Attachments for use with a surgical access device

Information

  • Patent Grant
  • 10420587
  • Patent Number
    10,420,587
  • Date Filed
    Tuesday, July 18, 2017
    6 years ago
  • Date Issued
    Tuesday, September 24, 2019
    4 years ago
Abstract
A surgical access attachment for use with a surgical access device is disclosed. The surgical access attachment includes a ring and an access portion assembly. The ring is configured to engage a proximal portion of a surgical access device. The access portion assembly includes at least one flexible tab having an engagement structure. The engagement structure is configured to selectively engage the ring. The access portion assembly is configured to retain a seal. The access portion assembly is configured to disengage from the ring in response to a predetermined amount of force exerted on one flexible tab of the at least one flexible tab.
Description
TECHNICAL FIELD

The present disclosure is directed to various embodiments of attachments for use with surgical access devices. More particularly, the present disclosure includes attachments that are removably secured to a proximal portion of a surgical access device and allow instrumentation and/or a clinician's hand to be inserted therethrough.


SUMMARY

The present disclosure relates to a surgical access attachment for use with a surgical access device. The surgical access attachment includes a ring and an access portion assembly. The ring is configured to engage a proximal portion of a surgical access device. The access portion assembly includes at least one flexible tab having an engagement structure. The engagement structure is configured to selectively engage the ring. The access portion assembly is configured to retain a seal. The access portion assembly is configured to disengage from the ring in response to a predetermined amount of force exerted on one flexible tab of the at least one flexible tab.


In disclosed embodiments, the access portion assembly is configured to disengage from the ring in response to a predetermined amount of proximally-directed force exerted on one flexible tab of the at least one flexible tab.


It is also disclosed that the surgical access attachment includes a lip disposed on the access portion assembly. The lip is configured to selectively engage the ring. It is further disclosed that the at least one flexible tab consists of one flexible tab, and the lip is disposed 180° from the flexible tab. Additionally, it is disclosed that the access portion assembly consists of two features that are configured to removably engage the ring, the two features including the flexible tab and the lip. It is further disclosed that a distal-most portion of the flexible tab is co-planar with a distal-most portion of the lip. It is also disclosed that the ring includes a proximal wall, a distal wall, and an intermediate wall interconnecting the proximal wall and the distal wall. Each of the lip and the flexible tab is configured to engage a distal surface of the proximal wall of the ring.


In disclosed embodiments, the proximal wall of the ring is configured to be positioned proximally of a proximal-most portion of a surgical access device.


In disclosed embodiments, the access portion assembly includes a proximal seal retaining portion and a distal seal retaining portion. It is also disclosed that the at least one flexible tab extends from the proximal seal retaining portion. It is further disclosed that the at least one flexible tab extends from the proximal seal retaining portion, and the lip extends from the distal seal retaining portion. Additionally, it is disclosed that the at least one flexible tab extends from the proximal seal retaining portion, and at least partially through an opening of the distal seal retaining portion. It is disclosed that the opening of the distal seal retaining portion is defined by a C-shaped projection extending radially outward from an outer ring of the distal seal retaining portion. It is further disclosed that the proximal seal retaining portion includes a plurality of fingers, and the distal seal retaining portion includes a plurality of engagement apertures. Each finger of the plurality of fingers is configured to mechanically engage one engagement aperture of the plurality of apertures.


In disclosed embodiments, the access portion assembly is configured to engage and/or disengage the ring in a single-handed manner, for example in a non-rotatably single-handed manner.





BRIEF DESCRIPTION OF THE FIGURES

Various embodiments of the present disclosure are disclosed herein with reference to the drawings, wherein:



FIG. 1 is a perspective view of a surgical access attachment in accordance with embodiments of the present disclosure;



FIG. 2 is an assembly view of the surgical access attachment of FIG. 1 which includes a ring and an access port assembly including a proximal seal retaining portion, a seal, and a distal seal retaining portion;



FIG. 3 is a perspective view of the distal seal retaining portion of the access port assembly of FIG. 2;



FIG. 4 is a cross-sectional view of the surgical access attachment of FIG. 1 taken along line 4-4 of FIG. 1;



FIG. 5 in an enlarged view of the area of detail indicated in FIG. 4;



FIG. 6 is a cross-sectional view of the surgical access attachment of FIG. 1 taken along line 6-6 of FIG. 1;



FIG. 7 is a cut-away view of a surgical access assembly for use with a surgical access attachment of the present disclosure;



FIG. 8A is a cross-sectional view of the surgical access assembly of FIG. 7 installed in tissue and showing a proximal portion of the surgical access assembly in a concave orientation;



FIG. 8B is a cross-sectional view of the surgical access assembly of FIG. 7 installed in tissue and showing the proximal portion of the surgical access assembly in a convex orientation;



FIG. 9 is a perspective view of the ring of the surgical access attachment of FIGS. 1 and 2;



FIGS. 10-12 are cross-sectional views illustrating various steps of the engagement between the surgical access attachment of FIGS. 1-6 and 9 with the surgical access device of FIGS. 7-8B;



FIG. 13 is a cross-sectional view of the surgical access attachment of FIGS. 1-6 and 9 engaged with the surgical access device of FIGS. 7-8B, and showing instrumentation inserted through the surgical access attachment and the surgical access device;



FIG. 14 is an enlarged view of the area of detail indicated in FIG. 13;



FIG. 15 is a similar view as FIG. 14, but illustrates a proximally-directed force being applied to a flexible tab of the access port assembly, and the resulting disengagement between the access port assembly and the ring;



FIG. 16 is a perspective view of an alternate embodiment of a surgical access attachment which includes an access portion assembly having two flexible tabs;



FIG. 17 is a perspective view of an additional alternate embodiment of a surgical access attachment;



FIG. 18 is an assembly view of the surgical access attachment of FIG. 17, which includes an overmold assembly having a seal, a retaining assembly, and a ring;



FIG. 19 is an enlarged view of a portion of the retaining assembly of FIG. 18;



FIG. 20 is a perspective view illustrating a distal surface of the overmold assembly of the surgical access attachment of FIGS. 17-18;



FIG. 21 is a cross-sectional view of the surgical access attachment of FIGS. 17-18 taken along line 21-21 of FIG. 17; and



FIG. 22 in an enlarged view of the area of detail indicated in FIG. 21.





DETAILED DESCRIPTION

Particular embodiments of the present disclosure will be described herein with reference to the accompanying figures. As shown in the figures and as described throughout the following description, and as is traditional when referring to relative positioning on an object, the term “proximal” refers to the portion of the device that is closer to the user and the term “distal” refers to the portion of the device that is farther from the user. In the following description, well-known functions or constructions are not described in detail to avoid obscuring the present disclosure in unnecessary detail.


As defined herein, a surgical site includes an incision in a patient or a natural orifice through which a surgical procedure may be performed.


