction of arrow 914. The head 902 and the lip 904 distort as they pass through the aperture 930. Once the head 902 and the lip 904 are through the aperture 930, the necked down region 903 of the support post 901 occupies the length of the aperture 930. This results in the lip 905 also making contact with the forehead support 940. The engagement of lips 904 and 905 with respective side surfaces of the forehead support 940 results in maintaining the pad 900 in position.


To remove the pad 900 from the forehead support 940 the pad 900 is pulled in an opposite direction to arrow 914. Once again, the head 902 and/or the lip 904 distort as they pass through the aperture 930 enable the pad 900 to disengage from the forehead support 940.



FIG. 12 shows a cross section of an embodiment of a forehead pad 1000 inserted into another embodiment of a forehead support 1040. The forehead support 1040 has arms 2000 that can move in direction d when pressure is applied to the pad 408 in direction a. In one embodiment, the movement of arms 2000 results in a plastic deformation, i.e., the removal of the pad 408 results in the arms 2000 remaining essentially in the position they were when the pad 408 was inserted. In another embodiment, the movement of arms 2000 results in an elastic deformation, i.e., the removal of the pad 408 results in the arms 2000 returning essentially to the position they were before the pad 408 was inserted. The support post 401 can compress in direction b allowing for ease in insertion and removal but still providing a firm fit. Once inserted, the pad 408 can be adjusted by angle γ.


A cross section of another embodiment of a forehead pad 1000 engaged with a rigid forehead support 1040 is shown in FIG. 13. The forehead support 1040 comprises lips 1042 and 1043. Lip 1042 of the forehead support 1040 is adapted to engage lip 1004 of the head 1002 and lip 1043 of the forehead support 1040 is adapted to engage lip 1005 of the support post 1010. In another embodiment of the invention, the support post 1010 is co-molded to the forehead support 1040.



FIGS. 14 and 15 shown another embodiment of a forehead pad 1000 engaged with an embodiment of a forehead support 1040. The forehead support 1040 has arms 2001. These arms 2001 define the aperture 1030 and can be moved in direction a to allow for removal of the pad 1000.


In another embodiment of the invention, the support post 1010 includes a generally cylindrical end region adapted to engage with a key-shaped slot of a forehead support. To attach the stalk to the forehead support, a small-diameter portion of the end region is slid through a generally rectangular region of smaller diameter, causing it to distort, before being received within a generally cylindrical region having a diameter slightly larger than that of the stalk, as in FIGS. 47 to 49. The smaller diameter portion of the end region defines two shoulder regions, similar in function to those of other embodiments, adapted to prevent axial movement of the pad.


In one form, the base portion 408 of the forehead pad is generally plate- or disc-shaped. In a preferred form, it presents a concave surface to a forehead of a patient in use. Possible shapes of the base portion include rectangular and oval shapes.


The shape of the support post 401 and base portion 408 are designed to cause lines of force 490 to be smoothly and evenly carried from the support post 401 to the base portion 408, as shown in FIG. 58. In this way there is an even distribution of pressure across the user's forehead 813. The lines of force 490 are not concentrated. The support post 401 is of a design to be sufficiently rigid so that it does not buckle when inserted and pushed.


An alternative embodiment of a forehead pad according to the present invention is shown in FIGS. 59 to 62. In this embodiment, there is a “cleat” on the T-bar arm of the forehead support, the cleat having a generally oval shape and positioned away from the surface of the arm of the forehead support, defining a space between the front side of the cleat and the arm of the forehead support. The pad has a generally oval shape, defining a major and minor axis and includes a shaft therethrough with a varying profile. The initial profile is of a complementary shape to the cleat, allowing the pad to fit on the cleat. Further along the shaft, the profile rotates approximately 90°, defining a shoulder region. In this way, the pad can be inserted over the cleat and then twisted approximately 90° to lock it in position. In this position, the shoulder region of the pad engages with the front side of the cleat.


In a preferred embodiment, the pad includes a pair of dimples adapted to engage with corresponding protrusions on the arm of the forehead support. Engagement between the dimples and respective protrusions provides feedback to the user that the pad has been correctly rotationally aligned. Furthermore, the engagement between dimples and protrusions reduces unintentional rotational movement of the pads. Alternative locking mechanisms, such as those with keys or moveable slider blocks, fall within the scope of the invention.



FIG. 63 shows an alternative embodiment of the invention. In this embodiment, the arms of the forehead support 102 are generally cylindrical and are covered in a generally cylindrical “pipe” of foam, forming the forehead pad 400. Because of the generally constant radius of the forehead arm and the pipe, there are no sharp edges presented to the forehead of the user, regardless of the angle of the support with respect to the forehead. In one form, the foam only partly surrounds the arm of the forehead support. Furthermore, because of the generally constant properties of the foam with respect to angular position, the lines of force are smoothly carried to the forehead of the user. In another embodiment, the pipe is shaped so that its outer surface positions a thicker section at the forehead and the bore through the pipe need not be circular, permitting attachment to non-circular arms.


In alternative embodiments, shown in FIGS. 64 to 66, the thickness of the pipe about a circumference can be varied to provide adjustability. The pipe can have two sections of different thicknesses (FIG. 64), three sections of different thickness (FIG. 65), or can have an eccentric thickness (FIG. 66). These embodiments offer several other advantages including increasing the snugness of the fit without removal of the mask, decreasing tightness of the pipe and associated symptoms, e.g., sweating and discomfort, without removal of the mask.



FIG. 67 shows an alternative embodiment of the invention. In this embodiment, the tip of the forehead support 102 comprises a generally spherical ball. A foam or silicone pad 400, also generally spherically shaped, is placed over the tip of the forehead support 102. The general spherical shape smoothly carries lines of force from the tip of the forehead support to the forehead, regardless of orientation. In this way there is an even distribution of force on the forehead of the user.


While this application has described a few embodiments of forehead pads and forehead supports, it is well understood by one skilled in the art that various forehead pads, forehead supports, and masks can be used interchangeably. A type of forehead pad is not limited to a particular forehead support or to a specific mask.


In an alternative embodiment, the support post of the forehead pad can be used in combination with an extruded pad such as used on the MIRAGE mask (U.S. Pat. No. 6,119,693). Another embodiment has a forehead pad devoid of a convex surface, instead including a support post used in combination with a concave surface. Another embodiment includes a pad with varying cross-sectional thicknesses, e.g., it could be thinner at edges for greater flexibility when rolling, than at the center.


It can thus be appreciated that the aspects of the present invention have been fully and effectively accomplished. The foregoing specific embodiments have been provided to illustrate structural and functional principles of the present invention, and are not intended to be limiting. To the contrary, the present invention is intended to encompass all modifications, alterations and substitutions within the spirit and scope of the present invention.

