Staple line reinforcement for surgical stapling apparatus

Information

  • Patent Grant
  • 11547407
  • Patent Number
    11,547,407
  • Date Filed
    Wednesday, February 17, 2021
    3 years ago
  • Date Issued
    Tuesday, January 10, 2023
    a year ago
Abstract
A loading unit includes a staple cartridge assembly, an anvil assembly, and an anvil hook assembly. The anvil assembly has an opening defined therethrough, and the anvil hook assembly includes an anvil hook disposed within the opening of the anvil assembly and a pivot pin extending through the anvil hook and the anvil assembly. The anvil hook is pivotable with respect to the anvil assembly about the pivot pin between a loading position and a loaded position. The loading unit may further include a surgical buttress assembly including a cartridge buttress releasably attached to the staple cartridge assembly, an anvil buttress releasably attachable to the anvil assembly by the anvil hook, and a connecting member interconnecting the cartridge and anvil buttresses.
Description
FIELD

This application is generally related to surgical stapling apparatus, and more particularly, to loading units including anvil buttress attachment assemblies for releasably securing surgical buttresses to the surgical stapling apparatus.


BACKGROUND

Surgical stapling apparatus are employed by surgeons to sequentially or simultaneously apply one or more rows staples to body tissue for the purpose of joining segments of body tissue together. Such apparatus generally include a pair of jaws between which the body tissue to be joined is placed. When the surgical stapling apparatus is actuated, or “fired”, firing bars contact staple drive members in one of the jaws. The staple drive members push the surgical staples through the body tissue and into an anvil in the opposite jaw which forms the staples. If body tissue is to be removed or separated, a knife blade can be provided in the jaws of the apparatus to cut the body tissue between the lines of staples.


Surgical supports, e.g., meshes or buttress materials, may be used in combination with surgical stapling apparatus to bridge, repair, and/or reinforce tissue defects within a patient. A clinician may manually attach the buttress materials to the surgical stapling apparatus in the operating room during a surgical procedure, or utilize a surgical stapling apparatus including buttress materials pre-installed thereon. The buttress material reinforces the staple or suture line as well as covers the juncture of the tissues to reduce leakage prior to healing.


SUMMARY

This disclosure generally relates to attachment of an anvil buttress material onto a loading unit of a surgical stapling apparatus having a pre-loaded cartridge buttress material. Anvil buttress attachment assemblies of the present disclosure are designed to make buttress material attachment in the operating room a simple, straightforward, and cost effective procedure.


In one aspect, the disclosure provides a loading unit including a staple cartridge assembly, an anvil assembly, and an anvil hook assembly. The anvil assembly has an opening defined therethrough, and the anvil hook assembly includes an anvil hook disposed within the opening of the anvil assembly and a pivot pin extending through the anvil hook and the anvil assembly. The anvil hook is pivotable with respect to the anvil assembly about the pivot pin between a loading position and a loaded position.


The opening of the anvil assembly may be defined in a distal portion of an anvil plate.


The anvil hook may include a body disposed within the opening of the anvil assembly and an arm extending from the body through a side of the opening open to a tissue facing surface of the anvil assembly. When the anvil hook is in the loading position, the arm may be disposed at a first angle with respect to the tissue facing surface of the anvil assembly and, when the anvil hook is in the loaded position, the arm may extend at a second angle with respect to the tissue facing surface of the anvil assembly.


The loading unit may further include a surgical buttress assembly including a cartridge buttress releasably attached to the staple cartridge assembly, an anvil buttress releasably attachable to the anvil assembly by the anvil hook, and a connecting member interconnecting the cartridge and anvil buttresses. The anvil buttress may include a cutout defined therethrough that is aligned with the opening of the anvil assembly such that the arm of the anvil hook extends through the cutout of the anvil buttress. Rotation of the anvil hook from the loading position to the loaded position may pull the anvil buttress distally and tension the anvil buttress against the anvil assembly.


The staple cartridge assembly may include a reload assembly including a staple cartridge. The cartridge buttress may be secured to the staple cartridge and the anvil buttress may overlie the cartridge buttress and be positionable against the anvil assembly. The connecting member of the surgical buttress assembly may be releasably secured to a tissue facing surface of the staple cartridge that is proximal of staple pockets defined in the tissue facing surface of the staple cartridge.


In another aspect, the disclosure provides for an anvil buttress attachment assembly including an anvil assembly and an anvil hook assembly. The anvil assembly has an opening defined therethrough, and the anvil hook assembly includes an anvil hook disposed within the opening of the anvil assembly and a pivot pin extending through the anvil hook and the anvil assembly. The anvil hook is pivotable with respect to the anvil assembly about the pivot pin between a loading position and a loaded position.


The opening of the anvil assembly may be defined in a distal portion of an anvil plate.


The anvil hook may include a body disposed within the opening of the anvil assembly and an arm extending from the body through a side of the opening open to a tissue facing surface of the anvil assembly. When the anvil hook is in the loading position, the arm may be disposed at a first angle with respect to the tissue facing surface of the anvil assembly and, when the anvil hook is in the loaded position, the arm may extend at a second angle with respect to the tissue facing surface of the anvil assembly.


The anvil buttress attachment assembly may further include an anvil buttress releasably attachable to the anvil assembly by the anvil hook. The anvil buttress may include a cutout defined therethrough that is aligned with the opening of the anvil assembly such that the arm of the anvil hook extends through the cutout of the anvil buttress. Rotation of the anvil hook from the loading position to the loaded position may pull the anvil buttress distally and tension the anvil buttress against the anvil assembly. The anvil buttress attachment assembly may further include a cartridge buttress coupled to the anvil buttress by a connecting member.


In yet another aspect, the disclosure provides an anvil buttress attachment assembly including an anvil assembly and an anvil hook. The anvil assembly has an opening defined therethrough, and the anvil hook is removably positionable within the opening defined in the anvil assembly. The anvil hook includes a body having an arm on a proximal end of the body that is biased in a proximal position to snap into a cavity of the anvil assembly when the anvil hook is loaded into the opening. The arm is deflectable in a distal direction to remove the anvil hook from the opening of the anvil assembly.


The opening of the anvil assembly may be defined in a distal portion of an anvil plate.


The anvil hook may include a lip extending distally from the body. When the body of the anvil hook is loaded into the opening of the anvil assembly, the lip may be positioned over a distal portion of the anvil assembly.


The anvil buttress attachment assembly may further include an anvil buttress releasably attachable to the anvil assembly by the anvil hook. The anvil buttress may include a cutout defined therethrough that is aligned with the opening defined in the anvil assembly. The lip of the anvil hook may hold the anvil buttress against the anvil assembly when the anvil hook is loaded into the opening of the anvil assembly.


The details of one or more aspects of the disclosure are set forth in the accompanying drawings and the description below. Other features, objects, and advantages of the techniques described in this disclosure will be apparent from the description and drawings, and from the claims.





BRIEF DESCRIPTION OF DRAWINGS


FIG. 1 is a perspective view of a surgical stapling apparatus in accordance with an embodiment of the disclosure;



FIG. 2 is an exploded, perspective view of a tool assembly of the surgical stapling apparatus of FIG. 1 in accordance with an aspect of the disclosure;



FIG. 3A is a bottom, perspective view of an anvil assembly of the tool assembly of FIG. 2, shown with an anvil hook in a loading position;



FIG. 3B is a side view of the anvil assembly of FIG. 3A;



FIG. 4A is a bottom, perspective view of an anvil assembly of the tool assembly of FIG. 2, shown with an anvil hook in a loaded position;



FIG. 4B is a side view of the anvil assembly of FIG. 4A;



FIG. 5 is a plan view of a surgical buttress assembly for use with the surgical stapling apparatus of FIG. 1;



FIG. 6 is a top, perspective view of a reload assembly including the surgical buttress assembly of FIG. 5 for use with a loading unit of the surgical stapling apparatus of FIG. 1 in accordance with an aspect of the disclosure;



FIG. 7 is a side view of the reload assembly of FIG. 6 disposed within the loading unit of the surgical stapling apparatus of FIG. 1, shown with the surgical buttress assembly attached to anvil and staple cartridge assemblies of the loading unit;



FIG. 8 is a perspective view of the reload assembly of FIG. 6 disposed within the loading unit of the surgical stapling apparatus of FIG. 1 prior to attaching an anvil buttress of the surgical buttress assembly onto an anvil assembly of the loading unit via an anvil buttress attachment assembly in accordance with an aspect of the disclosure;



FIG. 9A is a side view of the loading unit of FIG. 8, shown with the anvil buttress position against the anvil assembly and an anvil hook disposed in the loading position;



FIG. 9B is a close-up view of a distal portion of the anvil assembly of FIG. 9A;



FIG. 9C is a side, cross-sectional view of the loading unit of FIG. 9A;



FIG. 9D is a close-up view of a distal portion of the anvil assembly of FIG. 9C;



FIG. 9E is a top view of the anvil buttress and the anvil assembly of FIG. 9D;



FIG. 10A is a close-up view of a distal portion of the anvil assembly of FIG. 9A, shown with the anvil hook disposed in the loaded position and retaining the anvil buttress against the anvil assembly;



FIG. 10B is a close-up view of a distal portion of the anvil assembly of FIG. 9C, shown with the anvil hook disposed in the loaded position and retaining the anvil buttress against the anvil assembly;



FIG. 11 is a perspective view, with parts separated, of an anvil buttress attachment assembly in accordance with another aspect of the disclosure;



FIGS. 12A and 12B are perspective views of an anvil hook of the anvil buttress attachment assembly of FIG. 11;



FIG. 13 is a top view of an anvil buttress positioned over an anvil assembly of the anvil buttress attachment assembly of FIG. 11;



FIG. 14 is a top view of an anvil hook of the anvil buttress attachment assembly of FIG. 11 being positioned through the anvil buttress and the anvil assembly of FIG. 13;



FIGS. 15A and 15B are bottom and top views, respectively, of the anvil hook of FIG. 14 in a loaded position, with the anvil buttress and the anvil assembly shown in phantom; and



FIG. 16 is a close-up view of a distal portion of the anvil assembly with the anvil hook disposed in the loaded position and retaining the anvil buttress against the anvil assembly.