With initial reference to FIGS. 1 and 2, a surgical access attachment 100 is shown in accordance with embodiments of the present disclosure. Surgical access attachment 100 is configured for use with a surgical access device 300 (see FIGS. 7 and 8) for facilitating access through a layer of tissue “T” to a surgical site. More particularly, surgical access attachment 100, or portions thereof, are configured to be selectively removably attached to surgical access device 300, e.g., with the use of a single hand. That is, surgical access attachment 100, or portions thereof, are configured to engage surgical access device 300 in a simple, one-handed manner, and surgical access attachment 100, or portions thereof, are configured to disengage surgical access device 300 in a simple, one-handed manner.


Surgical access attachment 100 includes an access port assembly 110 and a ring 200. Access portion assembly 110 includes a proximal seal retaining portion 120, a distal seal retaining portion 160, and a seal 190. Generally, proximal seal retaining portion 120 and distal seal retaining portion 160 are configured to mechanically engage each other (e.g., via snap-fit engagement) and house seal 190 therebetween. Ring 200 is configured to selectively mechanically engage a proximal portion 310 of surgical access device 300. Access portion assembly 110, which includes proximal seal retaining portion 120, distal seal retaining portion 160 and seal 190, is configured to engage surgical access device 300 by releasably engaging ring 200, which is engaged with surgical access device 300.


Seal 190 is configured and dimensioned to fit between proximal seal retaining portion 120 and distal seal retaining portion 160. Seal 190 is configured to allow a surgical instrument “I” (FIG. 13) and/or a clinician's hand to be inserted therethrough in a sealed relationship. As can be appreciated, various types of seals can be used in connection with the present disclosure. Examples of several types of seals are described in commonly-owned U.S. patent application Ser. No. 14/337,430 filed on Jul. 22, 2014, and 62/021,298 filed on Jul. 7, 2014, each of which being incorporated by reference in its entirety herein.


With particular reference to FIGS. 2, 4 and 5, proximal seal retaining portion 120 includes a rim 122, a plurality of fingers 128, and a flexible tab 130. Rim 122 includes a generally L-shaped cross-section, a radially outer surface 124, and a radially inner surface 126. Each finger of the plurality of fingers 128 depends distally from a distal surface 123 of rim 122. In the embodiment illustrated in FIGS. 4 and 5, for example, each finger of the plurality of fingers 128 is monolithically formed with rim 122. Additionally, a portion of each finger of the plurality of fingers 128 is configured to mechanically engage a portion of distal seal retaining portion 160, discussed in greater detail below.


With reference to FIGS. 2 and 6, flexible tab 130 extends radially outward from rim 122, and includes a proximal portion 132, a leg 134, an engagement portion 136, and a living hinge 138. Living hinge 138 interconnects proximal portion 132 and leg 134, and enables leg 134 to flex with respect to proximal portion 132. Engagement portion 136 extends radially outward from leg 134 and is configured for engagement by a user to facilitate the flexing of leg 134 with respect to proximal portion 132. Additionally, leg 134 includes an engagement structure 139 disposed on a distal end thereof, which is configured to mechanically engage a portion of ring 200, discussed in greater detail below.


With reference to FIGS. 2-6, distal seal retaining portion 160 includes a body 162, a proximal edge 164, a proximal shelf 166, a distal shelf 168, a plurality of engagement apertures 170, an outer ring 180, and a lip 184 (see FIGS. 3 and 6). Proximal edge 164 is configured to at least partially radially surround a distal portion of rim 122 of proximal seal retaining portion 120. Proximal shelf 166 is configured to abut distal surface 123 of rim 122. Distal shelf 168 is configured to engage a distal surface 192 of seal 190.


Each finger of the plurality of fingers 128 is configured to engage one engagement aperture of the plurality of engagement apertures 170. More particularly, and with reference to FIG. 5, a body 129 of each finger 128 is configured to engage a first portion 172 of engagement aperture 170, and a lip 131 of each finger 128 is configured to engage a second portion 174 of engagement aperture 170. Moreover, each finger 128 is flexible such that lip 131 is able to move into and out of engagement with a wall 174a defining second portion 174 engagement aperture 170 to facilitate engagement between finger 128 and engagement aperture 170. Additionally, as can be appreciated, an angled surface 128a of finger 128 and an angled surface 172a adjacent first portion 172 of engagement aperture 170 also facilitate engagement between finger 128 and engagement aperture 170.


It is envisioned that each finger 128 and each engagement aperture 170 can be disengaged from one another by moving lip 131 radially inward with respect to engagement aperture 170. More particularly, it is envisioned that a tool can be inserted through second portion 174 of engagement aperture 170, into contact with lip 131 of finger 128 to move lip 131 radially inward of wall 174a, thus enabling proximal movement of proximal seal retaining portion 120 (at least the portion of which that is adjacent the finger 128 that has been disengaged from the respective engagement aperture 170) with respect to distal seal retaining portion 160.


While the illustrated embodiments illustrate a particular number of fingers 128 and engagement apertures 170, the present disclosure includes embodiments having more or fewer fingers 128 and/or engagement apertures 170 than the amount shown. Additionally, while the illustrated embodiments show an equal amount of fingers 128 and engagement apertures 170, it is envisioned that there are more engagement apertures 170 than fingers 128. For instance, it is envisioned that there are twice as many engagement apertures 170 than fingers 128. Such an embodiment enables proximal seal retaining portion 120 and distal seal retaining portion 160 to engage each other in twice as many rotational positions, which may be helpful if an engagement aperture 170 becomes damaged, for instance. Here, it is envisioned that distal seal retaining portion 160 includes a second C-shaped projection 181 (described in further detail below with regard to the embodiment shown in FIG. 16). Additionally, the circumferential spacing of fingers 128 and engagement apertures 170 may be different than the illustrated spacing.


With particular reference FIGS. 2, 14 and 15, outer ring 180 of distal seal retaining portion 160 includes a substantially C-shaped projection 181 extending radially outward therefrom. C-shaped projection 181 defines an opening 182 therein, which is configured to allow a portion of flexible tab 130 (e.g., engagement structure 139 and a distal portion of leg 134) to extend therethrough.


Referring now to FIGS. 3 and 6, lip 184 of distal seal retaining portion 160 is shown. In the illustrated embodiments, lip 184 extends radially inward from outer ring 180 in a location that is opposite (i.e., 180°) from C-shaped projection 181. As shown in FIG. 6, lip 184 is configured to engage a distal surface 212 of a proximal wall 210 of ring 200.


With particular reference to FIGS. 9-15, ring 200 is shown. Ring 200 includes proximal wall 210, a distal wall 220, and an intermediate wall 230 which interconnects proximal wall 210 and distal wall 220. As noted above, ring 200 is configured to mechanically engage proximal portion 310 of surgical access device 300. Moreover, ring 200 is configured mechanically engage proximal portion 310 of surgical access device 300 when proximal portion 310 is in a concave orientation (FIG. 8A) or when proximal portion 310 is in a convex orientation (FIG. 8B). Additionally, ring 200 includes a discontinuity 240 therein, which is configured to facilitate removable engagement between ring 200 and proximal portion 310 of surgical access device 300. When engaged with proximal portion 310 of surgical access device 300 (as shown in FIGS. 10-15), intermediate wall 230 of ring 200 is disposed radially inward of proximal portion 310 (e.g., a proximal lip) of surgical access device 300. Additionally, distal surface 212 of proximal wall 210 is positioned proximally of a proximal-most surface of surgical access device 300.