Claims
  • 1. A forehead support assembly for a respiratory mask, comprising: a forehead support comprising a pair of apertures, the pair of apertures being provided on opposites sides of a centerline of the forehead support, each aperture extending through the forehead support from a first side to a second side opposite the first side and configured to face a patient's forehead; anda forehead pad assembly repeatably attachable to and detachable from the forehead support, the forehead pad assembly being formed of flexible material and comprising: a pair of forehead pads, each of which has a curved base portion having a first side configured to face the forehead support when the forehead pad assembly is connected to the forehead support and a second side configured to engage the patient's forehead;a pair of a support posts, each of which extends from the first side of a respective base portion, each support post having a proximal end adjacent the first side of the respective base portion and a distal end opposite the proximal end, each support post comprising a head at the distal end, a necked down region between the head and the proximal end, the necked down region having a cross-sectional area smaller than a cross-sectional area of a base of the head such that a lip is formed between the base of the head and the necked down region, the base of the head having a cross-sectional area that is larger than a cross-sectional area of the apertures of the forehead support;a hollowed out region extending into the base portion without reaching the head of the support post so that the support post is axially compressible; anda connector that connects the base portions of the forehead pad assembly to each other,wherein the forehead pad assembly is attachable to the forehead support by applying an axial force on each base portion in an axial direction of each support post to insert each support post through a respective aperture in the forehead support to distort the head and the lip until the lip reaches an end of the aperture and returns to its undistorted shape and engages a surface of the forehead support surrounding the aperture, and the forehead pad assembly is detachable from the forehead support by applying a pulling force to each base portion in a direction opposite to the pressure applied for insertion to distort the lip and the head to disengage the lip from the surface of the forehead support,wherein the support post further includes a tapered portion such that a region at the base portion has a larger cross-sectional area than the head.
  • 2. A forehead support assembly for a respiratory mask according to claim 1, wherein each support post projects from the first side of the respective base portion at an angle, the angle being defined between an axis of the support post and a tangent to the first side at the point of contact between the support post and the base portion, and the angle is less than 90 degrees.
  • 3. A forehead support assembly for a respiratory mask according to claim 2, wherein a portion of the second side of each forehead pad further comprises a raised surface pattern and the raised surface pattern has four arms that extend generally from a central point of the second side.
  • 4. A forehead support assembly for a respiratory mask according to claim 3, wherein a first portion of the each of the heads has a substantially rectangular shape that merges with a second portion that has a substantially triangular shape, and each aperture of the forehead support has a similar shape.
  • 5. A forehead support assembly for a respiratory mask according to claim 4, wherein the raised surface pattern reduces the possibility of a suction effect of each of the forehead pads.
  • 6. A forehead support assembly for a respiratory mask according to claim 1, wherein the support post further comprises a cut away portion between the necked down portion and the proximal end.
  • 7. A one-piece integrally molded forehead pad comprising: a substantially rectangular base portion having a first side and an opposing second side, the first side being concavely curved and having a raised surface pattern, the second side being convexly curved;a support post projecting from the second side of the base portion at an oblique angle defined between a tangent to the second surface of the base portion at a point of contact between the support post and the base portion, the support post comprising at least one undercut adapted to increase a flexibility of the support post;a hollowed out region extending through the base portion and partly into the support post, the hollowed out region configured to make the support post axially compressible;a head adapted to connect the forehead pad to a forehead support of a respiratory mask, a top surface of the head having a substantially rectangular first portion that merges with a substantially triangular second portion, the head being tapered from a bottom portion to the top surface; anda necked down region located between the support post and the head, a cross-sectional area of the necked down region being smaller than a cross-sectional area of a top portion of the support post and smaller than a cross-sectional area of the bottom portion of the head so as to form a first lip at a base of the head and a second lip at the top portion of the support post,wherein the support post includes a tapered portion such that a region at the base portion has a larger cross-sectional area than the head, andwherein the hollowed out region does not extend into the head.
  • 8. The forehead pad of claim 7, wherein support post is flexible and is adapted to withstand an assembly force applied when the forehead pad is connected to the forehead support of the respiratory mask.
  • 9. The forehead pad of claim 7, wherein the hollowed out region imparts a degree of springiness to and flexibility to the forehead pad.
  • 10. The forehead pad of claim 7, wherein the first and/or second side of the base portion has a sand-blasted finish.
  • 11. The forehead pad of claim 7, wherein, in the absence of a force acting on the support post, the support post projects from the second side of the base portion at the oblique angle defined between the tangent to the second surface of the base portion at the point of contact between the support post and the base portion.
  • 12. A one-piece integrally molded forehead pad assembly comprising: two forehead pads according to the forehead pad of claim 7; andat least one connector that connects adjacent base portions.
  • 13. The forehead pad assembly of claim 12, wherein the connector is a flexible bridge.
  • 14. A respiratory mask assembly comprising: a headgear assembly adapted to support the mask assembly on a user's face;a frame portion with lower headgear anchor points adapted to anchor straps of the headgear assembly;a seal-forming portion adapted to cover the user's nose and/or mouth;a forehead support connected to the frame portion, the forehead support being curved and having a plurality of headgear connection points and one or more forehead pad connection points; andthe forehead pad assembly of claim 12, whereinthe forehead pad connection points comprise apertures shaped complimentary to the shapes of the heads of the forehead pads, the forehead pad connection points receiving the heads of the forehead pads,the heads of the forehead pads have larger cross-sectional areas than the forehead pad connection point apertures,a length of each necked down region is substantially the same as a length of the forehead pad connection point apertures,the first lip of each forehead pad abuts a first side of the forehead support and the second lip of each forehead pad abuts a second side of the forehead support when the forehead pad assembly is mounted on the forehead support,the emergence of the heads of the forehead pads through the forehead connection points produces an audible sound, andthe headgear connection points comprise apertures that receive headgear straps to secure the mask assembly to the user's face.
  • 15. The respiratory mask assembly of claim 14, wherein the curvature of the forehead support is adapted to follow a curvature of the user's forehead.
  • 16. The respiratory mask assembly of claim 15, wherein the first lips and the second lips of the forehead pads prevent axial movement within the forehead pad connection points when the forehead pad assembly is mounted on the forehead support.
  • 17. The respiratory mask of claim 16, wherein the head and the first lip are configured to distort when an axial force is applied to a first end of the hole in the forehead support until the head and the first lip reach a second end of the hole in the forehead support.
  • 18. A silicone forehead pad comprising: a substantially rectangular base portion;a support post projecting from the base portion and comprising at least one cut-away portion adapted to increase a flexibility of the support post;a hollowed out region extending through the base portion and partly into the support post, the hollowed out region being configured to make the support post axially compressible;a head adapted to connect the forehead pad to a forehead support of a respiratory mask, a top surface of the head having a smaller cross-sectional area than a base of the head; anda necked down region located between the support post and the head,wherein the support post includes a tapered portion such that a region at the base portion has a larger cross-sectional area than the head, andwherein the hollowed out region terminates before reaching the head.
  • 19. The forehead pad of claim 18, wherein the support post projects from the base portion at an angle defined between a tangent to the second surface of the base portion at a point of contact between the support post and the base portion.
  • 20. The forehead pad of claim 19, wherein the angle is an oblique angle.
  • 21. The forehead pad of claim 18, wherein the necked down region forms a first lip at the base of the head and forms a second lip at a top portion of the support post.
  • 22. The forehead pad of claim 18, wherein the hollowed out imparts a degree of springiness to and flexibility to the forehead pad.
  • 23. The forehead pad of claim 22, wherein the support post is adapted to withstand forces needed for assembly of the head to the forehead support.
  • 24. The forehead pad of claim 18, wherein the head has a substantially rectangular first portion that merges with a substantially triangular second portion.
  • 25. The forehead pad of claim 18, wherein the base portion is curved and has a raised surface pattern.
  • 26. A one-piece integrally molded forehead pad assembly comprising: two forehead pads according to the forehead pad of claim 18; andat least one connector that connects adjacent base portions.
  • 27. A respiratory mask assembly comprising: a frame portion;a seal-forming portion adapted to cover a user's nose and/or mouth;a forehead support connected to the frame portion, the forehead support being curved and having a plurality forehead pad connection points; andthe forehead pad assembly of claim 26 connected to the forehead support.
  • 28. The respiratory mask assembly of claim 27, wherein the necked down region forms a first lip at the base of the head and forms a second lip at a top portion of the support post.
  • 29. The respiratory mask of claim 28, wherein the head and the first lip are configured to distort when an axial force is applied to a first end of the hole in the forehead support until the head and the first lip reach a second end of the hole in the forehead support.
CROSS-REFERENCE TO RELATED APPLICATIONS

The present application is a continuation of U.S. application Ser. No. 12/946,244, now allowed, which is a divisional of U.S. application Ser. No. 11/705,451, filed Feb. 13, 2007, now U.S. Pat. No. 7,856,980, which is a continuation of U.S. application Ser. No. 10/655,595, filed Sep. 5, 2003, now U.S. Pat. No. 7,216,647, which claims the benefit of U.S. Provisional Application Ser. No. 60/424,696 filed Nov. 8, 2002 and U.S. Provisional Application Ser. No. 60/467,572 filed May 5, 2003, and which is a Continuation-In-Part of U.S. Non-Provisional application Ser. No. 10/235,846 filed Sep. 6, 2002, now U.S. Pat. No. 6,823,869, which in turn claims priority to U.S. Provisional Patent Application Ser. No. 60/317,486 filed Sep. 7, 2001 and U.S. Provisional Patent Application Ser. No. 60/342,854 filed Dec. 28, 2001. Each of the above applications is hereby incorporated herein by reference in its entirety.