DETAILED DESCRIPTION

Aspects of this disclosure will now be described in detail with reference to the drawing figures wherein like reference numerals identify similar or identical elements. Throughout this description, the term “proximal” refers to a portion of a structure, or component thereof, that is closer to a user, and the term “distal” refers to a portion of the structure, or component thereof, that is farther from the user.


Referring now to FIG. 1, an exemplary surgical stapling apparatus or surgical stapler 1 is shown for use in stapling tissue in accordance with an aspect of this disclosure. The surgical stapling apparatus 1 generally includes a handle assembly 10, an elongate tubular body 20 extending distally from the handle assembly 10, and a loading unit 30 extending distally from the elongate tubular body 20. The loading unit 30 includes a housing portion 32 and a tool or jaw assembly 34 including first and second jaw members 34a, 34b. The first jaw member 34a and/or the second jaw members 34b is pivotable with respect to the housing portion 32 such that the tool assembly 34 is movable between an open position in which the first and second jaw members 34a, 34b are spaced apart with respect to each other, and a closed position in which the first and second jaw members 34a, 34b are substantially adjacent each other.


The handle assembly 10 includes a stationary handle member 12a, a movable handle member 12b, and a barrel portion 14. Actuation of the movable handle member 12b applies lines of staples 70 (FIG. 2) to tissue captured between the first and second jaw members 34a, 34b of the tool assembly 34. An articulation lever 16 is mounted on the forward end of the barrel portion 14 to facilitate articulation of the tool assembly 34. A rotatable member 18 is also mounted on the forward end of the barrel portion 14, adjacent the articulation lever 16. Rotation of the rotatable member 18 relative to the barrel portion 14 rotates the elongate tubular body 20 and the loading unit 30 relative to the handle assembly 10 so as to properly orient the tool assembly 34 relative to tissue to be stapled. A pair of knobs 19 is movably positionable along the barrel portion 14. The pair of knobs 19 is advanced distally to approximate or close the first and second jaw members 34a, 34b of the tool assembly 34 relative to each other, and retracted proximally to unapproximate or open the first and second jaw members 34a, 34b of the tool assembly 34 with respect to each other.


The loading unit 30 is a disposable loading unit (“DLU”) that is releasably secured to the elongated tubular body 20 and thus, replaceable with a new loading unit 30. The loading unit 30 may be a single use loading unit (“SULU”) that is used one time and then replaced to facilitate multiples uses of the surgical stapling apparatus 1 on a patient. For example, during a surgical procedure, the surgical stapling apparatus 1 can be used to staple and cut tissue, and the entire SULU is replaced after each staple and cut operation of the surgical stapling apparatus 1. The loading unit 30 may be a multi-use loading unit (“MULU”) that is re-useable a predetermined number of times. For example, during a surgical procedure, the surgical stapling apparatus 1 can be used to staple and cut tissue, and a reload assembly 31 (see e.g., FIG. 6) of the MULU is replaced after each staple and cut operation of the surgical stapling apparatus 1 a pre-determined number of times before the entire MULU needs to be replaced. Alternatively, the loading unit 30 may be permanently affixed to the elongated tubular body 20.


As shown in FIGS. 1 and 2, the first jaw member 34a of the tool assembly 34 includes an anvil assembly 40 and the second jaw member 34b of the tool assembly 34 includes a staple cartridge assembly 60. The anvil assembly 40 includes an anvil plate 42 and a cover plate 44 secured over the anvil plate 42. The anvil plate 42 has a central longitudinal slot 41 formed therein and a plurality of staple forming pockets or cavities 43 (FIG. 3A) defined in an inward or tissue facing surface thereof 46. As seen in FIGS. 3A and 3B, in conjunction with FIG. 2, the tissue facing surface 46 is substantially planar along the length having the staple forming pockets 43 defined therein, with a distal portion 42a of the anvil plate 42, which extends distal to the staple forming pockets 43, being angled outwardly or tapering towards an outer surface 48 of the anvil assembly 40. The distal portion 42a of the anvil plate 42 also extends distally beyond the cover plate 44 and includes an opening 45 defined therethrough which is operably coupled to an anvil hook assembly 50. The anvil hook assembly 50 includes an anvil swing hook 52 (also referred to herein as an anvil hook) and a pivot pin 54 pivotably coupling the anvil hook 52 to the anvil plate 42.


As shown in FIGS. 2-4B, the anvil hook 52 includes a body 52a positioned within the opening 45 of the anvil plate 42, and an arm 52b extending from the body 52a out through the opening 45 on the side of the anvil plate 42 including the tissue facing surface 46. The body 52a of the anvil hook 52 includes an aperture 53 extending transversely therethrough that is aligned with apertures 47 defined in longitudinal sides 42b of the anvil plate 42 for reception of the pivot pin 54 therethrough. The pivot pin 54 extends through the apertures 47 of the anvil plate 42 and through the aperture 53 of the anvil hook 52 to pivotably couple the anvil hook 52 to the anvil plate 42.


The anvil hook 52 is pivotable about the pivot pin 54 between an open or loading position, seen in FIGS. 3A and 3B, and a closed or loaded position, seen in FIGS. 4A and 4B. In the open position, the arm 52b of the anvil hook 52 extends outwardly in an upward direction through the opening 45 of the anvil plate 42 forming a first angle (e.g., a right or acute angle) with respect to the distal portion 42a of the anvil plate 42. In the closed position, the arm 52b of the anvil hook 52 extends outwardly in a distal direction forming a second angle with respect to the distal portion 42a of the anvil plate 42, which is smaller than the first angle, and is substantially aligned with the tissue facing surface 46 of the anvil plate 42.


With reference again to FIG. 2, the staple cartridge assembly 60 includes a cartridge carrier 62 defining an elongated support channel 61 configured and dimensioned to selectively receive and support a staple cartridge 64 therein. The staple cartridge 64 may be removably and/or replaceably attached to the cartridge carrier 62 by, for example, a snap-fit connection, a detent, a latch, among other types of connectors within the purview of those skilled in the art. The staple cartridge 64 includes a cartridge body 66 having an inward or tissue facing surface 68 defining staple pockets or retention slots 65 formed therein for receiving a plurality of fasteners or staples 70 and staple pushers 72. A central longitudinal slot 67 is formed in and extends along a substantial length of the cartridge body 66 to facilitate passage of a knife blade 82 of a drive assembly 80 therethrough.


The knife blade 82 is defined in a distal edge of a central wall portion 84a of an I-beam 84 that is operatively associated with the tool assembly 34. The central wall portion 84a of the I-beam 84 is slidably disposed between the anvil and staple cartridge assemblies 40, 60, with upper and lower rails 84b, 84c of the I-beam 84, respectively, supported in the anvil and staple cartridge assemblies 40, 60. The I-beam 84 is coupled to an elongated drive beam 86 which is configured to engage a drive member (not shown) of the elongated tubular body 20 (FIG. 1) of the surgical stapling apparatus 1 when the loading unit 30 is engaged therewith. The drive member imparts axial movement to the elongated drive beam 86 and thus, the I-beam 84, from the handle assembly 10. Accordingly, during operation of the surgical stapling apparatus 1, distal advancement of the I-beam 84 causes an actuation sled 74 to translate through the staple cartridge 64 and to advance cam wedges 76 of the actuation sled 74 into sequential contact with the staple pushers 72 which, in turn, cause the staple pushers 72 to translate vertically within the staple pockets 65 and urge the staples 70 from the staple pockets 65 towards the tissue facing surface 46 of the anvil plate 42 of the anvil assembly 40.


For a detailed description of the structure and function of exemplary surgical stapling apparatus, reference may be made to U.S. Pat. Nos. 6,241,139, 6,330,965, and 7,819,896, the entire contents of each of which are incorporated herein by reference. It should be appreciated that principles of this disclosure are equally applicable to surgical stapling apparatus having other configurations such as, for example, the types described in U.S. Pat. Nos. 5,964,394, 7,128,253, and 7,334,717, the entire contents of each of which are incorporated herein by reference. Accordingly, it should be understood that a variety of surgical stapling apparatus may be utilized with the techniques of this disclosure. For example, laparoscopic or open staplers, such as, for example, GIA™, Endo GIA™, TA™, and Endo TA™ staplers and/or linear and radial reloads with, for example, Tri-Staple™ technology, available through Medtronic (North Haven, Conn.) may be utilized with the anvil buttress attachment assemblies of this disclosure.


With reference now to FIG. 5, a surgical buttress assembly 100 for use with the loading unit 30 (FIG. 1) is shown. The surgical buttress assembly 100 includes a cartridge buttress 110 and an anvil buttress 120 interconnected by a connecting member 130. The cartridge buttress 110 includes a body portion 112 having a pair of distal recesses 113 defined in opposing longitudinal edges 112a of the body portion 112 about a distal end portion 110a of the cartridge buttress 110, and a tail portion 114 extending proximally from the body portion 112. The tail portion 114 has a smaller dimension (e.g., a smaller width and/or length) than the body portion 112. The anvil buttress 120 includes a body portion 122 having an opening or cutout 123 defined in the body portion 122 about a distal end portion 120a of the anvil buttress 120. The connecting member 130 extends from the tail portion 114 of the cartridge buttress 110 and a proximal end portion 120b of the anvil buttress 120. The connecting member 130 has a smaller dimension (e.g., a smaller width and/or length) than the cartridge and anvil buttresses 110, 120.


The cartridge and anvil buttresses 110, 120 (also referred to herein generally as surgical buttresses or buttress materials) are fabricated from biocompatible materials which are bioabsorbable or non-absorbable, natural or synthetic materials. It should be understood that any combination of natural, synthetic, bioabsorbable, and/or non-bioabsorbable materials may be used to form the cartridge and anvil buttresses 110, 120. The cartridge and anvil buttresses 110, 120 may be formed from the same material or different materials.


The cartridge and anvil buttresses 110, 120 may be porous, non-porous, or combinations thereof. Suitable porous structures include, for example, fibrous structures (e.g., knitted structures, woven structures, and non-woven structures) and/or foams (e.g., open or closed cell foams). Suitable non-porous structures include, for example, films. The cartridge and anvil buttresses 110, 120 described herein may be a single porous or non-porous layer, or include a plurality of layers including any combination of porous and non-porous layers. For example, the cartridge and/or anvil buttress may include multiple porous and non-porous layers that are stacked in an alternating manner. In another example, the cartridge and/or anvil buttress may be formed in a “sandwich-like” manner wherein the outer layers of the surgical buttress are porous and the inner layer(s) are non-porous, or vice versa. The cartridge and anvil buttresses 110, 120 may have the same or a different structure of layer(s).