In use, and with reference to FIGS. 4-6, when proximal seal retaining portion 120 and distal seal retaining portion 160 are approximated, an inner surface 165 of proximal edge 164 engages an outer surface 125 of rim 122, proximal shelf 166 engages distal surface 123 of rim 122, and at least one finger of the plurality of fingers 128 mechanically engages an engagement aperture of the plurality of engagement apertures 170 to mechanically couple proximal seal retaining portion 120 and distal seal retaining portion 160.


Additionally, and with reference to FIGS. 10-15, to mechanically engage access portion assembly 110 with ring 200 (e.g., after ring 200 is engaged with surgical access device 300), lip 184 of distal seal retaining portion 160 is moved into engagement with proximal wall 210 of ring 200 (e.g., lip 184 is moved distally of a distal surface 212 of proximal wall 210) (see arrows “A” and “B” in FIGS. 10 and 11). The opposite portion of access portion assembly 110 (e.g., the portion of access portion assembly 110 including flexible tab 130) is then moved generally distally (see arrows “C” and “D” in FIGS. 12 and 13), and such that engagement structure 139 of flexible tab 130 moves distally of proximal wall 210 of ring 200 (see FIGS. 13 and 14). With particular reference to FIG. 14, an angled surface 137 on engagement structure 139 of flexible tab 130 facilitates the radially outward movement of flexible tab 130 to enable engagement structure 139 to be properly positioned. It is envisioned that flexible tab 130 is biased radially inward such that engagement structure 139 thereof moves toward its biased position and into engagement with distal surface 212 of proximal wall 210 of ring 200 after access portion assembly 110 has been moved sufficiently distally with respect to ring 200. It is further envisioned that a user can exert a distal force upon engagement portion 136 in the general direction of arrows “C” and “D” in FIGS. 12 and 13 to help engagement structure 139 move radially inward and into engagement with distal surface 212 of proximal wall 210 of ring 200.


As can be appreciated the engagement between access portion assembly 110 and ring 200 can be accomplished single-handedly, thus allowing the clinician more freedom during, before, and after the surgical procedure, for example. More particularly, it is envisioned that a clinician can use a single handle to quickly and efficiently engage access portion assembly 110 and ring 200, without the need of rotating any components, for instance.


With particular reference to FIG. 15, to disengage access portion assembly 110 from ring 200, a user exerts a generally proximal force (see arrow “E” in FIG. 15) against engagement portion 136. A predetermined amount of force causes leg 134 of flexible tab 130 to flex a sufficient amount with respect to proximal portion 132, to cause engagement structure 139 to move radially outward and out of engagement with distal surface 212 of proximal wall 210 of ring 200, thereby permitting the portion of access portion assembly 110 including flexible tab 130 to move proximally with respect to ring 200 (e.g., in the direction opposite arrows “C” and “D” in FIGS. 12 and 13), which then allows lip 184 of distal seal retaining portion 160 to move out of engagement with proximal wall 210 of ring 200 (e.g., in the direction opposite arrows “A” and “B” in FIGS. 10 and 11), and allows complete disengagement between access portion assembly 110 and ring 200.


As can be appreciated the disengagement between access portion assembly 110 and ring 200 can be accomplished single-handedly, thus allowing the clinician more freedom during, before, and after the surgical procedure, for example. More particularly, it is envisioned that a clinician can use a single finger to press proximally or upward on flexible tab 130 to quickly accomplish this disengagement, without the need of rotating or unscrewing any components, for instance.


Referring now to FIG. 16, another embodiment of surgical access attachment is shown and is referred to as reference character 100a. Surgical access attachment 100a is similar to surgical access attachment 100 of FIG. 1, but surgical access attachment 100a includes two flexible tabs 130a1 and 130a2. Here, second flexible tab 130a2, effectively replaces lip 184 of distal seal retaining portion 160 of surgical access attachment 100. More particularly, an engagement structure (not explicitly shown in FIG. 16; similar to engagement structure 139 of surgical access attachment 100) of second flexible tab 130a2 takes the place of lip 184. (See also FIG. 21, which illustrates a surgical access attachment 1000 including a pair of flexible tabs 1280.) Additionally, a distal seal retaining portion 160a of surgical access attachment 100a includes first and second C-shaped projections 181a1 and 181a2, which each define a respective opening 182a1 and 182a2 therein.


Here, as can be appreciated, engagement and disengagement between access port assembly 110a and a ring 200a is accomplished similarly to engagement and disengagement between access port assembly 110 and ring 200, as discussed above.


Referring now to FIGS. 17-22 another embodiment of a surgical access attachment is shown and is referred to as reference character 1000. Surgical access attachment 1000 is configured for use with a surgical access device 300 (see FIGS. 7 and 8) for facilitating access to a surgical site. More particularly, surgical access attachment 1000, or portions thereof, are configured to be selectively removably attached to surgical access device 300, e.g., with the use of a single hand. That is, surgical access attachment 1000, or portions thereof, are configured to engage surgical access device 300 in a simple, one-handed manner, and surgical access attachment 1000, or portions thereof, are configured to disengage surgical access device 300 in a simple, one-handed manner.


With particular reference to FIG. 18, surgical access attachment 1000 includes a seal assembly 1100, a body portion 1200, and a ring 1300. Seal assembly 1100 includes a seal 1120 and a seal retaining member 1140, which are overmolded together. As discussed above with regard to seal 190, seal 1120 can be any suitable type of seal. Seal assembly 1100 is configured to mechanically engage body portion 1200, and body portion 1200 is configured to be selectively removably attached to ring 1300, as discussed in further detail below.


With particular reference to FIGS. 19 and 20, the engagement between seal assembly 1100 and body portion 1200 is shown. A distal surface 1142 of seal retaining member 1140 includes a plurality of pins 1150 extending distally therefrom (FIG. 20), and a proximal surface 1202 of body portion 1200 includes a plurality of holes 1210 therein (FIG. 19). Each pin 1150 of seal retaining member 1140 is configured to frictionally engage one hole of the plurality of holes 1210 of body portion 1200 to secure (e.g., removably secure) seal assembly 1100 and body portion 1200. As can be appreciated, the number of holes of the plurality of holes 1210 helps determine the number of possible radial orientations of seal assembly 1100 with respect to body portion 1200. While the illustrated embodiment shows a certain number of pins 1150 and holes 1210, more or fewer pins 1150 and/or holes 1210 may be included. Additionally, body portion 1200 may include the same number of holes 1210 as there are pins 1150, or body portion 1200 may include more holes 1210 than pins 1150 without departing from the scope of the present disclosure. Further, the orientation and/or spacing of holes 1210 and pins 1150 may differ from the illustrated orientation and spacing.