US Referenced Citations (595)
Number Name Date Kind
4429 Cooke Mar 1846 A
35724 Wilcox Jun 1862 A
428592 Chapman May 1890 A
463351 Elliott Nov 1891 A
592002 Denham Oct 1897 A
715611 Schnenker et al. Dec 1902 A
716530 Giddens Dec 1902 A
781516 Guthrie Jan 1905 A
812706 Warbasse Feb 1906 A
1070986 Richter Aug 1913 A
1081745 Johnston Dec 1913 A
1176886 Ermold Mar 1916 A
1192186 Greene Jul 1916 A
1206045 Smith Nov 1916 A
1333075 Hill et al. Mar 1920 A
1381826 Hansen Jun 1921 A
1610793 Kaufman Dec 1926 A
1632449 McKesson Jun 1927 A
1653572 Jackson Dec 1927 A
1672165 Lewis Jun 1928 A
1733020 Jones Oct 1929 A
1926027 Biggs Sep 1933 A
2029129 Schwartz Jan 1936 A
2033448 James Mar 1936 A
2123353 Catt Jul 1938 A
2130555 Malcom Sep 1938 A
2133699 Heidbrink Oct 1938 A
2141222 Pioch Dec 1938 A
2245658 Erickson Jun 1941 A
2245969 Francisco et al. Jun 1941 A
2248477 Lombard Jul 1941 A
2254854 O'Connell Sep 1941 A
2287353 Minnick Jun 1942 A
2317608 Heidbrink Apr 1943 A
2359506 Battley et al. Oct 1944 A
2371965 Lehmberg Mar 1945 A
2376671 Fink Mar 1945 A
2376871 Fink May 1945 A
2382364 Yant Aug 1945 A
2415846 Randall Feb 1947 A
2428451 Emerson Oct 1947 A
2438058 Kincheloe Mar 1948 A
2454103 Swidersky Nov 1948 A
2473518 Garrard et al. Jun 1949 A
D156060 Wade Nov 1949 S
D161337 Hill Dec 1950 S
2540567 Bennett Feb 1951 A
2578621 Yant Dec 1951 A
2590006 Gordon Mar 1952 A
2617751 Bickett Nov 1952 A
2625155 Engelder Jan 1953 A
2638161 Jones May 1953 A
2664084 Hammermann Dec 1953 A
2693178 Gilroy Nov 1954 A
2706983 Matheson et al. Apr 1955 A
2747464 Bowerman May 1956 A
2820651 Phillips Jan 1958 A
2823671 Garelick Feb 1958 A
2832015 Ortega Apr 1958 A
2837090 Bloom et al. Jun 1958 A
2868196 Stampe Jan 1959 A
2875757 Galleher, Jr. Mar 1959 A
2893387 Gongoll et al. Jul 1959 A
2896889 Hershberger Jul 1959 A
2902033 Galleher, Jr. Sep 1959 A
2917045 Schildknecht et al. Dec 1959 A
2931356 Schwarz Apr 1960 A
2939458 Lundquist Jun 1960 A
3013556 Galleher Dec 1961 A
3042035 Coanda Jul 1962 A
3117574 Replogle Jan 1964 A
3141213 Nicholas Jul 1964 A
3182659 Blount et al. May 1965 A
3189027 Bartlett Jun 1965 A
3193624 Webb et al. Jul 1965 A
3238943 Holley Mar 1966 A
3288138 Sachs Nov 1966 A
3315672 Cunningham et al. Apr 1967 A
3315674 Bloom et al. Apr 1967 A
3330273 Bennett Jul 1967 A
3362420 Blackburn et al. Jan 1968 A
3363833 Laerdal Jan 1968 A
3456967 Hulverson et al. Jul 1969 A
3474783 Ulmann Oct 1969 A
3494072 Olson Feb 1970 A
3523534 Nolan Aug 1970 A
3535810 Baehrle Oct 1970 A
3555752 Bogaert Jan 1971 A
3556122 Laerdal Jan 1971 A
3580051 Blevins May 1971 A
3700000 Hesse et al. Oct 1972 A
3720235 Schrock Mar 1973 A
3725953 Johnson et al. Apr 1973 A
3726275 Jackson et al. Apr 1973 A
3750333 Vance Aug 1973 A
3752157 Malmin Aug 1973 A
3779164 Study Dec 1973 A
3796216 Schwarz Mar 1974 A
3799164 Rollins Mar 1974 A
D231803 Huddy Jun 1974 S
3824999 King Jul 1974 A
3830230 Chester Aug 1974 A
3978854 Mills, Jr. Sep 1976 A
4034426 Hardwick et al. Jul 1977 A
4049357 Hamisch, Jr. Sep 1977 A
4062357 Laerdal Dec 1977 A
4064875 Cramer et al. Dec 1977 A
4069516 Watkins, Jr. Jan 1978 A
4077404 Elam Mar 1978 A
D248497 Slosek Jul 1978 S
4111197 Warncke et al. Sep 1978 A
D250131 Lewis et al. Oct 1978 S
4120302 Ziegler Oct 1978 A
4121580 Fabish Oct 1978 A
4156426 Gold May 1979 A
4161946 Zuesse Jul 1979 A
4164942 Beard et al. Aug 1979 A
4167185 Lewis Sep 1979 A
4198772 Furutu Apr 1980 A
4201205 Bartholomew May 1980 A
4226234 Gunderson Oct 1980 A
4231363 Grimes Nov 1980 A
4233972 Hauff et al. Nov 1980 A
4245632 Houston Jan 1981 A
4248218 Fischer Feb 1981 A
4265239 Fischer, Jr. et al. May 1981 A
4266540 Panzik et al. May 1981 A
4274404 Molzan et al. Jun 1981 A
4275908 Elkins et al. Jun 1981 A
D262322 Mizerak Dec 1981 S
4304229 Curtin Dec 1981 A
4328797 Rollins et al. May 1982 A
4337767 Yahata Jul 1982 A
4347205 Stewart Aug 1982 A
4354488 Bartos Oct 1982 A
4369284 Chen Jan 1983 A
4380102 Hansson Apr 1983 A
4402316 Gadberry Sep 1983 A
4412537 Tiger Nov 1983 A
4414973 Matheson et al. Nov 1983 A
4417575 Hilton et al. Nov 1983 A
4446576 Hisataka May 1984 A
4454880 Muto et al. Jun 1984 A
4454881 Huber et al. Jun 1984 A
4458679 Ward Jul 1984 A
4467799 Steinberg Aug 1984 A
4494538 Ansite Jan 1985 A
4506665 Andrews et al. Mar 1985 A
4522639 Ansite et al. Jun 1985 A
4549334 Miller Oct 1985 A
4558710 Eichler Dec 1985 A
4572323 Randall Feb 1986 A
4580556 Kondur Apr 1986 A
4593688 Payton Jun 1986 A
4603692 Montesi Aug 1986 A
4606340 Ansite Aug 1986 A
D285496 Berman Sep 1986 S
4616647 McCreadie Oct 1986 A
4622964 Flynn Nov 1986 A
4633972 DeRocher Jan 1987 A
4649908 Ghaly Mar 1987 A
4655213 Rapoport et al. Apr 1987 A
4665570 Davis May 1987 A
4671271 Bishop et al. Jun 1987 A
4674134 Lundin Jun 1987 A
4676241 Webb et al. Jun 1987 A
4677975 Edgar et al. Jul 1987 A
4677977 Wilcox Jul 1987 A
4686977 Cosma Aug 1987 A
4707863 McNeal Nov 1987 A
4713844 Westgate Dec 1987 A
H397 Stark Jan 1988 H
D293613 Wingler Jan 1988 S
4732147 Fuller Mar 1988 A
4739755 White et al. Apr 1988 A
4770169 Schmoegner et al. Sep 1988 A
4772760 Graham Sep 1988 A
4774941 Cook Oct 1988 A
4782832 Trimble et al. Nov 1988 A
4783029 Geppert et al. Nov 1988 A
4799477 Lewis Jan 1989 A
4807617 Nesti Feb 1989 A
4809692 Nowacki et al. Mar 1989 A
4811730 Milano Mar 1989 A
4819629 Jonson Apr 1989 A
4821713 Bauman Apr 1989 A
4832017 Schnoor May 1989 A
4835820 Robbins, III Jun 1989 A
4841953 Dodrill Jun 1989 A
4848334 Bellm Jul 1989 A
4848366 Aita et al. Jul 1989 A
4850346 Michel et al. Jul 1989 A
4856118 Sapiejewski Aug 1989 A
D304384 Derobert Oct 1989 S
4870963 Carter Oct 1989 A
4875714 Lee Oct 1989 A
4875718 Marken Oct 1989 A
4898174 Fangrow, Jr. Feb 1990 A
4899614 Katamui Feb 1990 A
4905683 Cronjaeger Mar 1990 A
4905686 Adams Mar 1990 A
4907584 McGinnis Mar 1990 A
4910806 Baker et al. Mar 1990 A
4915105 Lee Apr 1990 A
4915106 Aulgur et al. Apr 1990 A
4919128 Kopala et al. Apr 1990 A
4938210 Shene Jul 1990 A
4938212 Snook et al. Jul 1990 A
4944210 Flock et al. Jul 1990 A
4944310 Sullivan Jul 1990 A
4946202 Perricone Aug 1990 A