Porous layer(s) in a surgical buttress may enhance the ability of the surgical buttress to absorb fluid, reduce bleeding, and/or seal a wound. Also, the porous layer(s) may allow for tissue ingrowth to fix the surgical buttress in place. Non-porous layer(s) in a surgical buttress may enhance the ability of the surgical buttress to resist tears and perforations during the manufacturing, shipping, handling, and/or stapling processes. Also, non-porous layer(s) may retard or prevent tissue ingrowth from surrounding tissues thereby acting as an adhesion barrier and preventing the formation of unwanted scar tissue.


The connecting member 130 is also fabricated from biocompatible materials, and may be formed from the same or different materials as the cartridge buttress 110 and/or the anvil buttress 120. In certain aspects, the surgical buttress assembly 100 is formed from a single sheet of material that is cut to shape. In other aspects, the connecting member 130 may be a suture, cord, strap, etc. secured to the cartridge and anvil buttresses 110, 120.


With reference to FIGS. 5 and 6, the body portion 112 of the cartridge buttress 110 is configured and dimensioned to overlie the tissue facing surface 68 of the staple cartridge 64 with the pair of distal recesses 113 aligned with a first pair of distal slots 63a formed in opposed sides of a distal portion 64a of the staple cartridge 64. The pair of distal recesses 113 of the cartridge buttress 110 and the first pair of distal slots 63a of the staple cartridge 64 are utilized together with a second pair of distal slots 63b to secure the distal end portion 110a of the cartridge buttress 110 to the distal portion 64a of the staple cartridge 64 via a first retention member 90a.


The tail portion 114 of the cartridge buttress 110 overlies the tissue facing surface 68 of the staple cartridge 64 proximal of the staple pockets 65 (FIG. 2) defined in the tissue facing surface 68. The connecting member 130 extends proximally from the tail portion 114 and is releasably secured between a pair of raised rails 78 of the staple cartridge 64 by a second retention member 90b. The staple cartridge 64 includes a first pair of proximal slots 63c formed in the raised rails 78 and a second pair of proximal slots 63d disposed proximal to the first pair of proximal slots 63c. The second retention member 90b is threaded through the first pair of proximal slots 63c such that the second retention member 90b extends across the connecting member 130 and then is positioned through the second pair of proximal slots 63d to secure the connecting member 130 and thus, the tail portion 114 of the cartridge buttress 110 to the staple cartridge 64. The connecting member 130 is then looped over itself such that the anvil buttress 120 overlies the cartridge buttress 110.


The first and/or second pairs of distal and/or proximal slots 63a-63d may have a circular or non-circular configuration dimensioned to retain portions of the respective first and second retention members 90a, 90b therein (e.g., frictionally engaging, pinching, or otherwise constricting the first and second retention members 90a, 90b) to maintain placement of the first and second retention members 90a, 90b across the distal portion 110a of the cartridge buttress 110 and the connecting member 130, respectively. The first pair of distal and proximal slots 63a, 63c is configured such that the first and second retention members 90a, 90b extend across a path of the knife blade 82 (FIG. 2).


The first and second retention members 90a, 90b are fabricated from biocompatible materials which are any combination of natural, synthetic, bioabsorbable, and/or non-bioabsorbable materials. Each of the first and second retention members 90a, 90b is a single continuous elongated structure, and may be in the form of a suture, thread, filament, tether, strap, band, line, wire, cable, etc. Alternatively, the first and second retention members 90a, 90b may be secured to the staple cartridge 64 via other attachment features or methods, such as chemical attachment features (e.g., adhesives), mechanical attachment features (e.g., mounting structures such as tabs or pins), and/or attachment methods (e.g., welding), to releasably secure the cartridge buttress 110 and/or the connecting member 130 to the staple cartridge 64.


As shown in FIGS. 5-7, the body portion 122 of the anvil buttress 120 is configured and dimensioned to overlie the tissue facing surface 46 of the anvil assembly 40, with the cutout 123 of the anvil buttress 120 aligned with the opening 45 defined in the anvil assembly 40 and the arm 52b of the anvil hook 52 extending through the cutout 123 in the closed position to secure the anvil buttress 120 to the anvil assembly 40. As the connecting member 130 is releasably secured to the staple cartridge 64 and looped towards the anvil assembly 40, the tool assembly 34 (FIG. 1) may open, close, and otherwise function (e.g., grasp and/or staple tissue) without putting stress on the second retention member 90b (e.g., the portion of the connecting member 130 disposed proximal of the second retention member 90 provides slack to the surgical buttress assembly 100 during movement of the anvil and/or staple cartridge assemblies 40, 60), and the attachment of the distal end portions 110a, 120a of the cartridge and anvil buttresses 110, 120 do not interfere with the function of the tool assembly 34 when the surgical buttress assembly 100 is loaded onto the loading unit 30.



FIG. 8 illustrates a loading unit 30 including the cartridge buttress 110 of the surgical buttress assembly 100 secured to the staple cartridge assembly 60, and the anvil buttress 120 freely disposed between the anvil and cartridge assemblies 40, 60. In aspects, the surgical buttress assembly 100 is pre-loaded (e.g., by the manufacturer) onto a reload assembly 31 (FIG. 6) with the cartridge buttress 110 secured to the staple cartridge 64 and the anvil buttress 120 free from attachment, and the reload assembly 31 is positioned within the loading unit 30. The loading unit 30 includes an anvil buttress retention assembly 2 for loading of the anvil buttress 120 onto the anvil assembly 40.


In a method of loading the anvil buttress 120 of the surgical buttress assembly 100 onto the anvil assembly 40 of the loading unit 30, in which the cartridge buttress 110 is already secured to the staple cartridge assembly 60, the body portion 122 of the anvil buttress 120 is positioned adjacent to the tissue facing surface 46 of the anvil assembly 40 with the anvil hook 52 of the anvil hook assembly 50 disposed in the open position, as shown in FIGS. 9A-9E. With the anvil hook 52 in the open position, the cutout 123 in the anvil buttress 120 is aligned with the opening 45 of the anvil plate 40, and the arm 52b of the anvil hook 52 extends through the cutout 123 of the anvil buttress 120. The anvil buttress 120 is substantially planar such that the body portion 122 of the anvil buttress 120 is positioned directly against the tissue facing surface 46 and the distal end portion 120a of the anvil buttress 120 is spaced from the distal portion 42a of the anvil plate 42.


As seen in FIGS. 9D and 9E, in the open position, the cutout 123 of the anvil buttress 120 is aligned with the anvil hook 52 such that the size (e.g., the length “L1”) of the cutout 123 is substantially the same as or just bigger than the size (e.g., the length “L2”) of the anvil hook 52 when the anvil hook 52 is disposed in the open position. Accordingly, once the anvil buttress 120 is positioned against the anvil plate 42, as described above, the arm 52b of the anvil hook 52 is rotated (e.g., pushed in a distal direction towards the distal portion 42a of the anvil assembly 40) such that the arm 52b of the anvil hook 52 engages the anvil buttress 120 (e.g., by interference fit) causing the anvil buttress 120 to move distally until the anvil hook 52 is in the closed position as shown in FIGS. 10A and 10B. In the closed position, the anvil buttress 120 is held under tension by the arm 52b of the anvil hook 52 against the anvil assembly 40, and the anvil hook 52 pulls the distal end portion 120a of the anvil buttress 120 against the distal portion 42a of the anvil plate 42. This tension holds the anvil buttress 120 firmly against the tissue facing surface 46 of the anvil assembly 40 during tissue manipulation and firing of the surgical stapling apparatus 1.


In operation, with the loading unit 30 loaded with both the cartridge and anvil buttresses 110, 120 of the surgical buttress assembly 100, as described above, the surgical stapling apparatus 1 is used in accordance with methods known by those skilled in the art. Once the anvil and staple cartridge assemblies 40, 60 are clamped onto tissue, the surgical stapling apparatus 1 is fired, thereby stapling the cartridge and anvil buttresses 110, 120 to the tissue.


During firing, the knife blade 68 of the I-beam 70 travels distally through the tool assembly 34 and substantially simultaneously cuts and divides the tissue and the surgical buttresses 110, 120 disposed between the rows of formed staples 70. As the first and second retention members 90a, 90b extend across the respective distal end portion 110a and tail portion 114 of the cartridge buttress 110, above the central longitudinal slot 67 of the staple cartridge assembly 60, the knife blade 68 also cuts through the second retention member 90b and then the first retention member 90a thereby freeing the cartridge buttress 110 from the staple cartridge assembly 60. The knife blade 68 also cuts through the anvil buttress 110 into the cutout 123 such that when firing is complete and the anvil and staple cartridge assemblies 40, 60 are unclamped, the cartridge and anvil buttresses 110, 120, which are now stapled to the tissue, pull away from the staple cartridge and anvil assemblies 60, 40, and the tool assembly 34 can be removed from the surgical site. The used reload assembly 31 may then be removed from the tool assembly 34 by removing the staple cartridge 64 from the staple cartridge assembly 60, and the anvil hook 52 may be returned to the open position by pushing the arm 52b of the anvil hook 52 proximally towards the staple cartridge assembly 60. In aspects, additional or replacement reload assemblies 31 including the pre-loaded cartridge buttress 110 may be secured to the loading unit 30, as needed or desired, and the anvil buttress 120 may be secured to the loading unit 30, as described above.


With reference now to FIG. 11, an anvil buttress retention system 3 in accordance with another aspect of this disclosure is shown. The anvil buttress retention system 3 includes a loading unit 230 including an anvil assembly 240, an anvil snap hook 250 (also referred to herein as an anvil hook), and a surgical buttress assembly 200. The anvil assembly 240 is substantially the same as the anvil assembly 140, except that the distal portion 242a of the anvil plate 242 defines an opening 245 therethrough that is configured to removable receive the anvil hook 250 therein. The opening 245 is stepped at the proximal and distal ends 245a, 245b thereof, with the portion of the opening 245 open to the tissue facing surface 246 of the anvil assembly 240 being larger than the portion of the opening 245 open to the outer surface 248 of the anvil assembly 240.