Referring now to FIGS. 21 and 22, the engagement between body portion 1200 and ring 1300 is shown. Body portion 1200 includes a proximal band 1220, an intermediate band 1240, a distal band 1260, and a pair of flexible tabs 1280. Proximal band 1220 includes proximal surface 1202 having plurality of holes 1210. Intermediate band 1240 interconnects proximal band 1220 and distal band 1260. Distal band 1260 includes a first C-shaped projection 1262 defining an opening 1264 therein, and a second C-shaped projection 1266 defining an opening 1268 therein (see FIGS. 18 and 22).


With continued reference to FIG. 22, each flexible tab 1280 depends distally from proximal band 1220, and includes a leg 1282, an engagement portion 1284, and a living hinge 1286. Living hinge 1286 interconnects leg 1282 and proximal band 1220, and enables leg 1282 to flex with respect to proximal band 1220. Engagement portion 1284 extends radially outward from leg 1282 and is configured for engagement by a user to facilitate the flexing of leg 1282 with respect to proximal band 1220 (e.g., to disengage body portion 1200 from ring 1300). A distal portion 1288 of leg 1282 of each flexible tab 1280 extends through opening 1264, 1268 of respective C-shaped projection 1262, 1266. Additionally, leg 1282 includes an engagement structure 1290 disposed on a distal end thereof, which is configured to mechanically engage a portion of ring 1300. Ring 1300 is similar to ring 200 of surgical access attachment 100, as discussed above.


Additional details of the removable attachment between body portion 1200 and ring 1300 are similar to those discussed above with regard to the removable attachment between access port assembly 110 and ring 200.


The present disclosure also relates to methods of using the devices described herein. For example, the present disclosure includes methods of single-handedly engaging and disengaging a surgical access attachment (including a seal assembly associated therein) with a surgical access device.


While several embodiments of the disclosure have been shown in the drawings, it is not intended that the disclosure be limited thereto, as it is intended that the disclosure be as broad in scope as the art will allow and that the specification be read likewise. Therefore, the above description should not be construed as limiting, but merely as examples of particular embodiments. Those skilled in the art will envision other modifications within the scope and spirit of the claims appended hereto.


Persons skilled in the art will understand that the various apparatus, and corresponding methods of use described herein, and shown in the accompanying drawings, constitute non-limiting, exemplary embodiments of the present disclosure, and that additional components and features may be added to any of the embodiments discussed herein above without departing from the scope of the present disclosure.


Additionally, persons skilled in the art will understand that the elements and features shown or described in connection with one exemplary embodiment may be combined with those of another embodiment without departing from the scope of the present disclosure, and will appreciate further features and advantages of the presently disclosed subject matter based on the above-described embodiments and the claims. Accordingly, the present disclosure is not limited by what has been particularly shown and described.


Although the foregoing disclosure has been described in some detail by way of illustration and example, for purposes of clarity or understanding, it will be obvious that certain changes and modifications may be practiced within the scope of the appended claims.

Claims
  • 1. A surgical access attachment for use with a surgical access device, the surgical access attachment comprising: a ring configured to engage a proximal portion of a surgical access device, the ring including a proximal wall; andan access portion assembly including a proximal seal retaining portion, a distal seal retaining portion, a lip extending from the distal seal retaining portion, and a tab extending from the proximal seal retaining portion, each of the lip and the tab is configured to engage a distal surface of the proximal wall of the ring, a distal-most portion of the tab is co-planar with a distal-most portion of the lip, the access portion assembly configured to retain a seal;wherein the access portion assembly is configured to disengage from the ring in response to a predetermined amount of force exerted on the tab.
  • 2. The surgical access attachment according to claim 1, wherein the lip is disposed 180° from the tab.
  • 3. The surgical access attachment according to claim 1, wherein the lip is configured to selectively engage the ring.
  • 4. The surgical access attachment according to claim 1, wherein the tab includes an engagement structure configured to selectively engage the ring.
  • 5. The surgical access attachment according to claim 1, wherein the ring includes a distal wall and an intermediate wall, the intermediate wall interconnecting the proximal wall and the distal wall.
  • 6. The surgical access attachment according to claim 1, wherein the access portion assembly is configured to disengage from the ring in response to a predetermined amount of proximally-directed force exerted on the tab.
  • 7. The surgical access attachment according to claim 1, wherein the tab and the lip of the access portion assembly are configured to removably engage the ring.
  • 8. The surgical access attachment according to claim 1, wherein the proximal wall of the ring is configured to be positioned proximally of a proximal-most portion of the surgical access device.
  • 9. The surgical access attachment according to claim 1, wherein the tab extends from the proximal seal retaining portion.
  • 10. The surgical access attachment according to claim 1, wherein the tab extends from the proximal seal retaining portion and at least partially through an opening of the distal seal retaining portion.
  • 11. The surgical access attachment according to claim 10, wherein the opening of the distal seal retaining portion is defined by a C-shaped projection extending radially outward from an outer ring of the distal seal retaining portion.
  • 12. The surgical access attachment according to claim 1, wherein the proximal seal retaining portion includes a plurality of fingers and the distal seal retaining portion includes a plurality of engagement apertures, each finger of the plurality of fingers is configured to mechanically engage one engagement aperture of the plurality of engagement apertures.
  • 13. The surgical access attachment according to claim 1, wherein the access portion assembly is configured to engage the ring in a single-handed manner.
  • 14. The surgical access attachment according to claim 13, wherein the access portion assembly is configured to disengage the ring in a single-handed manner.
  • 15. The surgical access attachment according to claim 1, wherein the access portion assembly is configured to non-rotatably engage the ring in a single-handed manner.
  • 16. The surgical access attachment according to claim 15, wherein the access portion assembly is configured to non-rotatably disengage the ring in a single-handed manner.
  • 17. A surgical access attachment for use with a surgical access device, the surgical access attachment comprising: a ring configured to engage a proximal portion of a surgical access device, the ring including a proximal wall; andan access portion assembly including a proximal seal retaining portion, a distal seal retaining portion, a lip extending from the distal seal retaining portion, and a tab extending from the proximal seal retaining portion and at least partially through an opening of the distal seal retaining portion, each of the lip and the tab is configured to engage a distal surface of the proximal wall of the ring, the access portion assembly configured to retain a seal;wherein the access portion assembly is configured to disengage from the ring in response to a predetermined amount of force exerted on the tab.
  • 18. A surgical access attachment for use with a surgical access device, the surgical access attachment comprising: a ring configured to engage a proximal portion of a surgical access device, the ring including a proximal wall; andan access portion assembly including a proximal seal retaining portion, a distal seal retaining portion, a lip extending from the distal seal retaining portion, and a tab extending from the proximal seal retaining portion, each of the lip and the tab is configured to engage a distal surface of the proximal wall of the ring, the proximal seal retaining portion including a plurality of fingers and the distal seal retaining portion including a plurality of engagement apertures, each finger of the plurality of fingers is configured to mechanically engage one engagement aperture of the plurality of engagement apertures, the access portion assembly configured to retain a seal;wherein the access portion assembly is configured to disengage from the ring in response to a predetermined amount of force exerted on the tab.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is a continuation of U.S. patent application Ser. No. 14/804,779, filed Jul. 21, 2015, now U.S. Pat. No. 9,707,011, which claims the benefit of and priority to U.S. Provisional Patent Application No. 62/078,479, filed Nov. 12, 2014, the entire disclosure of which is incorporated by reference herein.