D310431 Bellm Sep 1990 S
4960121 Nelson et al. Oct 1990 A
4971051 Toffolon Nov 1990 A
4974586 Wandel et al. Dec 1990 A
4974921 Miyata et al. Dec 1990 A
4986269 Hakkinen Jan 1991 A
4989271 Sapiejewski et al. Feb 1991 A
4989596 MacRis et al. Feb 1991 A
4989599 Carter Feb 1991 A
4997217 Kunze Mar 1991 A
5003631 Richardson Apr 1991 A
5003633 Itoh Apr 1991 A
5005568 Loescher et al. Apr 1991 A
5005571 Dietz Apr 1991 A
5018519 Brown May 1991 A
5027809 Robinson Jul 1991 A
5038776 Harrison et al. Aug 1991 A
5042473 Lewis Aug 1991 A
5042478 Kopala et al. Aug 1991 A
5046200 Feder Sep 1991 A
5054482 Bales Oct 1991 A
5062421 Burns et al. Nov 1991 A
5063922 Hakkinen Nov 1991 A
5069205 Urso Dec 1991 A
5074297 Venegas Dec 1991 A
D323908 Hollister et al. Feb 1992 S
5093940 Nishiyama Mar 1992 A
5109839 Blasdell et al. May 1992 A
5109840 Daleiden May 1992 A
5121745 Israel Jun 1992 A
5133347 Huennebeck Jul 1992 A
5136760 Sano et al. Aug 1992 A
5137520 Maxson et al. Aug 1992 A
5138722 Urella et al. Aug 1992 A
5140980 Haughey et al. Aug 1992 A
5140982 Bauman Aug 1992 A
5149980 Haughey et al. Aug 1992 A
5146914 Sturrock Sep 1992 A
5156146 Corces et al. Oct 1992 A
5159938 Laughlin Nov 1992 A
5178138 Walstrom et al. Jan 1993 A
5181506 Tardiff, Jr. et al. Jan 1993 A
D333015 Farmer Feb 1993 S
D334633 Rudolph Apr 1993 S
5199424 Sullivan et al. Apr 1993 A
D335322 Jones May 1993 S
5215336 Worthing Jun 1993 A
5220699 Farris Jun 1993 A
5231983 Matson et al. Aug 1993 A
5233978 Callaway Aug 1993 A
5243971 Sullivan et al. Sep 1993 A
5245995 Sullivan et al. Sep 1993 A
5253641 Choate Oct 1993 A
5265595 Rudolph Nov 1993 A
5269296 Landis Dec 1993 A
5279289 Kirk Jan 1994 A
5280784 Kohler Jan 1994 A
5291880 Almovist et al. Mar 1994 A
5301689 Wennerholm Apr 1994 A
5311862 Blasdell et al. May 1994 A
5322057 Raabe et al. Jun 1994 A
5322059 Walther Jun 1994 A
5331691 Runckel Jul 1994 A
5334646 Chen Aug 1994 A
5343878 Scarberry et al. Sep 1994 A
5349949 Schegerin Sep 1994 A
5357945 Messina Oct 1994 A
5357951 Ratner Oct 1994 A
5372130 Stern et al. Dec 1994 A
5388273 Sydor et al. Feb 1995 A
5388571 Roberts et al. Feb 1995 A
5390373 Flory Feb 1995 A
5391248 Brain Feb 1995 A
5398673 Lambert Mar 1995 A
5400781 Davenport Mar 1995 A
5404871 Goodman et al. Apr 1995 A
5411021 Gdulla et al. May 1995 A
5419317 Blasdell et al. May 1995 A
5419318 Tayebi May 1995 A
5429126 Bracken Jul 1995 A
5429683 Le Mitouard Jul 1995 A
5431158 Tirotta Jul 1995 A
5438981 Starr et al. Aug 1995 A
5441046 Starr et al. Aug 1995 A
D362061 McGinnis et al. Sep 1995 S
5477852 Landis et al. Dec 1995 A
5479920 Piper et al. Jan 1996 A
5481763 Brostrom et al. Jan 1996 A
5485837 Solesbee et al. Jan 1996 A
5488948 Dubruille et al. Feb 1996 A
5492116 Scarberry Feb 1996 A
5501214 Sabo Mar 1996 A
5509404 Lloyd et al. Apr 1996 A
5511541 Dearstine Apr 1996 A
5517986 Starr et al. May 1996 A
5522382 Sullivan et al. Jun 1996 A
5538000 Rudolph Jul 1996 A
5538001 Bridges Jul 1996 A
5540223 Starr et al. Jul 1996 A
5542128 Lomas Aug 1996 A
5546936 Virag et al. Aug 1996 A
5558090 James Sep 1996 A
RE35339 Rapoport Oct 1996 E
5560354 Berthon-Jones et al. Oct 1996 A
5570682 Johnson Nov 1996 A
5570684 Behr Nov 1996 A
5570689 Starr et al. Nov 1996 A
5571217 Del Bon et al. Nov 1996 A
D377089 Starr et al. Dec 1996 S
5592938 Scarberry et al. Jan 1997 A
5608647 Rubsamen et al. Mar 1997 A
5617849 Springett et al. Apr 1997 A
5642730 Baran Jul 1997 A
5645049 Foley et al. Jul 1997 A
5645054 Cotner et al. Jul 1997 A
5647355 Starr et al. Jul 1997 A
5647357 Barnett et al. Jul 1997 A
5649532 Griffiths Jul 1997 A
5649533 Oren Jul 1997 A
5655520 Howe et al. Aug 1997 A
5655527 Scarberry et al. Aug 1997 A
5657493 Ferrero et al. Aug 1997 A
5657752 Landis et al. Aug 1997 A
5660174 Jacobelli Aug 1997 A
5662101 Ogden et al. Sep 1997 A
5666946 Langenback Sep 1997 A
5676133 Hickle et al. Oct 1997 A
D385960 Rudolph Nov 1997 S
5685296 Zdrojkowski et al. Nov 1997 A
5687715 Landis et al. Nov 1997 A
5704345 Berthon-Jones et al. Jan 1998 A
5709204 Lester Jan 1998 A
5715814 Ebers Feb 1998 A
5724964 Brunson et al. Mar 1998 A
5724965 Handke et al. Mar 1998 A
5740795 Brydon Apr 1998 A
5743414 Baudino Apr 1998 A
5746201 Kidd May 1998 A
5794617 Brunell et al. Aug 1998 A
D398987 Cotner et al. Sep 1998 S
5813423 Kirchgeorg Sep 1998 A
5832918 Pantino Nov 1998 A
5839436 Fangrow et al. Nov 1998 A
D402755 Kwok Dec 1998 S
5860677 Martins et al. Jan 1999 A
RE36165 Behr Mar 1999 E
5884624 Barnett et al. Mar 1999 A
5896857 Hely et al. Apr 1999 A
5906199 Budzinski May 1999 A
5909732 Diesel et al. Jun 1999 A
5921239 McCall et al. Jul 1999 A
5935136 Hulse et al. Aug 1999 A
5937851 Serowski et al. Aug 1999 A
5966745 Schwartz et al. Oct 1999 A
5975079 Hellings et al. Nov 1999 A
5979025 Horng Nov 1999 A
6006748 Hollis Dec 1999 A
D419658 Matchett et al. Jan 2000 S
6016804 Gleason et al. Jan 2000 A
D421298 Kenyon et al. Feb 2000 S
6019101 Cotner et al. Feb 2000 A
6029660 Calluaud et al. Feb 2000 A
6029665 Berthon-Jones Feb 2000 A
6029668 Freed Feb 2000 A
6039044 Sullivan Mar 2000 A
D423096 Kwok Apr 2000 S
6044844 Kwok et al. Apr 2000 A
6062148 Hodge et al. May 2000 A
6062221 Brostrom et al. May 2000 A
6082360 Rudolph et al. Jul 2000 A
6091973 Colla et al. Jul 2000 A
D428987 Kwok Aug 2000 S
6098205 Schwartz et al. Aug 2000 A
6112746 Kwok et al. Sep 2000 A
6119693 Kwok et al. Sep 2000 A
6123071 Berthon-Jones et al. Sep 2000 A
6152137 Schwartz et al. Nov 2000 A
6189532 Hely et al. Feb 2001 B1
6192886 Rudolph Feb 2001 B1
D439326 Hecker et al. Mar 2001 S
6196223 Belfer et al. Mar 2001 B1
D443355 Gunaratnam et al. Jun 2001 S
6240605 Stevens et al. Jun 2001 B1
6250375 Lee et al. Jun 2001 B1
6256846 Lee Jul 2001 B1
6257237 Suzuki Jul 2001 B1
6272722 Lai Aug 2001 B1
6321421 Lim Nov 2001 B1
6341606 Bordewick et al. Jan 2002 B1
6347631 Hansen et al. Feb 2002 B1
6357441 Kwok et al. Mar 2002 B1
6360406 Patterson et al. Mar 2002 B1
6374826 Gunaratnam et al. Apr 2002 B1
6381813 Lai May 2002 B1
6388640 Chigira et al. May 2002 B1
6397847 Scarberry et al. Jun 2002 B1