The surgical buttress assembly 200 is substantially the same as the surgical buttress assembly 100 described above, and includes a cartridge buttress 110 and a connecting member 120 (FIG. 5), and an anvil buttress 220. The anvil buttress 220 includes a distal end portion 220a that is sized and shaped mimic the size and shape of the distal end 242a of the anvil assembly 240, and defines a cutout 223 therein that corresponds to the size and shape of the opening 245 defined through the anvil assembly 240 (e.g., corresponding to the size and shape of the portion of the opening 245 open to the tissue facing surface 246 of the anvil assembly 240).


As shown in FIGS. 11-12B, the anvil hook 250 includes a body 252 sized and shaped to be received within the opening 245 of the anvil assembly 240. The body 252 has a tiered structure including a base tier 254 having a base surface 255 and a raised tier 256 having a raised surface 257, the base and raised surfaces 255, 257 stepped relative to each other on proximal and distal end portions 252a, 252b of the body 252 such that the base surface 255 extends proximally and distally beyond the raised surface 257. An intermediate wall 258 interconnects the base and raised surfaces 255, 257 at the proximal and distal end portions 252a, 252b of the body 252.


The raised tier 256 includes an arm 260 on the proximal end portion 252a of the body 252. The arm 260 includes a wall segment 262 disposed within a cavity 256a of the raised tier 256, and a protruding segment 264 extending proximally from the wall segment 262. A proximal end 264a of the protruding segment 264 is aligned with a proximal end 254a of the base tier 254. The arm 260 is biased in a proximal position, as see in FIGS. 12A and 12B, and is movable in a distal direction into the cavity 256a of the raised tier 256.


The anvil hook 250 includes a platform 266 coupled to (e.g., integrally formed with) the body 252. The platform 266 extends from the base tier 254 of the body 252 on a side opposed from the raised tier 256. The platform 266 includes a proximal portion 266a that is coterminous with the base tier 254 and a lip 268 that extends distally beyond the base tier 254. The base tier 254 includes a tapered wall 253 opposed from the platform 266 that defines an angled space between the base tier 254 and the platform 266.


In a method of loading the anvil buttress 220 onto the anvil assembly 240, the body portion 222 of the anvil buttress 220 is positioned adjacent to the tissue facing surface 246 of the anvil assembly 240 with the cutout 223 of the anvil buttress 220 aligned with the opening 245 defined through the anvil assembly 240, as shown in FIG. 13. As seen in FIG. 14, the anvil hook 250 is then aligned with the anvil assembly 240 with the raised tier 256 facing the anvil buttress 220. The anvil hook 250 is pushed through the cutout 223 of the anvil buttress 220 and into the opening 245 of the anvil assembly 240 until the raised tier 256 is aligned with an outer surface 248 of the anvil assembly 240 and the platform 266 of the anvil hook 250 extends over the anvil buttress 220 and the distal portion 242a of the anvil plate 242, as shown in FIGS. 15A and 15B. As the anvil hook 250 is pushed into the opening 245 of the anvil plate 242, the arm 260 engages or snaps into a cavity 245c of the anvil plate 242 defined in the proximal end 245a of the opening 245, the base surface 255 engages the anvil plate 242 on the proximal and distal ends 245a, 245b of the opening 245, and the lip 268 of the platform 266 is positioned against the anvil buttress 220 and the distal portion 242a of the anvil assembly 240 thereby securing the anvil hook 250 and the anvil buttress 220 to the anvil assembly 240. As shown in FIG. 16, with the anvil hook 250 in the loaded position within the anvil assembly 240, the anvil buttress 220 is loaded and the surgical stapling apparatus 1 is ready for use.


After the surgical stapling apparatus 1 is fired and the surgical buttress assembly 200 is stapled to tissue, the anvil hook 250 is removed from the loading unit 230 by pressing the arm 260 of the anvil hook 250 distally into the cavity 256a defined in the raised tier 256 and pushing the raised surface 257 towards the staple cartridge assembly 60 to pop the anvil hook 250 out of the anvil assembly 240. In an aspect, additional or replacement reload assemblies 31 including the pre-loaded cartridge buttress 110 may be secured to the loading unit 230, as needed or desired, and the anvil buttress 220 may be secured to the loading unit 230, as described above.


It should be understood that various aspects disclosed herein may be combined in different combinations than the combinations specifically presented in the description and accompanying drawings. It should also be understood that, depending on the example, certain acts or events of any of the processes or methods described herein may be performed in a different sequence, may be added, merged, or left out altogether (e.g., all described acts or events may not be necessary to carry out the techniques). In addition, while certain aspects of this disclosure are described as being performed by a single module or unit for purposes of clarity, it should be understood that the techniques of this disclosure may be performed by a combination of units or modules associated with, for example, a medical device.


While several aspects 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. It is to be understood, therefore, that this disclosure is not limited to the precise aspects described, and that various other changes and modifications may be effected by one skilled in the art without departing from the scope or spirit of this disclosure. Additionally, the elements and features shown and described in connection with certain aspects may be combined with the elements and features of certain other aspects without departing from the scope of this disclosure, and that such modifications and variation are also included within the scope of this disclosure. Therefore, the above description should not be construed as limiting, but merely as exemplifications of preferred embodiments or aspects. Thus the scope of the aspects should be determined by the appended claims and their legal equivalents, rather than by the examples given.

Claims
  • 1. A loading unit comprising: a staple cartridge assembly;an anvil assembly having an opening defined therethrough; andan anvil hook assembly including an anvil hook disposed within the opening of the anvil assembly and a pivot pin extending through the anvil hook and the anvil assembly such that the anvil hook is pivotable with respect to the anvil assembly about the pivot pin between a loading position and a loaded position.
  • 2. The loading unit according to claim 1, wherein the opening of the anvil assembly is defined in a distal portion of an anvil plate.
  • 3. The loading unit according to claim 1, wherein the anvil hook includes a body disposed within the opening of the anvil assembly and an arm extending from the body through a side of the opening open to a tissue facing surface of the anvil assembly.
  • 4. The loading unit according to claim 3, wherein, in the loading position, the arm is disposed at a first angle with respect to the tissue facing surface of the anvil assembly and in the loaded position, the arm extends at a second angle with respect to the tissue facing surface of the anvil assembly.
  • 5. The loading unit according to claim 3, further comprising: a surgical buttress assembly including a cartridge buttress releasably attached to the staple cartridge assembly, an anvil buttress releasably attachable to the anvil assembly by the anvil hook, and a connecting member interconnecting the cartridge and anvil buttresses.
  • 6. The loading unit according to claim 5, wherein the anvil buttress includes a cutout defined therethrough that is aligned with the opening of the anvil assembly, the arm of the anvil hook extending through the cutout of the anvil buttress, wherein rotation of the anvil hook from the loading position to the loaded position pulls the anvil buttress distally and tensions the anvil buttress against the anvil assembly.
  • 7. The loading unit according to claim 5, wherein the staple cartridge assembly includes a reload assembly including a staple cartridge, the cartridge buttress secured to the staple cartridge and the anvil buttress overlying the cartridge buttress and positionable against the anvil assembly.
  • 8. The loading unit according to claim 7, wherein the connecting member of the surgical buttress assembly is releasably secured to a tissue facing surface of the staple cartridge proximal of staple pockets defined in the tissue facing surface of the staple cartridge.
  • 9. An anvil buttress attachment assembly comprising: an anvil assembly having an opening defined therethrough; andan anvil hook assembly including an anvil hook disposed within the opening of the anvil assembly and a pivot pin extending through the anvil hook and the anvil assembly such that the anvil hook is pivotable with respect to the anvil assembly about the pivot pin between a loading position and a loaded position.
  • 10. The anvil buttress attachment assembly according to claim 9, wherein the opening of the anvil assembly is defined in a distal portion of an anvil plate.
  • 11. The anvil buttress attachment assembly according to claim 9, wherein the anvil hook includes a body disposed within the opening of the anvil assembly and an arm extending from the body through a side of the opening open to a tissue facing surface of the anvil assembly.
  • 12. The anvil buttress attachment assembly according to claim 11, wherein, in the loading position, the arm is disposed at a first angle with respect to the tissue facing surface of the anvil assembly and, in the loaded position, the arm extends at a second angle with respect to the tissue facing surface of the anvil assembly.
  • 13. The anvil buttress attachment assembly according to claim 11, further comprising: an anvil buttress releasably attachable to the anvil assembly by the anvil hook.
  • 14. The anvil buttress attachment assembly according to claim 13, wherein the anvil buttress includes a cutout defined therethrough that is aligned with the opening defined in the anvil assembly, the arm of the anvil hook extending through the cutout of the anvil buttress, wherein rotation of the anvil hook from the loading position to the loaded position pulls the anvil buttress distally and tensions the anvil buttress against the anvil assembly.
  • 15. The anvil buttress attachment assembly according to claim 13, further comprising a cartridge buttress coupled to the anvil buttress by a connecting member.
  • 16. An anvil buttress attachment assembly comprising: an anvil assembly having an opening defined therethrough; andan anvil hook removably positionable within the opening defined in the anvil assembly, the anvil hook including a body having an arm on a proximal end of the body that is biased in a proximal position to snap into a cavity of the anvil assembly when the anvil hook is loaded into the opening, the arm deflectable in a distal direction to remove the anvil hook from the opening of the anvil assembly.
  • 17. The anvil buttress attachment assembly according to claim 16, wherein the opening of the anvil assembly is defined in a distal portion of an anvil plate.
  • 18. The anvil buttress attachment assembly according to claim 16, wherein the anvil hook includes a lip extending distally from the body and wherein, when the body of the anvil hook is loaded into the opening of the anvil assembly, the lip is positioned over a distal portion of the anvil assembly.
  • 19. The anvil buttress attachment assembly according to claim 18, further comprising: an anvil buttress releasably attachable to the anvil assembly by the anvil hook.
  • 20. The anvil buttress attachment assembly according to claim 19, wherein the anvil buttress includes a cutout defined therethrough that is aligned with the opening defined in the anvil assembly, the lip of the anvil hook holding the anvil buttress against the anvil assembly when the anvil hook is loaded into the opening of the anvil assembly.
CROSS-REFERENCE TO RELATED APPLICATIONS

The present application claims the benefit of and priority to U.S. Provisional Patent Application Ser. No. 62/991,655, filed on Mar. 19, 2020, the entire content of which being hereby incorporated by reference.