US Referenced Citations (488)
Number Name Date Kind
2468985 Krotz May 1949 A
3402710 Paleschuck Sep 1968 A
3495586 Regenbogen Feb 1970 A
3674007 Freis Jul 1972 A
4016884 Kwan-Gett Apr 1977 A
4112932 Chiulli Sep 1978 A
4183357 Bentley et al. Jan 1980 A
4356826 Kubota Nov 1982 A
4402683 Kopman Sep 1983 A
D276937 Griggs Dec 1984 S
4653476 Bonnet Mar 1987 A
4737148 Blake Apr 1988 A
4863430 Klyce et al. Sep 1989 A
4863438 Gauderer et al. Sep 1989 A
4984564 Yuen Jan 1991 A
5002557 Hasson Mar 1991 A
5073169 Raiken Dec 1991 A
5082005 Kaldany Jan 1992 A
5122122 Allgood Jun 1992 A
5159921 Hoover Nov 1992 A
5176697 Hasson et al. Jan 1993 A
5183471 Wilk Feb 1993 A
5192301 Kamiya et al. Mar 1993 A
5197955 Stephens et al. Mar 1993 A
5209754 Ahluwalia May 1993 A
5217466 Hasson Jun 1993 A
5242409 Buelna Sep 1993 A
5242415 Kantrowitz et al. Sep 1993 A
5257973 Villasuso Nov 1993 A
5257975 Foshee Nov 1993 A
5269772 Wilk Dec 1993 A
5290249 Foster et al. Mar 1994 A
5312391 Wilk May 1994 A
5312417 Wilk May 1994 A
5314417 Stephens et al. May 1994 A
5318516 Cosmescu Jun 1994 A
5330486 Wilk Jul 1994 A
5334143 Carroll Aug 1994 A
5336169 Divilio et al. Aug 1994 A
5336203 Goldhardt et al. Aug 1994 A
5337937 Remiszewski et al. Aug 1994 A
5345927 Bonutti Sep 1994 A
5350364 Stephens et al. Sep 1994 A
5360417 Gravener et al. Nov 1994 A
5366478 Brinkerhoff et al. Nov 1994 A
5375588 Yoon Dec 1994 A
5391156 Hildwein et al. Feb 1995 A
5394863 Sanford et al. Mar 1995 A
5395367 Wilk Mar 1995 A
5437683 Neumann et al. Aug 1995 A
5443453 Walker et al. Aug 1995 A
5445615 Yoon Aug 1995 A
5451222 De Maagd et al. Sep 1995 A
5460170 Hammerslag Oct 1995 A
5464409 Mohajer Nov 1995 A
5480410 Cuschieri et al. Jan 1996 A
5490843 Hildwein et al. Feb 1996 A
5507758 Thomason et al. Apr 1996 A
5511564 Wilk Apr 1996 A
5514133 Golub et al. May 1996 A
5514153 Bonutti May 1996 A
5520698 Koh May 1996 A
5522791 Leyva Jun 1996 A
5524644 Crook Jun 1996 A
5540648 Yoon Jul 1996 A
5545150 Danks et al. Aug 1996 A
5545179 Williamson, IV Aug 1996 A
5556385 Andersen Sep 1996 A
5556387 Mollenauer et al. Sep 1996 A
5569159 Anderson et al. Oct 1996 A
5577993 Zhu et al. Nov 1996 A
5601581 Fogarty et al. Feb 1997 A
5624399 Ackerman Apr 1997 A
5634911 Hermann et al. Jun 1997 A
5634937 Mollenauer et al. Jun 1997 A
5643285 Rowden et al. Jul 1997 A
5649550 Crook Jul 1997 A
5651771 Tangherlini et al. Jul 1997 A
5653705 de la Torre et al. Aug 1997 A
5656013 Yoon Aug 1997 A
5672168 de la Torre et al. Sep 1997 A
5683378 Christy Nov 1997 A
5685857 Negus et al. Nov 1997 A
5697946 Hopper et al. Dec 1997 A
5709675 Williams Jan 1998 A
5713858 Heruth et al. Feb 1998 A
5713869 Morejon Feb 1998 A
5722962 Garcia Mar 1998 A
5728103 Picha et al. Mar 1998 A
5730748 Fogarty et al. Mar 1998 A
5735791 Alexander, Jr. et al. Apr 1998 A
5741298 MacLeod Apr 1998 A
5752970 Yoon May 1998 A
5782817 Franzel et al. Jul 1998 A
5795290 Bridges Aug 1998 A
5803921 Bonadio Sep 1998 A
5810712 Dunn Sep 1998 A
5813409 Leahy et al. Sep 1998 A
5830191 Hildwein et al. Nov 1998 A
5836871 Wallace et al. Nov 1998 A
5836913 Orth et al. Nov 1998 A
5840077 Rowden et al. Nov 1998 A
5842971 Yoon Dec 1998 A
5848992 Hart et al. Dec 1998 A
5853417 Fogarty et al. Dec 1998 A
5857461 Levitsky et al. Jan 1999 A
5865817 Moenning et al. Feb 1999 A
5871474 Hermann et al. Feb 1999 A
5876413 Fogarty et al. Mar 1999 A
5894843 Benetti et al. Apr 1999 A
5899208 Bonadio May 1999 A
5899913 Fogarty et al. May 1999 A
5904703 Gilson May 1999 A
5906577 Beane et al. May 1999 A
5914415 Tago Jun 1999 A
5916198 Dillow Jun 1999 A
5941898 Moenning et al. Aug 1999 A
5951588 Moenning Sep 1999 A
5957913 de la Torre et al. Sep 1999 A
5964781 Mollenauer et al. Oct 1999 A
5976174 Ruiz Nov 1999 A
5997515 de la Torre et al. Dec 1999 A
6017355 Hessel et al. Jan 2000 A
6018094 Fox Jan 2000 A
6024736 de la Torre et al. Feb 2000 A
6030402 Thompson et al. Feb 2000 A
6033426 Kaji Mar 2000 A
6033428 Sardella Mar 2000 A
6042573 Lucey Mar 2000 A
6048309 Flom et al. Apr 2000 A
6059816 Moenning May 2000 A
6068639 Fogarty et al. May 2000 A
6077288 Shimomura et al. Jun 2000 A
6086603 Termin et al. Jul 2000 A
6099506 Macoviak et al. Aug 2000 A
6110154 Shimomura et al. Aug 2000 A
6142936 Beane et al. Nov 2000 A
6156006 Brosens et al. Dec 2000 A
6162196 Hart et al. Dec 2000 A
6171282 Ragsdale Jan 2001 B1
6197002 Peterson Mar 2001 B1
6217555 Hart et al. Apr 2001 B1
6228063 Aboul-Hosn May 2001 B1
6234958 Snoke et al. May 2001 B1
6238373 de la Torre et al. May 2001 B1
6241768 Agarwal et al. Jun 2001 B1
6251119 Addis Jun 2001 B1
6254534 Butler et al. Jul 2001 B1
6264604 Kieturakis et al. Jul 2001 B1
6276661 Laird Aug 2001 B1