6408853 Chang Jun 2002 B1
6412487 Gunaratnam et al. Jul 2002 B1
6418928 Bordewick et al. Jul 2002 B1
6422238 Lithgow Jul 2002 B1
6427694 Hecker et al. Aug 2002 B1
6431172 Bordewick Aug 2002 B1
6435181 Jones, Jr. et al. Aug 2002 B1
6439230 Gunaratnam et al. Aug 2002 B1
6449817 Hsu Sep 2002 B1
6463931 Kwok et al. Oct 2002 B1
6467483 Kopacko et al. Oct 2002 B1
6491034 Gunaratnam et al. Dec 2002 B1
6494207 Kwok Dec 2002 B1
D468823 Smart Jan 2003 S
6513206 Banitt et al. Feb 2003 B1
6513526 Kwok et al. Feb 2003 B2
6520182 Gunaratnam Feb 2003 B1
6530373 Patron et al. Mar 2003 B1
6532961 Kwok et al. Mar 2003 B1
6536435 Fecteau et al. Mar 2003 B1
6557556 Kwok et al. May 2003 B2
6561190 Kwok May 2003 B1
6561191 Kwok May 2003 B1
6581601 Ziaee Jun 2003 B2
6595214 Hecker Jul 2003 B1
6615830 Serowski et al. Sep 2003 B1
6615832 Chen Sep 2003 B1
6615834 Gradon et al. Sep 2003 B2
6626177 Ziaee Sep 2003 B1
6631718 Lovell Oct 2003 B1
D484237 Lang et al. Dec 2003 S
6675446 Buettell Jan 2004 B2
6679260 Her Jan 2004 B2
6679261 Lithgow Jan 2004 B2
6691707 Gunaratnam et al. Feb 2004 B1
6691708 Kwok et al. Feb 2004 B2
6701535 Dobbie et al. Mar 2004 B2
6701927 Kwok et al. Mar 2004 B2
6705647 Palmer Mar 2004 B1
6712072 Lang Mar 2004 B1
6729333 Barnett et al. May 2004 B2
D492992 Guney et al. Jul 2004 S
D493521 Guney Jul 2004 S
6789543 Cannon Sep 2004 B2
6796308 Gunaratnam et al. Sep 2004 B2
6805117 Ho et al. Oct 2004 B1
6823869 Raje et al. Nov 2004 B2
6832610 Gradon et al. Dec 2004 B2
6832615 Hensel Dec 2004 B2
D502260 Lang et al. Feb 2005 S
6851425 Jaffre Feb 2005 B2
6851428 Dennis Feb 2005 B2
6860269 Kwok et al. Mar 2005 B2
6907882 Ging Jun 2005 B2
6918390 Lithgow et al. Jul 2005 B2
6926004 Schumacher Aug 2005 B2
6973929 Gunaratnam Dec 2005 B2
6986352 Frater et al. Jan 2006 B2
D515698 Lang et al. Feb 2006 S
6997188 Kwok et al. Feb 2006 B2
7000614 Lang et al. Feb 2006 B2
7005414 Barnikol et al. Feb 2006 B2
7007696 Palkon et al. Mar 2006 B2
7011090 Drew et al. Mar 2006 B2
7021311 Gunaratnam et al. Apr 2006 B2
7036508 Kwok May 2006 B2
7047965 Ball May 2006 B1
7047972 Ging et al. May 2006 B2
7059326 Heidmann et al. Jun 2006 B2
7066379 Eaton et al. Jun 2006 B2
7069932 Eaton et al. Jul 2006 B2
7089939 Walker et al. Aug 2006 B2
7095938 Tolstikhin Aug 2006 B2
7100610 Biener Sep 2006 B2
7107989 Frater et al. Sep 2006 B2
7112179 Bonutti et al. Sep 2006 B2
7178525 Matula, Jr. et al. Feb 2007 B2
7185652 Gunaratnam et al. Mar 2007 B2
7207334 Smart Apr 2007 B2
7207335 Kwok et al. Apr 2007 B2
7216647 Lang et al. May 2007 B2
7219670 Jones et al. May 2007 B2
7234466 Kwok et al. Jun 2007 B2
7234773 Raftery et al. Jun 2007 B2
7290546 Ho et al. Nov 2007 B2
7296574 Sprinkle et al. Nov 2007 B2
7318437 Gunaratnam et al. Jan 2008 B2
7318439 Raje et al. Jan 2008 B2
7320323 Lang et al. Jan 2008 B2
7353826 Sleeper et al. Apr 2008 B2
7353827 Geist Apr 2008 B2
7406965 Kwok et al. Aug 2008 B2
7461656 Gunaratnam et al. Dec 2008 B2
7472704 Gunaratnam Jan 2009 B2
7487772 Ging et al. Feb 2009 B2
7487777 Gunaratnam et al. Feb 2009 B2
7503327 Gunaratnam Mar 2009 B2
7509958 Amarasinghe et al. Mar 2009 B2
7523754 Lithgow Apr 2009 B2
7610916 Kwok et al. Nov 2009 B2
7614400 Lithgow et al. Nov 2009 B2
7621274 Sprinkle et al. Nov 2009 B2
7654263 Lang et al. Feb 2010 B2
7665464 Kopacko et al. Feb 2010 B2
7743767 Ging et al. Jun 2010 B2
7762259 Gunaratnam Jul 2010 B2
7775209 Biener et al. Aug 2010 B2
7779832 Ho Aug 2010 B1
7814911 Bordewick et al. Oct 2010 B2
7819119 Ho Oct 2010 B2
7827987 Woodard et al. Nov 2010 B2
7827990 Melidis et al. Nov 2010 B1
7841345 Guney et al. Nov 2010 B2
7856698 Lang et al. Dec 2010 B2
7856980 Lang et al. Dec 2010 B2
7856982 Matula, Jr. et al. Dec 2010 B2
7861715 Jones et al. Jan 2011 B2
7874293 Gunaratnam et al. Jan 2011 B2
7878199 Ging et al. Feb 2011 B2
7882837 Kwok et al. Feb 2011 B2
7900635 Gunaratnam et al. Mar 2011 B2
7942148 Davidson et al. May 2011 B2
7942149 Gunaratnam May 2011 B2
7967013 Ging et al. Jun 2011 B2
7967014 Heidmann et al. Jun 2011 B2
7971590 Kwok et al. Jul 2011 B2
7992559 Lang et al. Aug 2011 B2
8042538 Ging et al. Oct 2011 B2
8042546 Gunaratnam et al. Oct 2011 B2
8051850 Kwok et al. Nov 2011 B2
8091553 Bordewick et al. Jan 2012 B2
8113203 Lithgow et al. Feb 2012 B2
8136524 Ging et al. Mar 2012 B2
8186348 Kwok et al. May 2012 B2
8186352 Gunaratnam et al. May 2012 B2
8210180 Gunaratnam Jul 2012 B2
8220459 Davidson et al. Jul 2012 B2
8230855 Raje et al. Jul 2012 B2
9072853 Lang Jul 2015 B2
20020053347 Ziaee May 2002 A1
20030062048 Gradon Apr 2003 A1
20030075180 Raje et al. Apr 2003 A1
20030084904 Gunaratnam May 2003 A1
20030089373 Gradon et al. May 2003 A1
20030196656 Moore et al. Oct 2003 A1
20040211428 Jones, Jr. et al. Feb 2004 A1
20040094157 Dantanarayana et al. May 2004 A1
20040112385 Drew et al. Jun 2004 A1
20040112387 Lang et al. Jun 2004 A1
20040118406 Lithgow et al. Jun 2004 A1
20040177850 Gradon et al. Sep 2004 A1
20040216747 Jones et al. Nov 2004 A1
20040226566 Gunaratnam et al. Nov 2004 A1
20050011522 Ho et al. Jan 2005 A1
20050098183 Nash et al. May 2005 A1
20050199239 Lang et al. Sep 2005 A1
20050211252 Lang et al. Sep 2005 A1
20060081250 Bordewick et al. Apr 2006 A1
20060118117 Berthon-Jones et al. Jun 2006 A1
20060169286 Eifler et al. Aug 2006 A1
20060219246 Dennis Oct 2006 A1
20060254593 Chang Nov 2006 A1
20060283461 Lubke et al. Dec 2006 A1
20070044804 Matula et al. Mar 2007 A1
20070137653 Wood Jun 2007 A1
20070144525 Davidson et al. Jun 2007 A1
20080178885 Raje et al. Jul 2008 A1
20080257354 Davidson et al. Oct 2008 A1
20080264421 Kwok et al. Oct 2008 A1
20080314389 Thomas et al. Dec 2008 A1
20090044808 Guney Feb 2009 A1
20090050156 Ng et al. Feb 2009 A1
20090126739 Ng et al. May 2009 A1
20090139526 Melidis et al. Jun 2009 A1
20090173343 Omura et al. Jul 2009 A1
20090223521 Howard et al. Sep 2009 A1
20100000543 Berthon-Jones et al. Jan 2010 A1
20100071700 Hitchcock et al. Mar 2010 A2
20100089401 Lang et al. Apr 2010 A1
20100282265 Melidis et al. Nov 2010 A1
20100300447 Biener et al. Dec 2010 A1
20110030692 Jones et al. Feb 2011 A1