US Referenced Citations (546)
Number Name Date Kind
3054406 Usher Sep 1962 A
3124136 Usher Mar 1964 A
3364200 Ashton et al. Jan 1968 A
3499591 Green Mar 1970 A
3797494 Zaffaroni Mar 1974 A
3939068 Wendt et al. Feb 1976 A
3948666 Kitanishi et al. Apr 1976 A
4064062 Yurko Dec 1977 A
4166800 Fong Sep 1979 A
4282236 Broom Aug 1981 A
4347847 Usher Sep 1982 A
4354628 Green Oct 1982 A
4416698 McCorsley, III Nov 1983 A
4429695 Green Feb 1984 A
4452245 Usher Jun 1984 A
4605730 Shalaby et al. Aug 1986 A
4626253 Broadnax, Jr. Dec 1986 A
4655221 Devereux Apr 1987 A
4834090 Moore May 1989 A
4838884 Dumican et al. Jun 1989 A
4927640 Dahlinder et al. May 1990 A
4930674 Barak Jun 1990 A
5002551 Linsky et al. Mar 1991 A
5014899 Presty et al. May 1991 A
5040715 Green et al. Aug 1991 A
5057334 Vail Oct 1991 A
5065929 Schulze et al. Nov 1991 A
5112496 Dhawan et al. May 1992 A
5162430 Rhee et al. Nov 1992 A
5205459 Brinkerhoff et al. Apr 1993 A
5263629 Trumbull et al. Nov 1993 A
5281197 Arias et al. Jan 1994 A
5307976 Olson et al. May 1994 A
5312023 Green et al. May 1994 A
5314471 Brauker et al. May 1994 A
5318221 Green et al. Jun 1994 A
5324775 Rhee et al. Jun 1994 A
5326013 Green et al. Jul 1994 A
5332142 Robinson et al. Jul 1994 A
5344454 Clarke et al. Sep 1994 A
5392979 Green et al. Feb 1995 A
5397324 Carroll et al. Mar 1995 A
5405072 Zlock et al. Apr 1995 A
5410016 Hubbell et al. Apr 1995 A
5425745 Green et al. Jun 1995 A
5441193 Gravener Aug 1995 A
5441507 Wilk Aug 1995 A
5443198 Viola et al. Aug 1995 A
5468253 Bezwada et al. Nov 1995 A
5484913 Stilwell et al. Jan 1996 A
5503638 Cooper et al. Apr 1996 A
5514379 Weissleder et al. May 1996 A
5542594 McKean et al. Aug 1996 A
5543441 Rhee et al. Aug 1996 A
5549628 Cooper et al. Aug 1996 A
5550187 Rhee et al. Aug 1996 A
5575803 Cooper et al. Nov 1996 A
5645915 Kranzler et al. Jul 1997 A
5653756 Clarke et al. Aug 1997 A
5683809 Freeman et al. Nov 1997 A
5690675 Sawyer et al. Nov 1997 A
5702409 Rayburn et al. Dec 1997 A
5752965 Francis et al. May 1998 A
5752974 Rhee et al. May 1998 A
5762256 Mastri et al. Jun 1998 A
5766188 Igaki Jun 1998 A
5769892 Kingwell Jun 1998 A
5782396 Mastri et al. Jul 1998 A
5799857 Robertson et al. Sep 1998 A
5810855 Rayburn et al. Sep 1998 A
5814057 Oi et al. Sep 1998 A
5819350 Wang Oct 1998 A
5833695 Yoon Nov 1998 A
5843096 Igaki et al. Dec 1998 A
5871135 Williamson IV et al. Feb 1999 A
5874500 Rhee et al. Feb 1999 A
5895412 Tucker Apr 1999 A
5895415 Chow et al. Apr 1999 A
5902312 Frater et al. May 1999 A
5908427 McKean et al. Jun 1999 A
5915616 Viola et al. Jun 1999 A
5931847 Bittner et al. Aug 1999 A
5957363 Heck Sep 1999 A
5964394 Robertson Oct 1999 A
5964774 McKean et al. Oct 1999 A
5997895 Narotam et al. Dec 1999 A
6019791 Wood Feb 2000 A
6030392 Dakov Feb 2000 A
6032849 Mastri et al. Mar 2000 A
6045560 McKean et al. Apr 2000 A
6063097 Oi et al. May 2000 A
6080169 Turtel Jun 2000 A
6093557 Pui et al. Jul 2000 A
6099551 Gabbay Aug 2000 A
6142933 Longo et al. Nov 2000 A
6149667 Hovland et al. Nov 2000 A
6152943 Sawhney Nov 2000 A
6155265 Hammerslag Dec 2000 A
6156677 Brown Reed et al. Dec 2000 A
6165201 Sawhney et al. Dec 2000 A
6179862 Sawhney Jan 2001 B1
6210439 Firmin et al. Apr 2001 B1
6214020 Mulhauser et al. Apr 2001 B1
6241139 Milliman et al. Jun 2001 B1
6258107 Balazs et al. Jul 2001 B1
6267772 Mulhauser et al. Jul 2001 B1
6270530 Eldridge et al. Aug 2001 B1
6273897 Dalessandro et al. Aug 2001 B1
6280453 Kugel et al. Aug 2001 B1
6299631 Shalaby Oct 2001 B1
6309569 Farrar et al. Oct 2001 B1
6312457 DiMatteo et al. Nov 2001 B1
6312474 Francis et al. Nov 2001 B1
6325810 Hamilton et al. Dec 2001 B1
6330965 Milliman et al. Dec 2001 B1
6399362 Pui et al. Jun 2002 B1
6436030 Rehil Aug 2002 B2
6454780 Wallace Sep 2002 B1
6461368 Fogarty et al. Oct 2002 B2
6500777 Wiseman et al. Dec 2002 B1
6503257 Grant et al. Jan 2003 B2
6514283 DiMatteo et al. Feb 2003 B2
6514534 Sawhney Feb 2003 B1
6517566 Hovland et al. Feb 2003 B1
6551356 Rousseau Apr 2003 B2
6566406 Pathak et al. May 2003 B1
6568398 Cohen May 2003 B2
6590095 Schleicher et al. Jul 2003 B1
6592597 Grant et al. Jul 2003 B2
6605294 Sawhney Aug 2003 B2
6610006 Amid et al. Aug 2003 B1
6627749 Kumar Sep 2003 B1
6638285 Gabbay Oct 2003 B2
6652594 Francis et al. Nov 2003 B2
6656193 Grant et al. Dec 2003 B2
6656200 Li et al. Dec 2003 B2
6669735 Pelissier Dec 2003 B1
6673093 Sawhney Jan 2004 B1
6677258 Carroll et al. Jan 2004 B2
6685714 Rousseau Feb 2004 B2
6702828 Whayne Mar 2004 B2
6703047 Sawhney et al. Mar 2004 B2
6704210 Myers Mar 2004 B1
6723114 Shalaby Apr 2004 B2
6726706 Dominguez Apr 2004 B2
6736823 Darois et al. May 2004 B2
6736854 Vadurro et al. May 2004 B2
6746458 Cloud Jun 2004 B1
6746869 Pui et al. Jun 2004 B2
6764720 Pui et al. Jul 2004 B2
6773458 Brauker et al. Aug 2004 B1
6818018 Sawhney Nov 2004 B1
6843252 Harrison et al. Jan 2005 B2
6896684 Monassevitch et al. May 2005 B2
6927315 Heinecke et al. Aug 2005 B1
6939358 Palacios et al. Sep 2005 B2
6946196 Foss Sep 2005 B2
6953139 Milliman et al. Oct 2005 B2
6959851 Heinrich Nov 2005 B2
7009034 Pathak et al. Mar 2006 B2
7025772 Gellman et al. Apr 2006 B2
7060087 DiMatteo et al. Jun 2006 B2
7087065 Ulmsten et al. Aug 2006 B2
7108701 Evens et al. Sep 2006 B2
7128253 Mastri et al. Oct 2006 B2
7128748 Mooradian et al. Oct 2006 B2
7134438 Makower et al. Nov 2006 B2
7141055 Abrams et al. Nov 2006 B2
7147138 Shelton, IV Dec 2006 B2
7160299 Baily Jan 2007 B2
7179268 Roy et al. Feb 2007 B2
7210810 Iversen et al. May 2007 B1
7214727 Kwon et al. May 2007 B2
7232449 Sharkawy et al. Jun 2007 B2
7241300 Sharkawy et al. Jul 2007 B2
7247338 Pui et al. Jul 2007 B2
7279322 Pui et al. Oct 2007 B2
7307031 Carroll et al. Dec 2007 B2
7308998 Mastri et al. Dec 2007 B2
7311720 Mueller et al. Dec 2007 B2
7328829 Arad et al. Feb 2008 B2
7334717 Rethy et al. Feb 2008 B2
7347850 Sawhney Mar 2008 B2
7377928 Zubik et al. May 2008 B2
7434717 Shelton, IV et al. Oct 2008 B2
7438209 Hess et al. Oct 2008 B1
7464849 Shelton, IV et al. Dec 2008 B2
7498063 Pui et al. Mar 2009 B2
7547312 Bauman et al. Jun 2009 B2
7559937 de la Torre et al. Jul 2009 B2
7571845 Viola Aug 2009 B2
7592418 Pathak et al. Sep 2009 B2
7594921 Browning Sep 2009 B2
7595392 Kumar et al. Sep 2009 B2
7604151 Hess et al. Oct 2009 B2
7611494 Campbell et al. Nov 2009 B2
7635073 Heinrich Dec 2009 B2
7645874 Saferstein et al. Jan 2010 B2
7649089 Kumar et al. Jan 2010 B2
7655288 Bauman et al. Feb 2010 B2
7662409 Masters Feb 2010 B2
7662801 Kumar et al. Feb 2010 B2
7665646 Prommersberger Feb 2010 B2
7666198 Suyker et al. Feb 2010 B2
7669747 Weisenburgh, II et al. Mar 2010 B2
7673782 Hess et al. Mar 2010 B2
7708180 Murray et al. May 2010 B2
7709631 Harris et al. May 2010 B2
7717313 Criscuolo et al. May 2010 B2
7722642 Williamson, IV et al. May 2010 B2
7735703 Morgan et al. Jun 2010 B2
7744627 Orban, III et al. Jun 2010 B2
7754002 Maase et al. Jul 2010 B2
7776060 Mooradian et al. Aug 2010 B2
7789889 Zubik et al. Sep 2010 B2
7793813 Bettuchi Sep 2010 B2
7799026 Schechter et al. Sep 2010 B2
7819896 Racenet Oct 2010 B2
7823592 Bettuchi et al. Nov 2010 B2
7824420 Eldridge et al. Nov 2010 B2
7845533 Marczyk et al. Dec 2010 B2
7845536 Viola et al. Dec 2010 B2
7846149 Jankowski Dec 2010 B2
7892247 Conston et al. Feb 2011 B2
7909224 Prommersberger Mar 2011 B2
7909837 Crews et al. Mar 2011 B2
7938307 Bettuchi May 2011 B2
7942890 D'Agostino et al. May 2011 B2
7950561 Aranyi May 2011 B2
7951166 Orban, III et al. May 2011 B2
7951248 Fallis et al. May 2011 B1
7967179 Olson et al. Jun 2011 B2
7988027 Olson et al. Aug 2011 B2
8011550 Aranyi et al. Sep 2011 B2