6293952 Brosens et al. Sep 2001 B1
6315770 de la Torre et al. Nov 2001 B1
6319246 de la Torre et al. Nov 2001 B1
6328720 McNally et al. Dec 2001 B1
6329637 Hembree et al. Dec 2001 B1
6371968 Kogasaka et al. Apr 2002 B1
6382211 Crook May 2002 B1
6423036 Van Huizen Jul 2002 B1
6440061 Wenner et al. Aug 2002 B1
6440063 Beane et al. Aug 2002 B1
6443957 Addis Sep 2002 B1
6447489 Peterson Sep 2002 B1
6450983 Rambo Sep 2002 B1
6454783 Piskun Sep 2002 B1
6464686 O'Hara et al. Oct 2002 B1
6468292 Mollenauer et al. Oct 2002 B1
6485410 Loy Nov 2002 B1
6488620 Segermark et al. Dec 2002 B1
6488692 Spence et al. Dec 2002 B1
6524283 Hopper et al. Feb 2003 B1
6527787 Fogarty et al. Mar 2003 B1
6544210 Trudel et al. Apr 2003 B1
6551270 Bimbo et al. Apr 2003 B1
6558371 Dorn May 2003 B2
6562022 Hoste et al. May 2003 B2
6572631 McCartney Jun 2003 B1
6578577 Bonadio et al. Jun 2003 B2
6582364 Butler et al. Jun 2003 B2
6589167 Shimomura et al. Jul 2003 B1
6589316 Schultz et al. Jul 2003 B1
6592543 Wortrich et al. Jul 2003 B1
6613952 Rambo Sep 2003 B2
6623426 Bonadio et al. Sep 2003 B2
6669674 Macoviak et al. Dec 2003 B1
6676639 Ternstrom Jan 2004 B1
6684405 Lezdey Feb 2004 B2
6706050 Giannadakis Mar 2004 B1
6716201 Blanco Apr 2004 B2
6718628 Munshi Apr 2004 B2
6723044 Pulford et al. Apr 2004 B2
6723088 Gaskill, III et al. Apr 2004 B2
6725080 Melkent et al. Apr 2004 B2
6800084 Davison et al. Oct 2004 B2
6811546 Callas et al. Nov 2004 B1
6814078 Crook Nov 2004 B2
6830578 O'Heeron et al. Dec 2004 B2
6837893 Miller Jan 2005 B2
6840946 Fogarty et al. Jan 2005 B2
6840951 de la Torre et al. Jan 2005 B2
6846287 Bonadio et al. Jan 2005 B2
6863674 Kasahara et al. Mar 2005 B2
6878110 Yang et al. Apr 2005 B2
6884253 McFarlane Apr 2005 B1
6890295 Michels et al. May 2005 B2
6913609 Yencho et al. Jul 2005 B2
6916310 Sommerich Jul 2005 B2
6916331 Mollenauer et al. Jul 2005 B2
6929637 Gonzalez et al. Aug 2005 B2
6939296 Ewers et al. Sep 2005 B2
6942633 Odland Sep 2005 B2
6945932 Caldwell et al. Sep 2005 B1
6958037 Ewers et al. Oct 2005 B2
6972026 Caldwell et al. Dec 2005 B1
6986752 McGuckin, Jr. et al. Jan 2006 B2
6991602 Nakazawa et al. Jan 2006 B2
6997909 Goldberg Feb 2006 B2
7001397 Davison et al. Feb 2006 B2
7008377 Beane et al. Mar 2006 B2
7011645 McGuckin, Jr. et al. Mar 2006 B2
7014628 Bousquet Mar 2006 B2
7033319 Pulford et al. Apr 2006 B2
7052454 Taylor May 2006 B2
7056321 Pagliuca et al. Jun 2006 B2
7077852 Fogarty et al. Jul 2006 B2
7081089 Bonadio et al. Jul 2006 B2
7083626 Hart et al. Aug 2006 B2
7100614 Stevens et al. Sep 2006 B2
7101353 Lui et al. Sep 2006 B2
7104981 Elkins et al. Sep 2006 B2
7153261 Wenchell Dec 2006 B2
7160309 Voss Jan 2007 B2
7163510 Kahle et al. Jan 2007 B2
7192436 Sing et al. Mar 2007 B2
7195590 Butler et al. Mar 2007 B2
7201725 Cragg et al. Apr 2007 B1
7214185 Rosney et al. May 2007 B1
7217277 Parihar et al. May 2007 B2
7223257 Shubayev et al. May 2007 B2
7223278 Davison et al. May 2007 B2
7235064 Hopper et al. Jun 2007 B2
7235084 Skakoon et al. Jun 2007 B2
D545967 Joyce et al. Jul 2007 S
7238154 Ewers et al. Jul 2007 B2
7258712 Schultz et al. Aug 2007 B2
7276075 Callas et al. Oct 2007 B1
7294103 Bertolero et al. Nov 2007 B2
7300399 Bonadio et al. Nov 2007 B2
7316699 McFarlane Jan 2008 B2
7331940 Sommerich Feb 2008 B2
7344547 Piskun Mar 2008 B2
7377898 Ewers et al. May 2008 B2
7390322 McGuckin, Jr. et al. Jun 2008 B2
7393322 Wenchell Jul 2008 B2
7412977 Fields et al. Aug 2008 B2
7440661 Kobayashi Oct 2008 B2
7445597 Butler et al. Nov 2008 B2
7452363 Ortiz Nov 2008 B2
7473221 Ewers et al. Jan 2009 B2
7481765 Ewers et al. Jan 2009 B2
7493703 Kim et al. Feb 2009 B2
7513361 Mills, Jr. Apr 2009 B1
7513461 Reutenauer et al. Apr 2009 B2
7520876 Ressemann et al. Apr 2009 B2
7537564 Bonadio et al. May 2009 B2
7540839 Butler et al. Jun 2009 B2
7559893 Bonadio et al. Jul 2009 B2
7608082 Cuevas et al. Oct 2009 B2
7625361 Suzuki et al. Dec 2009 B2
7645232 Shluzas Jan 2010 B2
7650887 Nguyen et al. Jan 2010 B2
7704207 Albrecht et al. Apr 2010 B2
7717846 Zirps et al. May 2010 B2
7717847 Smith May 2010 B2
7721742 Kalloo et al. May 2010 B2
7727146 Albrecht et al. Jun 2010 B2
7730629 Kim Jun 2010 B2
7736306 Brustad et al. Jun 2010 B2
7753901 Piskun et al. Jul 2010 B2
7758500 Boyd et al. Jul 2010 B2
7762995 Eversull et al. Jul 2010 B2
7766824 Jensen et al. Aug 2010 B2
7787963 Geistert et al. Aug 2010 B2
7798898 Luciano, Jr. et al. Sep 2010 B2
7798998 Thompson et al. Sep 2010 B2
7811251 Wenchell et al. Oct 2010 B2
7815567 Albrecht et al. Oct 2010 B2
7837612 Gill et al. Nov 2010 B2
7846123 Vassiliades et al. Dec 2010 B2
7850600 Piskun Dec 2010 B1