20110056498 Lang et al. Mar 2011 A1
20110094516 Chang Apr 2011 A1
20110174311 Gunaratnam Jul 2011 A1
20110226254 Lang et al. Sep 2011 A1
20110259337 Hitchcock et al. Oct 2011 A1
20120174928 Raje et al. Jul 2012 A1
Foreign Referenced Citations (226)
Number Date Country
9177110 Nov 1991 AU
9464816 Dec 1994 AU
9516178 Jul 1995 AU
9459430 Oct 1995 AU
9532914 Feb 1996 AU
9741018 Apr 1998 AU
9889312 Jan 1999 AU
200071882 Jun 2001 AU
618807 Apr 1961 CA
623129 Jul 1961 CA
1039144 Sep 1978 CA
88122 Nov 1999 CA
2045649 Oct 1989 CN
2417885 Feb 2001 CN
2419188 Feb 2001 CN
1326371 Dec 2001 CN
2464353 Dec 2001 CN
1408453 Apr 2003 CN
2558395 Jul 2003 CN
1735438 Feb 2006 CN
102038996 May 2011 CN
102038996 Mar 2013 CN
284 800 Nov 1913 DE
459 104 Apr 1928 DE
701 690 Jan 1941 DE
923 500 Feb 1955 DE
30 15 279 Oct 1981 DE
159396 Mar 1983 DE
33 45 067 Jun 1984 DE
37 07 952 Mar 1987 DE
35 37 507 Apr 1987 DE
35 39 073 May 1987 DE
40 04 157 Apr 1991 DE
42 12 259 Jan 1993 DE
42 33 448 Apr 1993 DE
43 43 205 Jun 1995 DE
195 48 380 Jul 1996 DE
196 03 949 Aug 1997 DE
297 15 718 Oct 1997 DE
197 35 359 Jan 1998 DE
297 21 766 Mar 1998 DE
29723101 Jul 1998 DE
298 10 846 Aug 1998 DE
4 99 00 296.5 Jan 1999 DE
198 17 332 Jan 1999 DE
9916 Aug 1999 DE
198 07 961 Aug 1999 DE
198 08 105 Sep 1999 DE
299 23 126 Mar 2000 DE
200 05 346 May 2000 DE
299 23 141 May 2000 DE
200 17 940 Feb 2001 DE
199 54 517 Jun 2001 DE
199 62 515 Jul 2001 DE
100 45 183 May 2002 DE
100 51 891 May 2002 DE
10045183 May 2002 DE
10045183 May 2002 DE
198 40 760 Mar 2003 DE
103 31 837 Jan 2005 DE
103 38 169 Mar 2005 DE
203 21 882 Feb 2012 DE
0 054 154 Jun 1982 EP
0 252 052 Jan 1988 EP
0 264 772 Apr 1988 EP
0 334 555 Sep 1989 EP
0 386 605 Sep 1990 EP
0 427 474 May 1991 EP
0 462 701 Dec 1991 EP
0 303 090 Apr 1992 EP
0 549 299 Jun 1993 EP
0 602 424 Jun 1994 EP
0 608 684 Aug 1994 EP
0 697 225 Jul 1995 EP
0 178 925 Apr 1996 EP
0 747 078 Dec 1996 EP
0 821 978 Feb 1998 EP
0 853 962 Jul 1998 EP
0 958 841 Nov 1999 EP
1 027 905 Aug 2000 EP
1 057 494 Dec 2000 EP
1 099 452 May 2001 EP
1 163 923 Dec 2001 EP
1 205 205 May 2002 EP
1 266 674 Dec 2002 EP
1 334 742 Aug 2003 EP
1 356 843 Oct 2003 EP
1 555 039 Jul 2005 EP
1 545 673 Dec 2013 EP
145309 Jan 2000 ES
780018 Apr 1935 FR
2 574 657 Jun 1986 FR
2 658 725 Aug 1991 FR
2 691 906 Dec 1993 FR
2 720 280 Dec 1995 FR
2 749 176 Dec 1997 FR
649 689 Jan 1951 GB
823 887 Nov 1959 GB
1 395 391 May 1975 GB
1 467 828 Mar 1977 GB
2 145 335 Mar 1985 GB
2 147 506 May 1985 GB
2 164 569 Mar 1986 GB
2 186 801 Aug 1987 GB
2 267 648 Dec 1993 GB
2080119 Dec 1998 GB
2080120 Dec 1998 GB
2080121 Dec 1998 GB
S39-13991 Jul 1964 JP
S48-55696 Oct 1971 JP
S52-76695 Jun 1977 JP
S59-55535 Apr 1984 JP
S61-67747 May 1986 JP
H06-184803 Jul 1994 JP
H07-21058 Apr 1995 JP
H07-308381 Nov 1995 JP
H09-501084 Feb 1997 JP
H09-216240 Aug 1997 JP
9-292588 Nov 1997 JP
H11-000397 Jan 1999 JP
1105649 Feb 1999 JP
H11-104256 Apr 1999 JP
H11-508159 Jul 1999 JP
H11-381522 Nov 1999 JP
2000-135103 May 2000 JP
2000-279520 Oct 2000 JP
2000-325481 Nov 2000 JP
2000-515784 Nov 2000 JP
2002-028240 Jan 2002 JP
2002-543943 Dec 2002 JP
2003-502119 Feb 2003 JP
2003-175106 Jun 2003 JP
2003-190308 Jul 2003 JP
2004-329941 Nov 2004 JP
2005-506156 Mar 2005 JP
3686609 Aug 2005 JP
65 481 Aug 2000 SE
WO 8001044 May 1980 WO
WO 8001645 Aug 1980 WO
WO 8203548 Oct 1982 WO
WO 8606969 Dec 1986 WO
WO 8701950 Apr 1987 WO
WO 9103277 Mar 1991 WO
WO 9215353 Sep 1992 WO
WO 9220395 Nov 1992 WO
WO 9301854 Feb 1993 WO
WO 9324169 Dec 1993 WO
WO 9402190 Feb 1994 WO
WO 9416759 Aug 1994 WO
WO 9420051 Sep 1994 WO
WO 9502428 Jan 1995 WO
WO 9504566 Feb 1995 WO
WO 9617643 Jun 1996 WO
WO 9625983 Aug 1996 WO
WO 9639206 Dec 1996 WO
WO 9700092 Jan 1997 WO
WO 9707847 Mar 1997 WO
WO 9709090 Mar 1997 WO
WO 9741911 Nov 1997 WO
WO 9804310 Feb 1998 WO
WO 9811930 Mar 1998 WO
WO 9812965 Apr 1998 WO
WO 9818514 May 1998 WO
WO 9824499 Jun 1998 WO
WO 9826829 Jun 1998 WO
WO 9826830 Jun 1998 WO
WO 9830123 Jul 1998 WO
WO 9834665 Aug 1998 WO
WO 9848878 Nov 1998 WO
WO 9921618 May 1999 WO
WO 9930760 Jun 1999 WO
WO 9943375 Sep 1999 WO
WO 9958181 Nov 1999 WO
WO 9961088 Dec 1999 WO
WO 9965554 Dec 1999 WO
WO 0021600 Apr 2000 WO
WO 0038772 Jul 2000 WO
WO 0050121 Aug 2000 WO
WO 0057942 Oct 2000 WO
WO 0069521 Nov 2000 WO
0078384 Dec 2000 WO
WO 0078381 Dec 2000 WO
WO 0078384 Dec 2000 WO
WO 0162326 Aug 2001 WO
WO 0197892 Dec 2001 WO
WO 0197893 Dec 2001 WO
WO 0207806 Jan 2002 WO
WO 0211804 Feb 2002 WO
WO 0232491 Apr 2002 WO
WO 0245784 Jun 2002 WO
WO 0247749 Jun 2002 WO
WO 03005931 Jan 2003 WO
WO 03035156 May 2003 WO
WO 03059427 Jul 2003 WO
WO 03082406 Oct 2003 WO
WO 03105921 Dec 2003 WO
WO 2004012803 Feb 2004 WO
WO 2004021960 Mar 2004 WO
WO 2004022144 Mar 2004 WO
WO 2004022145 Mar 2004 WO
WO 2004022146 Mar 2004 WO
WO 2004022147 Mar 2004 WO
WO 2004041342 May 2004 WO
WO 2004073778 Sep 2004 WO
WO 2004078228 Sep 2004 WO
WO 2004096332 Nov 2004 WO
WO 2005002656 Jan 2005 WO
WO 2005018523 Mar 2005 WO
WO 2005028010 Mar 2005 WO
WO 2005063326 Jul 2005 WO
WO 2005063328 Jul 2005 WO
WO 2005068002 Jul 2005 WO
WO 2005094928 Oct 2005 WO
WO 2005123166 Dec 2005 WO
WO 2006000046 Jan 2006 WO
WO 2006074513 Jul 2006 WO
WO 2006074515 Jul 2006 WO
WO 2006074516 Jul 2006 WO
WO 2006138416 Dec 2006 WO
WO 2007045008 Apr 2007 WO
WO 2007048174 May 2007 WO
WO 2009026627 Mar 2009 WO
WO 2009052560 Apr 2009 WO
WO 2009062265 May 2009 WO
WO 2009108995 Sep 2009 WO
WO 2010066004 Jun 2010 WO
Non-Patent Literature Citations (136)
Entry
Office Action dated Jun. 28, 2017 issued in Chinese Application No. 201610091989.0 with English translation (11 pages).
Office Action dated Nov. 27, 2014 in Chinese Application No. 201310032494.7.
Communication of a Notice of Opposition dated Feb. 17, 2014 in European Patent No. 1 545 673 including a Notice of Opposition dated Feb. 10, 2014.
Brief Communication dated Apr. 4, 2014 in European Patent No. 1 545 673 including a Brief dated Mar. 25, 2014.
Cancellation Request dated Feb. 18, 2014 filed in German Utility Model DE 203 21 882.