8011555 Tarinelli et al. Sep 2011 B2
8016177 Bettuchi et al. Sep 2011 B2
8016178 Olson et al. Sep 2011 B2
8025199 Whitman et al. Sep 2011 B2
8028883 Stopek Oct 2011 B2
8033483 Fortier et al. Oct 2011 B2
8033983 Chu et al. Oct 2011 B2
8038045 Bettuchi et al. Oct 2011 B2
8062330 Prommersberger et al. Nov 2011 B2
8062673 Figuly et al. Nov 2011 B2
8083119 Prommersberger Dec 2011 B2
8091756 Viola Jan 2012 B2
8123766 Bauman et al. Feb 2012 B2
8123767 Bauman et al. Feb 2012 B2
8127975 Olson et al. Mar 2012 B2
8133336 Kettlewell et al. Mar 2012 B2
8133559 Lee et al. Mar 2012 B2
8146791 Bettuchi et al. Apr 2012 B2
8152777 Campbell et al. Apr 2012 B2
8157149 Olson et al. Apr 2012 B2
8157151 Ingmanson et al. Apr 2012 B2
8167895 D'Agostino et al. May 2012 B2
8177797 Shimoji et al. May 2012 B2
8178746 Hildeberg et al. May 2012 B2
8192460 Orban, III et al. Jun 2012 B2
8201720 Hessler Jun 2012 B2
8210414 Bettuchi et al. Jul 2012 B2
8210453 Hull et al. Jul 2012 B2
8225799 Bettuchi Jul 2012 B2
8225981 Criscuolo et al. Jul 2012 B2
8231043 Tarinelli et al. Jul 2012 B2
8235273 Olson et al. Aug 2012 B2
8245901 Stopek Aug 2012 B2
8252339 Figuly et al. Aug 2012 B2
8252921 Vignon et al. Aug 2012 B2
8256654 Bettuchi et al. Sep 2012 B2
8257391 Orban, III et al. Sep 2012 B2
8276800 Bettuchi Oct 2012 B2
8286849 Bettuchi Oct 2012 B2
8308042 Aranyi Nov 2012 B2
8308045 Bettuchi et al. Nov 2012 B2
8308046 Prommersberger Nov 2012 B2
8312885 Bettuchi et al. Nov 2012 B2
8313014 Bettuchi Nov 2012 B2
8317790 Bell et al. Nov 2012 B2
8322590 Patel et al. Dec 2012 B2
8348126 Olson et al. Jan 2013 B2
8348130 Shah et al. Jan 2013 B2
8365972 Aranyi et al. Feb 2013 B2
8367089 Wan et al. Feb 2013 B2
8371491 Huitema et al. Feb 2013 B2
8371492 Aranyi et al. Feb 2013 B2
8371493 Aranyi et al. Feb 2013 B2
8372094 Bettuchi et al. Feb 2013 B2
8393514 Shelton, IV et al. Mar 2013 B2
8393517 Milo Mar 2013 B2
8408440 Olson et al. Apr 2013 B2
8408480 Hull et al. Apr 2013 B2
8413869 Heinrich Apr 2013 B2
8413871 Racenet et al. Apr 2013 B2
8418909 Kostrzewski Apr 2013 B2
8424742 Bettuchi Apr 2013 B2
8453652 Stopek Jun 2013 B2
8453904 Eskaros et al. Jun 2013 B2
8453909 Olson et al. Jun 2013 B2
8453910 Bettuchi et al. Jun 2013 B2
8464925 Hull et al. Jun 2013 B2
8470360 McKay Jun 2013 B2
8474677 Woodard, Jr. et al. Jul 2013 B2
8479968 Hodgkinson et al. Jul 2013 B2
8485414 Criscuolo et al. Jul 2013 B2
8496683 Prommersberger et al. Jul 2013 B2
8511533 Viola et al. Aug 2013 B2
8512402 Marczyk et al. Aug 2013 B2
8518440 Blaskovich et al. Aug 2013 B2
8529600 Woodard, Jr. et al. Sep 2013 B2
8540128 Shelton, IV et al. Sep 2013 B2
8540131 Swayze Sep 2013 B2
8551138 Orban, III et al. Oct 2013 B2
8556918 Bauman et al. Oct 2013 B2
8561873 Ingmanson et al. Oct 2013 B2
8579990 Priewe Nov 2013 B2
8584920 Hodgkinson Nov 2013 B2
8590762 Hess et al. Nov 2013 B2
8616430 Stopek et al. Dec 2013 B2
8617132 Golzarian et al. Dec 2013 B2
8631989 Aranyi et al. Jan 2014 B2
8646674 Schulte et al. Feb 2014 B2
8668129 Olson Mar 2014 B2
8678263 Viola Mar 2014 B2
8679137 Bauman et al. Mar 2014 B2
8684250 Bettuchi et al. Apr 2014 B2
8701958 Shelton, IV et al. Apr 2014 B2
8721703 Fowler May 2014 B2
8727197 Hess et al. May 2014 B2
8757466 Olson et al. Jun 2014 B2
8789737 Hodgkinson et al. Jul 2014 B2
8814888 Sgro Aug 2014 B2
8820606 Hodgkinson Sep 2014 B2
8827133 Shelton, IV et al. Sep 2014 B2
8857694 Shelton, IV et al. Oct 2014 B2
8864009 Shelton, IV et al. Oct 2014 B2
8870050 Hodgkinson Oct 2014 B2
8920443 Hiles et al. Dec 2014 B2
8920444 Hiles et al. Dec 2014 B2
8939344 Olson et al. Jan 2015 B2
8956390 Shah et al. Feb 2015 B2
8967448 Carter et al. Mar 2015 B2
9005243 Stopek et al. Apr 2015 B2
9010606 Aranyi et al. Apr 2015 B2
9010608 Casasanta, Jr. et al. Apr 2015 B2
9010609 Carter et al. Apr 2015 B2
9010610 Hodgkinson Apr 2015 B2
9010612 Stevenson et al. Apr 2015 B2
9016543 Stopek et al. Apr 2015 B2
9016544 Hodgkinson et al. Apr 2015 B2
9027817 Milliman et al. May 2015 B2
9044227 Shelton, IV et al. Jun 2015 B2
9055944 Hodgkinson et al. Jun 2015 B2
9084602 Gleiman Jul 2015 B2
9107665 Hodgkinson et al. Aug 2015 B2
9107667 Hodgkinson Aug 2015 B2
9113871 Milliman et al. Aug 2015 B2
9113873 Marczyk et al. Aug 2015 B2
9113885 Hodgkinson et al. Aug 2015 B2
9113893 Sorrentino et al. Aug 2015 B2
9161753 Prior Oct 2015 B2
9161757 Bettuchi Oct 2015 B2
9186140 Hiles et al. Nov 2015 B2
9186144 Stevenson et al. Nov 2015 B2
9192378 Aranyi et al. Nov 2015 B2
9192379 Aranyi et al. Nov 2015 B2
9192380 Racenet et al. Nov 2015 B2
9192383 Milliman Nov 2015 B2
9192384 Bettuchi Nov 2015 B2
9198660 Hodgkinson Dec 2015 B2
9198663 Marczyk et al. Dec 2015 B1
9204881 Penna Dec 2015 B2
9220504 Viola et al. Dec 2015 B2
9226754 D'Agostino et al. Jan 2016 B2
9237892 Hodgkinson Jan 2016 B2
9237893 Carter et al. Jan 2016 B2
9277922 Carter et al. Mar 2016 B2
9295466 Hodgkinson et al. Mar 2016 B2
9326768 Shelton, IV May 2016 B2
9326773 Casasanta, Jr. et al. May 2016 B2
9328111 Zhou et al. May 2016 B2
9345479 Racenet et al. May 2016 B2
9351729 Orban, III et al. May 2016 B2
9351731 Carter et al. May 2016 B2
9351732 Hodgkinson May 2016 B2
9358005 Shelton, IV et al. Jun 2016 B2
9364229 D'Agostino et al. Jun 2016 B2
9364234 Stopek et al. Jun 2016 B2
9386988 Baxter, III et al. Jul 2016 B2
9402627 Stevenson et al. Aug 2016 B2
9414839 Penna Aug 2016 B2
9433412 Bettuchi et al. Sep 2016 B2
9433413 Stopek Sep 2016 B2
9433420 Hodgkinson Sep 2016 B2
9445812 Olson et al. Sep 2016 B2
9445817 Bettuchi Sep 2016 B2
9463260 Stopek Oct 2016 B2
9486215 Olson et al. Nov 2016 B2
9492170 Bear et al. Nov 2016 B2
9504470 Milliman Nov 2016 B2
9517164 Vitaris et al. Dec 2016 B2
9572576 Hodgkinson et al. Feb 2017 B2
9585657 Shelton, IV et al. Mar 2017 B2
9597077 Hodgkinson Mar 2017 B2
9610080 Whitfield et al. Apr 2017 B2
9622745 Ingmanson et al. Apr 2017 B2
9629626 Soltz et al. Apr 2017 B2
9636850 Stopek et al. May 2017 B2
9655620 Prescott et al. May 2017 B2
9675351 Hodgkinson et al. Jun 2017 B2
9681936 Hodgkinson et al. Jun 2017 B2
9687262 Rousseau et al. Jun 2017 B2
9693772 Ingmanson et al. Jul 2017 B2
9708184 Chan et al. Jul 2017 B2
9770245 Swayze et al. Sep 2017 B2
9775617 Carter et al. Oct 2017 B2
9775618 Bettuchi et al. Oct 2017 B2
9782173 Mozdzierz Oct 2017 B2
9844378 Casasanta et al. Dec 2017 B2
9918713 Zergiebel et al. Mar 2018 B2
9931116 Racenet et al. Apr 2018 B2
10022125 Stopek et al. Jul 2018 B2
10098639 Hodgkinson Oct 2018 B2
10111659 Racenet et al. Oct 2018 B2
10154840 Viola et al. Dec 2018 B2
20020091397 Chen Jul 2002 A1
20020151911 Gabbay Oct 2002 A1
20030065345 Weadock Apr 2003 A1
20030078209 Schmidt Apr 2003 A1
20030083676 Wallace May 2003 A1
20030125676 Swenson et al. Jul 2003 A1
20030181927 Wallace Sep 2003 A1
20030208231 Williamson et al. Nov 2003 A1
20040092912 Jinno et al. May 2004 A1
20040107006 Francis et al. Jun 2004 A1
20040131418 Budde et al. Jul 2004 A1
20040254590 Hoffman et al. Dec 2004 A1
20040260315 Dell et al. Dec 2004 A1
20050002981 Lahtinen et al. Jan 2005 A1
20050006429 Wales et al. Jan 2005 A1
20050021085 Abrams et al. Jan 2005 A1
20050059996 Bauman et al. Mar 2005 A1
20050059997 Bauman et al. Mar 2005 A1
20050070929 Dalessandro et al. Mar 2005 A1
20050118435 DeLucia et al. Jun 2005 A1
20050149073 Arani et al. Jul 2005 A1
20050283256 Sommerich et al. Dec 2005 A1
20060008505 Brandon Jan 2006 A1
20060121266 Fandel et al. Jun 2006 A1
20060173470 Oray et al. Aug 2006 A1
20060190027 Downey Aug 2006 A1
20070034669 de la Torre et al. Feb 2007 A1
20070203510 Bettuchi Aug 2007 A1
20070243227 Gertner Oct 2007 A1
20070246505 Pace-Floridia et al. Oct 2007 A1
20080009811 Cantor Jan 2008 A1