7850667 Gresham Dec 2010 B2
7867164 Butler et al. Jan 2011 B2
7896889 Mazzocchi et al. Mar 2011 B2
7905829 Nishimura et al. Mar 2011 B2
7909760 Albrecht et al. Mar 2011 B2
7951076 Hart et al. May 2011 B2
7955257 Frasier et al. Jun 2011 B2
7955313 Boismier Jun 2011 B2
7998068 Bonadio et al. Aug 2011 B2
3021296 Bonadio et al. Sep 2011 A1
8025670 Sharp et al. Sep 2011 B2
8038652 Morrison et al. Oct 2011 B2
8066673 Hart et al. Nov 2011 B2
8079986 Taylor et al. Dec 2011 B2
8092430 Richard et al. Jan 2012 B2
8105234 Ewers et al. Jan 2012 B2
8157786 Miller et al. Apr 2012 B2
8157817 Bonadio et al. Apr 2012 B2
8187177 Kahle et al. May 2012 B2
8187178 Bonadio et al. May 2012 B2
8226553 Shelton, IV et al. Jul 2012 B2
8251900 Ortiz et al. Aug 2012 B2
8257252 Kleyman Sep 2012 B2
8262568 Albrecht et al. Sep 2012 B2
8317690 Ransden et al. Nov 2012 B2
8323184 Spiegal et al. Dec 2012 B2
8328761 Widenhouse et al. Dec 2012 B2
8343047 Albrecht et al. Jan 2013 B2
8353824 Shelton, IV et al. Jan 2013 B2
8388526 Ewers et al. Mar 2013 B2
8394018 Piskun Mar 2013 B2
8414485 Richard et al. Apr 2013 B2
8465494 Butler et al. Jun 2013 B2
8480683 Fowler et al. Jul 2013 B2
8550992 Kleyman Oct 2013 B2
8574153 Richard Nov 2013 B2
8602983 Kleyman Dec 2013 B2
8641610 Okoniewski et al. Feb 2014 B2
8668641 Smith Mar 2014 B2
8684918 Stopek Apr 2014 B2
8696557 Fischvogt Apr 2014 B2
8727974 Kasvikis May 2014 B2
8764647 Kleyman Jul 2014 B2
D712033 Richard et al. Aug 2014 S
D712034 Richard et al. Aug 2014 S
8795164 Stopek Aug 2014 B2
8795289 Fowler et al. Aug 2014 B2
D736921 Richard et al. Aug 2015 S
9707011 Malkowski et al. Jul 2017 B2
20010037053 Bonadio et al. Nov 2001 A1
20020055714 Rothschild May 2002 A1
20030014076 Mollenauer et al. Jan 2003 A1
20030093104 Bonner et al. May 2003 A1
20030212383 Cote et al. Nov 2003 A1
20040059297 Racenet et al. Mar 2004 A1
20040092795 Bonadio et al. May 2004 A1
20040102804 Chin May 2004 A1
20040111061 Curran Jun 2004 A1
20040138529 Wiltshire et al. Jul 2004 A1
20040204734 Wagner et al. Oct 2004 A1
20040267096 Caldwell et al. Dec 2004 A1
20050020884 Hart et al. Jan 2005 A1
20050070935 Ortiz Mar 2005 A1
20050096695 Olich May 2005 A1
20050119525 Takemoto Jun 2005 A1
20050137459 Chin et al. Jun 2005 A1
20050148823 Vaugh et al. Jul 2005 A1
20050192483 Bonadio et al. Sep 2005 A1
20050203346 Bonadio et al. Sep 2005 A1
20050209608 O'Heeron Sep 2005 A1
20050245876 Khosravi et al. Nov 2005 A1
20050251092 Howell et al. Nov 2005 A1
20050277946 Greenhalgh Dec 2005 A1
20060071432 Staudner Apr 2006 A1
20060129165 Edoga et al. Jun 2006 A1
20060149137 Pingleton et al. Jul 2006 A1
20060149306 Hart et al. Jul 2006 A1
20060161049 Beane et al. Jul 2006 A1
20060161050 Butler et al. Jul 2006 A1
20060212063 Wilk Sep 2006 A1
20060224161 Bhattacharyya Oct 2006 A1
20060241651 Wilk Oct 2006 A1
20060247500 Voegele et al. Nov 2006 A1
20060247516 Hess et al. Nov 2006 A1
20060247586 Voegele et al. Nov 2006 A1
20060247673 Voegele et al. Nov 2006 A1
20060247678 Weisenburgh et al. Nov 2006 A1
20060270911 Voegele et al. Nov 2006 A1
20070088241 Brustad et al. Apr 2007 A1
20070118175 Butler et al. May 2007 A1
20070203398 Bonadio et al. Aug 2007 A1
20070208312 Norton et al. Sep 2007 A1
20070270654 Pignato et al. Nov 2007 A1
20070270882 Hjelle et al. Nov 2007 A1
20080027476 Piskun Jan 2008 A1
20080048011 Weller Feb 2008 A1
20080097162 Bonadio et al. Apr 2008 A1
20080097332 Greenhalgh et al. Apr 2008 A1
20080161826 Guiraudon Jul 2008 A1
20080194973 Imam Aug 2008 A1
20080249371 Beckman et al. Oct 2008 A1
20080255519 Piskun et al. Oct 2008 A1
20080319261 Lucini et al. Dec 2008 A1
20090012477 Norton et al. Jan 2009 A1
20090036738 Cuschieri et al. Feb 2009 A1
20090093752 Richard et al. Apr 2009 A1
20090093850 Richard Apr 2009 A1
20090105635 Bettuchi et al. Apr 2009 A1
20090131751 Spivey et al. May 2009 A1
20090137879 Ewers et al. May 2009 A1
20090182279 Wenchell et al. Jul 2009 A1
20090182288 Spenciner Jul 2009 A1
20090187079 Albrecht et al. Jul 2009 A1
20090204067 Abu-Halawa Aug 2009 A1
20090221968 Morrison et al. Sep 2009 A1
20090227843 Smith et al. Sep 2009 A1
20090299292 Renaux Dec 2009 A1
20090326330 Bonadio et al. Dec 2009 A1
20090326332 Carter Dec 2009 A1
20100063452 Edelman et al. Mar 2010 A1
20100100043 Racenet Apr 2010 A1
20100113886 Piskun et al. May 2010 A1
20100228094 Ortiz et al. Sep 2010 A1
20100240960 Richard Sep 2010 A1
20100249516 Shelton, IV et al. Sep 2010 A1
20100261975 Huey et al. Oct 2010 A1
20100262080 Shelton, IV Oct 2010 A1
20100280326 Hess et al. Nov 2010 A1
20100286484 Stellon et al. Nov 2010 A1
20100286506 Ransden et al. Nov 2010 A1
20100298646 Stellon et al. Nov 2010 A1