Brief dated Mar. 5, 2014 Requesting a Declaratory Decision filed in German Utility Model DE 203 21 882.
Kreisler's Petition dated Mar. 25, 2014 filed in Cancellation Proceedings of German Utility Model DE 203 21 882.
Notice of Opposition dated Feb. 17, 2014 in European Application No. 03793491.6.
Notification of Acceptance of the Request for Invalidation dated Oct. 8, 2013 in Chinese Patent No. 201010620187.7.
Request for the Invalidation of a Patent Right dated Sep. 13, 2013 in Chinese Patent No. 201010620187.7.
Extended European Search Report dated Nov. 7, 2013 in European Application No. 13152059.5 (6 pages).
Extended European Search Report dated Nov. 7, 2013 in European Application No. 13152062.9 (6 pages).
Patent Examination Report No. 1 dated Apr. 23, 2013 in Australian Application No. 2012233050.
4 additional photographs of “Weinmann Mask,” before applicants' filing date.
9 photographs of Weinmann mask, WM 23122, 1991.
Australian Appln. No. 2005253641—Examiner's First Report, dated Apr. 20, 2010.
Australian Appln. No. 2005253641—Examiner's Report, dated Aug. 18, 2011.
Australian Appln. No. 2005256167—Examiner's First Report, dated Apr. 29, 2010.
Australian Appln. No. 2006206044—Examiner's First Report, dated Dec. 1, 2010.
Australian Appln. No. 2010251884—Examination Report, dated Jul. 27, 2012.
Chinese Appln. No. 200410038106.7—Office Action (w/English translation), dated Jun. 15, 2007.
Chinese Appln. No. 200480011911.9—Office Action (w/English translation), dated Jun. 24, 2010.
Chinese Appln. No. 200480040220.1—Office Action (English translation only), before applicants' filing date.
Chinese Appln. No. 200580020203.6—Office Action (w/English translation), dated Jun. 1, 2010.
Chinese Appln. No. 200580020203.6—Office Action (w/English translation), dated Jul. 6, 2011.
Chinese Appln. No. 200580020203.6—Office Action (w/English translation), dated Dec. 23, 2011.
Chinese Appln. No. 200580020203.6—Office Action (w/English translation), dated Apr. 18, 2012.
Chinese Appln. No. 200580021230.5—Office Action (w/English translation), dated Jul. 3, 2009.
Chinese Appln. No. 201010508994.X—Office Action (w/ English translation), dated Jun. 15, 2011.
Chinese Appln. No. 201010517066.X—Office Action (w/English translation), dated Nov. 10, 2011.
DeVilbiss Serenity Mask—Instruction Guide 9352 Series, before applicants' filing date.
DeVilbiss Serenity Mask—Mask Accessories, before applicants' filing date.
European Appln. No. EP 02445110.6—Search Report, dated Nov. 6, 2003.
European Appln. No. EP 02714190.2—Search Report, dated Jul. 11, 2006.
European Appln. No. EP 04730413.4—Supplementary Search Report, dated Sep. 29, 2009.
European Appln. No. EP 04802114.1—Supplementary Search Report, dated May 7, 2009.
European Appln. No. EP 05749447.8—Supplementary Search Report, dated Dec. 2, 2009.
European Appln. No. EP 05753870.4—Office Action, dated Jul. 19, 2010.
European Appln. No. EP 05753870.4—Supplementary Search Report, dated Dec. 15, 2009.
European Appln. No. EP 06704773.8—Supplementary Search Report, dated Mar. 29, 2011.
European Appln. No. EP 08161868.8—Search Report, dated Sep. 23, 2008.
European Appln. No. EP 09003544.5—Search Report, dated Jun. 2, 2009.
European Appln. No. EP 10166255.9—Search Report, dated Oct. 25, 2010.
European Appln. No. EP 10181516.5—Search Report, dated Jun. 13, 2012.
European Appln. No. EP 10182015.7—Search Report, dated Jun. 15, 2012.
European Appln. No. EP 10185071.7—Search Report, dated Dec. 6, 2010.
European Appln. No. EP 10185072.5—Search Report, dated Dec. 6, 2010.
European Appln. No. EP 10185073.3—Search Report, dated Dec. 6, 2010.
European Appln. No. EP 12165749.8—Extended Search Report, dated Oct. 18, 2012.
European Appln. No. EP 12165751.4—Extended Search Report, dated Oct. 16, 2012.
German Patent No. 101 51 984—Decision from Opposition hearing by Weinmann (w/English translation), dated Dec. 6, 2007.
Japanese Appln. No. S52-164619—English translation of Figure 1, Dec. 1977.
Japanese Appln. No. 2000-029094—Office Action (English translation only), before applicants' filing date.
Japanese Appln. No. 2001-504444—Office Action (w/English translation only), dated Oct. 26, 2004.
Japanese Appln. No. 2003-537718—Office Action (w/English translation only), dated Oct. 7, 2008.
Japanese Appln. No. 2003-559587—Office Action (w/English translation only), dated Mar. 17, 2009.
Japanese Appln. No. 2004-137431—Office Action (w/English translation), dated Dec. 8, 2009.
Japanese Appln. No. 2005-004072—Office Action (w/English translation), dated Sep. 24, 2009.
Japanese Appln. No. 2006-504029—Office Action (w/English translation), dated Nov. 10, 2009.
Japanese Appln. No. 2006-545843—Office Action (w/English translation), dated Jun. 7, 2011.
Japanese Appln. No. 2007-515732—Office Action (w/English translation), dated Aug. 24, 2010.
Japanese Appln. No. 2007-515732—Office Action (w/English translation), dated Aug. 16, 2011.
Japanese Appln. No. 2007-515732—Office Action (w/English translation), dated Jun. 12, 2012.
Japanese Appln. No. 2007-516895—Office Action (w/English translation), dated Aug. 24, 2010.
Japanese Appln. No. 2007-550640—Office Action (w/English translation), dated Mar. 29, 2011.
Japanese Appln. No. 2007-550640—Office Action (w/English translation), dated Mar. 27, 2012.
Japanese Appln. No. 2008-318985—Office Action (w/English translation), dated Jun. 14, 2011.
Japanese Appln. No. 2010-268127—Office Action (w/English translation), dated Jul. 10, 2012.
Japanese Appin. No. 2011-038110—Office Action (w/English translation), dated Aug. 14, 2012.
Japanese Appln. No. 2011-106504—Office Action (w/English translation), dated Nov. 13, 2012.
Mask 1 Photographs, Respironics Inc., Reusable Full Mask (small) Part #452033 Lot #951108, before applicants' filing date.
Mask 2 Photographs, Puritan—Bennett, Adam Curcuit, Shell Part #231700, Swivel Part #616329-00, Pillows (medium) Part #616324, before applicants' filing date.
Mask 3 Photographs, DeVilbiss Healthcare Inc., Devilbiss Seal-Ring and CPAP Mask Kit (medium), Part #73510-669, before applicants' filing date.