20080029570 Shelton et al. Feb 2008 A1
20080082126 Murray et al. Apr 2008 A1
20080140115 Stopek Jun 2008 A1
20080169328 Shelton Jul 2008 A1
20080169332 Shelton et al. Jul 2008 A1
20080169333 Shelton et al. Jul 2008 A1
20080216855 Nasca Sep 2008 A1
20080220047 Sawhney et al. Sep 2008 A1
20080290134 Bettuchi et al. Nov 2008 A1
20090001121 Hess et al. Jan 2009 A1
20090001130 Hess et al. Jan 2009 A1
20090031842 Kawai et al. Feb 2009 A1
20090206125 Huitema et al. Aug 2009 A1
20090206126 Huitema et al. Aug 2009 A1
20090206139 Hall et al. Aug 2009 A1
20090206141 Huitema et al. Aug 2009 A1
20090206142 Huitema et al. Aug 2009 A1
20090218384 Aranyi Sep 2009 A1
20090277944 Dalessandro et al. Nov 2009 A9
20100016855 Ramstein et al. Jan 2010 A1
20100016888 Calabrese et al. Jan 2010 A1
20100087840 Ebersole et al. Apr 2010 A1
20100147921 Olson Jun 2010 A1
20100147922 Olson Jun 2010 A1
20100174253 Cline et al. Jul 2010 A1
20100203151 Hiraoka Aug 2010 A1
20100243707 Olson et al. Sep 2010 A1
20100331859 Omori Dec 2010 A1
20110034910 Ross et al. Feb 2011 A1
20110089220 Ingmanson et al. Apr 2011 A1
20110125138 Malinouskas et al. May 2011 A1
20110166673 Patel et al. Jul 2011 A1
20110215132 Aranyi Sep 2011 A1
20110293690 Griffin et al. Dec 2011 A1
20120080336 Shelton, IV et al. Apr 2012 A1
20120197272 Oray et al. Aug 2012 A1
20120241491 Aldridge et al. Sep 2012 A1
20120241493 Baxter, III et al. Sep 2012 A1
20120253298 Henderson et al. Oct 2012 A1
20130153636 Shelton, IV et al. Jun 2013 A1
20130153641 Shelton, IV et al. Jun 2013 A1
20130256380 Schmid et al. Oct 2013 A1
20140048580 Merchant et al. Feb 2014 A1
20140131418 Kostrzewski May 2014 A1
20140224686 Aronhalt et al. Aug 2014 A1
20140239047 Hodgkinson Aug 2014 A1
20150041347 Hodgkinson Feb 2015 A1
20150133995 Shelton, IV et al. May 2015 A1
20150157321 Zergiebel et al. Jun 2015 A1
20150209045 Hodgkinson et al. Jul 2015 A1
20150231409 Racenet et al. Aug 2015 A1
20150327864 Hodgkinson et al. Nov 2015 A1
20160022268 Prior Jan 2016 A1
20160045200 Milliman Feb 2016 A1
20160100834 Viola et al. Apr 2016 A1
20160106430 Carter et al. Apr 2016 A1
20160128694 Baxter, III et al. May 2016 A1
20160157857 Hodgkinson et al. Jun 2016 A1
20160174988 D'Agostino et al. Jun 2016 A1
20160206315 Olson Jul 2016 A1
20160220257 Casasanta et al. Aug 2016 A1
20160249923 Hodgkinson et al. Sep 2016 A1
20160270793 Carter et al. Sep 2016 A1
20160310143 Bettuchi Oct 2016 A1
20160338704 Penna Nov 2016 A1
20160367252 Olson et al. Dec 2016 A1
20160367253 Hodgkinson Dec 2016 A1
20160367257 Stevenson et al. Dec 2016 A1
20170042540 Olson et al. Feb 2017 A1
20170049452 Milliman Feb 2017 A1
20170119390 Schellin et al. May 2017 A1
20170150967 Hodgkinson et al. Jun 2017 A1
20170172575 Hodgkinson Jun 2017 A1
20170231629 Stopek et al. Aug 2017 A1
20170238931 Prescott et al. Aug 2017 A1
20170281328 Hodgkinson et al. Oct 2017 A1
20170296188 Ingmanson et al. Oct 2017 A1
20170354415 Casasanta, Jr. et al. Dec 2017 A1
20180125491 Aranyi May 2018 A1
20180140301 Milliman May 2018 A1
20180168654 Hodgkinson et al. Jun 2018 A1
20180214147 Merchant et al. Aug 2018 A1
20180229054 Racenet et al. Aug 2018 A1
20180250000 Hodgkinson et al. Sep 2018 A1
20180256164 Aranyi Sep 2018 A1
20180296214 Hodgkinson et al. Oct 2018 A1
20180310937 Stopek et al. Nov 2018 A1
20190021734 Hodgkinson Jan 2019 A1
20190059878 Racenet et al. Feb 2019 A1
20190083087 Viola et al. Mar 2019 A1
Foreign Referenced Citations (17)
Number Date Country
2282761 Sep 1998 CA
1602563 Mar 1950 DE
19924311 Nov 2000 DE
0327022 Aug 1989 EP
0594148 Apr 1994 EP
2491867 Aug 2012 EP
2000166933 Jun 2000 JP
2002202213 Jul 2002 JP
2007124166 May 2007 JP
2010214132 Sep 2010 JP
9005489 May 1990 WO
9516221 Jun 1995 WO
9838923 Sep 1998 WO
9926826 Jun 1999 WO
0010456 Mar 2000 WO
0016684 Mar 2000 WO
2010075298 Jul 2010 WO
Non-Patent Literature Citations (173)
Entry
Australian Examination Report No. 1 corresponding to AU 2014200793 dated Sep. 2, 2017.
Extended European Search Report corresponding to EP 17 17 8528.0 dated Oct. 13, 2017.
Australian Examination Report No. 1 corresponding to AU 2013234420 dated Oct. 24, 2017.
Japanese Office Action corresponding to JP 2013-175379 dated Oct. 20, 2017.
Japanese Office Action corresponding to JP 2013-147701 dated Oct. 27, 2017.
Extended European Search Report corresponding to EP 17 17 5656.2 dated Nov. 7, 2017.
Japanese Office Action corresponding to JP 2014-009738 dated Nov. 14, 2017.
European Office Action corresponding to EP 13 17 3986.4 dated Nov. 29, 2017.
Japanese Office Action corresponding to JP 2017-075975 dated Dec. 4, 2017.
European Office Action corresponding to EP 13 19 7958.5 dated Dec. 11, 2017.
Chinese First Office Action corresponding to Patent Application CN 201410588811.8 dated Dec. 5, 2017.
European Office Action corresponding to Patent Application EP 16 16 6367.9 dated Dec. 11, 2017.
Chinese First Office Action corresponding to Patent Application CN 201610279682.3 dated Jan. 10, 2018.
Japanese Office Action corresponding to Patent Application JP 2013-154561 dated Jan. 15, 2018.
Australian Examination Report No. 1 corresponding to Patent Application AU 2017225037 dated Jan. 23, 2018.
Japanese Office Action corresponding to Patent Application JP 2013-229471 dated May 1, 2018.
Canadian Office Action corresponding to Patent Application CA 2,790,743 dated May 14, 2018.
European Office Action corresponding to Patent Application EP 14 15 7195.0 dated Jun. 12, 2018.
Extended European Search Report corresponding to Patent Application EP 12196912.5 dated Feb. 1, 2016.
Chinese Second Office Action corresponding to Patent Application CN 201610279682.3 dated Aug. 8, 2018.
Chinese Second Office Action corresponding to Patent Application CN 201410588811.8 dated Aug. 27, 2018.
Extended European Search Report corresponding to Patent Application EP 18160809.2 dated Sep. 18, 2018.
Extended European Search Report corresponding to Patent Application EP 18192317.8 dated Dec. 20, 2018.
Extended European Search Report corresponding to Patent Application EP 18190154.7 dated Feb. 4, 2019.
European Office Action corresponding to EP 14 17 2681.0 dated May 13, 2016.
Extended European Search Report corresponding to EP 16 15 3647.9 dated Jun. 3, 2016.
Chinese Office Action corresponding to CN 201210545228 dated Jun. 29, 2016.
Japanese Office Action corresponding to JP 2012-250058 dated Jun. 29, 2016.
European Office Action corresponding to EP 14 15 7997.9 dated Jun. 29, 2016.
Canadian Office Action corresponding to CA 2,712,617 dated Jun. 30, 2016.
Chinese First Office Action corresponding to CN 2013103036903 dated Jun. 30, 2016.
Australian Patent Examination Report No. 1 corresponding to AU 2012250278 dated Jul. 10, 2016.
Australian Patent Examination Report No. 1 corresponding to AU 2012244382 dated Jul. 10, 2016.
Japanese Office Action corresponding to 2012-255242 dated Jul. 26, 2016.
Japanese Office Action corresponding to JP 2012-268668 dated Jul. 27, 2016.
European Office Action corresponding to EP 14 15 2060.1 dated Aug. 4, 2016.
European Office Action corresponding to EP 12 16 5609.4 dated Aug. 5, 2016.
European Office Action corresponding to EP 15 15 2392.5 dated Aug. 8, 2016.
Japanese Office Action corresponding to JP 2013-003624 dated Aug. 25, 2016.
Australian Patent Examination Report No. 1 corresponding to AU 2012261752 dated Sep. 6, 2016.
Japanese Office Action corresponding to JP 2014-252703 dated Sep. 26, 2016.
European Office Action corresponding to EP 12 19 8776.2 dated Sep. 12, 2016.
Japanese Office Action corresponding to JP 2013-000321 dated Sep. 13, 2016.