20110009704 Marczyk et al. Jan 2011 A1
20110021877 Fortier et al. Jan 2011 A1
20110028794 Widenhouse et al. Feb 2011 A1
20110028891 Okoniewski Feb 2011 A1
20110054257 Stopek Mar 2011 A1
20110054258 O'Keefe et al. Mar 2011 A1
20110054260 Albrecht et al. Mar 2011 A1
20110071359 Bonadio et al. Mar 2011 A1
20110082341 Kleyman et al. Apr 2011 A1
20110082343 Okoniewski Apr 2011 A1
20110082346 Stopek Apr 2011 A1
20110118553 Stopek May 2011 A1
20110124968 Kleyman May 2011 A1
20110124969 Stopek May 2011 A1
20110124970 Kleyman May 2011 A1
20110125186 Fowler et al. May 2011 A1
20110166423 Farascioni et al. Jul 2011 A1
20110251463 Kleyman Oct 2011 A1
20110251464 Kleyman Oct 2011 A1
20110251465 Kleyman Oct 2011 A1
20110251466 Kleyman et al. Oct 2011 A1
20110313250 Kleyman Dec 2011 A1
20120059640 Roy et al. Mar 2012 A1
20120130177 Davis May 2012 A1
20120130179 Rockrohr May 2012 A1
20120130181 Davis May 2012 A1
20120130182 Rodrigues, Jr. et al. May 2012 A1
20120130183 Barnes May 2012 A1
20120130184 Richard May 2012 A1
20120130185 Pribanic May 2012 A1
20120130186 Stopek et al. May 2012 A1
20120130187 Okoniewski May 2012 A1
20120130188 Okoniewski May 2012 A1
20120130190 Kasvikis May 2012 A1
20120130191 Pribanic May 2012 A1
20120149987 Richard et al. Jun 2012 A1
20120157777 Okoniewski Jun 2012 A1
20120157779 Fischvogt Jun 2012 A1
20120157780 Okoniewski et al. Jun 2012 A1
20120157781 Kleyman Jun 2012 A1
20120157782 Alfieri Jun 2012 A1
20120157783 Okoniewski et al. Jun 2012 A1
20120157784 Kleyman et al. Jun 2012 A1
20120157785 Kleyman Jun 2012 A1
20120157786 Pribanic Jun 2012 A1
20120190931 Stopek Jul 2012 A1
20120190932 Okoniewski Jul 2012 A1
20120190933 Kleyman Jul 2012 A1
20120209077 Racenet Aug 2012 A1
20120245425 Okoniewski Sep 2012 A1
20120253134 Smith Oct 2012 A1
20130150792 Alonso et al. Jun 2013 A1
20130178708 Malkowski et al. Jul 2013 A1
20130184646 Richard et al. Jul 2013 A1
20130225931 Cruz et al. Aug 2013 A1
20130245373 Okoniewski Sep 2013 A1
20130253277 Smith Sep 2013 A1
20130253278 Smith Sep 2013 A1
20130274559 Fowler et al. Oct 2013 A1
20130310651 Alfieri Nov 2013 A1
20140039268 Richard Feb 2014 A1
20140051933 Okoniewski Feb 2014 A1
20140121466 Okoniewski et al. May 2014 A1
20140142392 Smith May 2014 A1
20140171745 Stopek Jun 2014 A1
20140194696 Fischvogt Jul 2014 A1
20150038796 Okoniewski Feb 2015 A1
20150038797 Furnish Feb 2015 A1
Foreign Referenced Citations (69)
Number Date Country
2702419 Nov 2010 CA
0226026 Jun 1987 EP
0538060 Apr 1993 EP
630660 Dec 1994 EP
0807416 Nov 1997 EP
0950376 Oct 1999 EP
1188415 Mar 2002 EP
1312318 May 2003 EP
1774918 Apr 2007 EP
1932485 Jun 2008 EP
2044889 Apr 2009 EP
2044897 Apr 2009 EP
2095781 Sep 2009 EP
2098182 Sep 2009 EP
2181657 May 2010 EP
2226025 Sep 2010 EP
2229900 Sep 2010 EP
2238924 Oct 2010 EP
2238925 Oct 2010 EP
2238926 Oct 2010 EP
2238933 Oct 2010 EP
2248478 Nov 2010 EP
2248482 Nov 2010 EP
2253283 Nov 2010 EP
2272450 Jan 2011 EP
2277464 Jan 2011 EP
2292165 Mar 2011 EP
2343019 Jul 2011 EP
2468196 Jun 2012 EP
2505153 Oct 2012 EP
2469083 Apr 2009 GB
8401512 Apr 1984 WO
9314801 Aug 1993 WO
9404067 Mar 1994 WO
96010963 Apr 1996 WO
9636283 Nov 1996 WO
9733520 Sep 1997 WO
9742889 Nov 1997 WO
9916368 Apr 1999 WO
9922804 May 1999 WO
9929250 Jun 1999 WO
0032116 Jun 2000 WO
0032120 Jun 2000 WO
0108581 Feb 2001 WO
200149363 Jul 2001 WO
200207611 Jan 2002 WO
03034908 May 2003 WO
03071926 Sep 2003 WO
2004043275 May 2004 WO
2004054456 Jul 2004 WO
2004075930 Sep 2004 WO
2004075741 Sep 2004 WO
2005058409 Jun 2005 WO
2006019723 Feb 2006 WO
2006100658 Sep 2006 WO
2006110733 Oct 2006 WO
2007018458 Feb 2007 WO
2007095703 Aug 2007 WO
2007143200 Dec 2007 WO
2008015566 Feb 2008 WO
2008042005 Apr 2008 WO
2008077080 Jun 2008 WO
2008093313 Aug 2008 WO
2008103151 Aug 2008 WO
20080121294 Oct 2008 WO
2009036343 Mar 2009 WO
2010000047 Jan 2010 WO
20100141409 Dec 2010 WO
2011062768 May 2011 WO
Non-Patent Literature Citations (5)
Entry
European Office Action corresponding to counterpart Patent Application EP 15194026.9 dated Jan. 28, 2019.
Extended European Search Report corresponding to counterpart Int'l Appln. No. EP 15 19 4026.9, dated Mar. 10, 2016.
European Search Report No. 17179046.9 dated Nov. 10, 2014.
U.S. Appl. No. 14/740,353, filed Jun. 16, 2015; Specification and drawings attached (31 pp.).
European Office Action corresponding to counterpart Int'l Appln. No. EP 15194026.9 dated Aug. 18, 2017.
Related Publications (1)
Number Date Country
20170311982 A1 Nov 2017 US
Provisional Applications (1)
Number Date Country
62078479 Nov 2014 US
Continuations (1)
Number Date Country
Parent 14804779 Jul 2015 US
Child 15652636 US