Mask 4 Photographs, Respironics Inc., Monarch Mini Mask with Pressure Port, Part #572004, Monarch Headgear, Part #572011, before applicants' filing date.
Mask 5 Photographs, Healthdyne Technologies, Nasal CPAP Mask (medium narrow), Part #702510, before applicants' filing date.
Mask 6 Photographs, Healthdyne Technologies, Soft Series Nasal CPAP Mask, Part #702020, before applicants' filing date.
Mask 7 Photographs, DeVilbiss Healthcare Inc., Small Mask and Seal Rings, Part #73510-668, before applicants' filing date.
Mask 8 Photographs, Respironics Inc., Reusable Contour Mask (medium), Part #302180, before applicants' filing date.
Mask 11 Photographs, Weinmann: Hamburg, Nasalmaskensystem mit Schalldämpfer (medium), Part #WN 23105, before applicants' filing date.
Mask 12 Photographs, Life Care, before applicants' filing date.
Mask 13 Photographs, Healthdyne Technologies, before applicants' filing date.
Mark 14 Photographs, King System, before applicants' filing date.
Mask 15 Photographs, Respironics Inc., Pediatric Mask, before applicants' filing date.
Mask 16 Photographs, Hans Rudolph Inc., Hans Rudolph Silicone Rubber Face Mask/8900, before applicants' filing date.
New Zealand Appln. No. 556041—Examination Report, dated May 6, 2011.
New Zealand Appln. No. 564877—Examination Report, dated Dec. 2, 2009.
New Zealand Appln. No. 567375—Examination Report, dated Nov. 17, 2009.
New Zealand Appln. No. 587820—Examination Report, dated Sep. 13, 2010.
New Zealand Appln. No. 592219—Examination Report, dated Apr. 11, 2011.
New Zealand Appln. No. 597689—Examination Report, dated Jan. 25, 2012.
PCT/AU2003/001160—International Search Report, dated Oct. 8, 2003.
PCT/AU2004/000563—International Search Report, dated Jul. 23, 2004.
PCT/AU2004/001760—International Preliminary Report on Patentability, dated Jul. 3, 2006.
PCT/AU2004/001813—International Search Report, dated Mar. 7, 2005.
PCT/AU2004/001813—International Preliminary Report on Patentability, dated Jul. 3, 2006.
PCT/AU2005/000850—International Search Report, dated Aug. 12, 2005.
PCT/AU2005/000850—International Preliminary Report on Patentability, dated Dec. 20, 2006.
PCT/AU2005/000931—International Search Report, dated Jul. 19, 2005.
PCT/AU2005/000931—International Preliminary Report on Patentability, dated Dec. 28, 2006.
PCT/AU2006/000037—International Search Report, dated Mar. 17, 2006.
PCT/AU2006/001570—International Search Report, dated Jan. 8, 2007.
PCT/AU2009/000241—International Search Report, dated May 18, 2009.
PCT/AU2009/001102—International Search Report, dated Dec. 11, 2009.
PCT/AU2010/000657—International Search Report, dated Sep. 9, 2010.
PCT/EP2004/012811—International Search Report, dated Apr. 12, 2005.
Photograph of Weinmann Mask, acquired prior to 1998.
PCT/AU2004/001760—International Search Report, dated Feb. 3, 2005.
Product Brochure for ResMed “Sullivan® Mirage™—The Mirage is Real. A Perfect Fit-First Time,” ©1998 ResMed Limited, 4 pages.
ResCare Limited, “Sullivantm™ Nasal CPAP System, Nose Mask Clip—User Instructions” May 1990, 1 page.
ResMed Ltd., “Improving patient compliance with the ResMed Range of Mask Systems the Ultimate Interface for CPAP treatment,” 4 pages, before applicants' filing date.
ResMed, Mask Systems Product Brochure, Sep. 1992, 2 pages.
Respironics, Inc., “Nasal Mask System Silicone Contour Mask,” Product Instructions, Jun. 1997, 2 pages.
“Somnomask” brochure, 1999, along with various invoices relating to the “Somnomask”.
Somnotron CPAP-Great WM 2300 Instruction Manual, Weinmann Hamburg, 1991, 11 pages.
The ResMed Range of Mask Systems, product brochure, Nov. 1995, 4 pages.
U.S. Appl. No. 12/083,779—Office Action, dated Feb. 17, 2012.
U.S. Appl. No. 12/083,779—Office Action, dated Sep. 28, 2012.
U.S. Appl. No. 60/227,472, filed Aug. 2000 (expired).
U.S. Appl. No. 60/424,696, filed Nov. 8, 2002 (expired).
U.S. Appl. No. 60/467,572, filed May 2003 (expired).
U.S. Appl. No. 60/643,121, filed Jan. 12, 2005 (expired).
Product Brochure for ResMed “Sullivan® Mirage198 —The Mirage is Real. A Perfect Fit-First Time,” © 1997 ResMed Limited, 4 pages.
Supplementary European Search Report dated Jun. 15, 2010 in European Application No. 03793491.6.
PCT International Search Report dated Oct. 8, 2003.
Examiner's First Report, dated Jun. 22, 2011 in Australian Appln. No. 2010201443 (2 pages).
Notice of Reasons for Rejection dated Mar. 3, 2009 in Japanese Appln. No. 2004-569777.
European Appln. No. EP 09178736.6—Search Report, dated May 6, 2010.
Notification of the Second Office Action dated Jul. 10, 2012 in Chinese Appln. No. 201010620187.7.
Notification of the First Office Action dated Oct. 26, 2011 in Chinese Appln. No. 201010620187.7.
Chinese Appln. No. 200910223650.1—Office Action (w/English translation), dated Mar. 29, 2012.
Mask 9 Photographs, Healthdyne Technologies, Healthdyne Large Headgear, before applicants' filing date.
Mask 10 Photographs, Respironics Inc., Soft Cap (medium), Part #302142, before applicants' filing date.
Extended European Search Report dated Mar. 18, 2016 issued in European Application No. 15002978.3 (7 pages).
Notification of the Second Office Action dated Aug. 12, 2015 issued in Chinese Application No. 201310032494.7 with English translation (14 pages).
Office Action dated Mar. 23, 2018 issued in Chinese Application No. 2016100919890 with English translation (14 pages).
Office Action dated Sep. 30, 2018 issued in Chinese Application No. 2016100919890 with English translation (14 pages).
Related Publications (1)
Number Date Country
20150190601 A1 Jul 2015 US
Provisional Applications (4)
Number Date Country
60424696 Nov 2002 US
60467572 May 2003 US
60317486 Sep 2001 US
60342854 Dec 2001 US
Divisions (1)
Number Date Country
Parent 11705451 Feb 2007 US
Child 12946244 US
Continuations (2)
Number Date Country
Parent 12946244 Nov 2010 US
Child 14661508 US
Parent 10655595 Sep 2003 US
Child 11705451 US
Continuation in Parts (1)
Number Date Country
Parent 10235846 Sep 2002 US
Child 10655595 US