Chinese Second Office Action corresponding to CN 201310353628.5 dated Sep. 26, 2016.
European Office Action corresponding to EP 12 15 2541.4 dated Sep. 27, 2016.
Australian Patent Examination Report No. 1 corresponding to AU 2012268923 dated Sep. 28, 2016.
Chinese First Office Action corresponding to CN 2013107068710 dated Dec. 16, 2016.
Chinese First Office Action corresponding to CN 201310646606.8 dated Dec. 23, 2016.
Japanese Office Action corresponding to JP 2013-000321 dated Jan. 4, 2017.
Extended European Search Report corresponding to EP 16 16 6367.9 dated Jan. 16, 2017.
Australian Examination Report No. 1 corresponding to AU 2013206777 dated Feb. 1, 2017.
Chinese Second Office Action corresponding to CN 2013103036903 dated Feb. 23, 2017.
Japanese Office Action corresponding to JP 2013-175379 dated Mar. 1, 2017.
Chinese First Office Action corresponding to CN 201410028462.4 dated Mar. 2, 2017.
Chinese First Office Action corresponding to CN 201410084070 dated Mar. 13, 2017.
Extended European Search Report corresponding to EP 16 19 6549.6 dated Mar. 17, 2017.
Japanese Office Action corresponding to JP 2013-147701 dated Mar. 21, 2017.
Australian Examination Report No. 1 corresponding to AU 2013206804 dated Mar. 21, 2017.
Australian Examination Report No. 1 corresponding to AU 2013211499 dated May 4, 2017.
Australian Examination Report No. 1 corresponding to AU 2014201008 dated May 23, 2017.
European Office Action corresponding to EP 15 17 4146.9 dated May 15, 2017.
Japanese Office Action corresponding to JP 2013-154561 dated May 23, 2017.
European Office Action corresponding to EP 12 19 4784.0 dated May 29, 2017.
Japanese Office Action corresponding to JP 2013-169083 dated May 31, 2017.
Australian Examination Report No. 1 corresponding to AU 2013213767 dated Jun. 29, 2017.
Australian Examination Report No. 2 corresponding to AU 2012261752 dated Jul. 7, 2017.
Australian Examination Report No. 1 corresponding to AU 2013266989 dated Jul. 10, 2017.
Extended European Search Report corresponding to EP 14 15 3609.4 dated Jul. 14, 2017.
Australian Examination Report No. 1 corresponding to AU 2013234418 dated Jul. 14, 2017.
Extended European Search Report corresponding to EP 14 15 3610.2 dated Jul. 17, 2017.
Australian Examination Report No. 1 corresponding to AU 2014200109 dated Jul. 20, 2017.
Australian Examination Report No. 1 corresponding to AU 2014200074 dated Jul. 20, 2017.
Japanese Office Action corresponding to JP 2013-250857 dated Aug. 17, 2017.
Japanese Office Action corresponding to JP 2013-229471 dated Aug. 17, 2017.
Extended European Search Report corresponding to EP 14 16 9739.1, completed Aug. 19, 2014 and dated Aug. 29, 2014; (7 pp).
Extended European Search Report corresponding to EP 14 15 7997.9, completed Sep. 9, 2014 and dated Sep. 17, 2014; (8 pp).
Extended European Search Report corresponding to EP 14 16 8904.2, completed Sep. 10, 2014 and dated Sep. 18, 2014; (8 pp).
Extended European Search Report corresponding to EP 13 19 4995.0, completed Jun. 5, 2014 and dated Oct. 13, 2014; (10 pp).
Extended European Search Report corresponding to EP 13 15 4571.7, completed Oct. 10, 2014 and dated Oct. 20, 2014; (8 pp).
Extended European Search Report corresponding to EP 14 18 1125.7, completed Oct. 16, 2014 and dated Oct. 24, 2014; (7 pp).
Extended European Search Report corresponding to EP 14 18 1127.3, completed Oct. 16, 2014 and dated Nov. 10, 2014; (8 pp).
Extended European Search Report corresponding to EP 14 19 0419.3, completed Mar. 24, 2015 and dated Mar. 30, 2015; (6 pp).
European Office Action corresponding to EP 12 198 776.2 dated Apr. 7, 2015.
European Office Action corresponding to EP 13 156 297.7 dated Apr. 10, 2015.
Australian Examination Report No. 1 corresponding to AU 2011250822 dated May 18, 2015.
European Office Action corresponding to EP 12 186 175.1 dated Jun. 1, 2015.
Chinese Office Action corresponding to CN 201010517292.8 dated Jun. 2, 2015.
Extended European Search Report corresponding to EP 14 17 4814.5 dated Jun. 9, 2015.
Australian Examination Report No. 1 corresponding to AU 2014200584 dated Jun. 15, 2015.
European Office Action corresponding to EP 13 180 881.8 dated Jun. 19, 2015.
European Office Action corresponding to EP 14 157 195.0 dated Jul. 2, 2015.
Extended European Search Report corresponding to EP 12 19 6902.6 dated Aug. 6, 2015.
Extended European Search Report corresponding to EP 14 15 2060.1 dated Aug. 14, 2015.
Chinese Office Action corresponding to CN 201210129787.2 dated Aug. 24, 2015.
Canadian Office Action corresponding to CA 2,665,206 dated Nov. 19, 2013.
Chinese Notification of Reexamination corresponding to CN 201010517292.8 dated Jun. 2, 2015.
Japanese Office Action corresponding to JP 2014-216989 dated Sep. 11, 2015.
Canadian First Office Action corresponding to CA 2,686,105 dated Sep. 17, 2015.
Japanese Office Action corresponding to JP 2012-040188 dated Oct. 21, 2015.
European Communication corresponding to EP 13 17 6895.4 dated Nov. 5, 2015.
Chinese First Office Action corresponding to CN 201210544552 dated Nov. 23, 2015.
Chinese First Office Action corresponding to CN 201210545228 dated Nov. 30, 2015.
Extended European Search Report corresponding to EP 15 18 0491.1 dated Dec. 9, 2015.
Extended European Search Report corresponding to EP 15 18 3819.0 dated Dec. 11, 2015.
Canadian Office Action corresponding to CA 2,697,819 dated Jan. 6, 2016.
Canadian Office Action corresponding to CA 2,696,419 dated Jan. 14, 2016.
European Office Action corresponding to EP 12 19 8776.2 dated Jan. 19, 2016.
Extended European Search Report corresponding to EP 15 17 4146.9 dated Jan. 20, 2016.
Chinese First Office Action corresponding to CN 201310353628.5 dated Jan. 25, 2016.
Extended European Search Report corresponding to EP 12 19 6912.5 dated Feb. 1, 2016.
Japanese Office Action corresponding to JP 2012-098903 dated Feb. 22, 2016.
Extended European Search Report corresponding to EP 12 19 8753.1 dated Feb. 24, 2016.
Chinese First Office Action corresponding to CN 201410449019.4 dated Mar. 30, 2016.
Extended European Search Report corresponding to EP 16 15 0232.3 dated Apr. 12, 2016.
European Office Action corresponding to EP 11 18 3256.4 dated Apr. 20, 2016.
Australian Examination Report No. 1 corresponding to AU 2012244169 dated May 10, 2016.
European Office Action corresponding to EP 10 25 0715.9 dated May 12, 2016.
Chinese First Office Action corresponding to CN 201410778512.0 dated May 13, 2016.
Australian Examination Report No. 1 corresponding to AU 2012227358 dated May 16, 2016.
Japanese Office Action corresponding to JP 2012-040188 dated May 17, 2016.
Australian Examination Report No. 1 corresponding to AU 2012244380 dated May 20, 2016.
Australian Examination Report No. 1 corresponding to AU 2014227480 dated May 21, 2016.
Australian Examination Report No. 1 corresponding to AU 2012254977 dated May 30, 2016.
European Search Report corresponding to EP 06 00 4598, completed Jun. 22, 2006; (2 pp).
European Search Report corresponding to EP 06 01 6962.0, completed Jan. 3, 2007 and dated Jan. 11, 2007; (10 pp).
International Search Report corresponding to International Application No. PCT/US2005/036740, completed Feb. 20, 2007 and dated Mar. 23, 2007; (8 pp).
International Search Report corresponding to International Application No. PCT/US2007/022713, completed Apr. 21, 2008 and dated May 15, 2008; (1 p).
International Search Report corresponding to International Application No. PCT/US2008/002981, completed Jun. 9, 2008 and dated Jun. 26, 2008; (2 pp).
European Search Report corresponding to EP 08 25 1779, completed Jul. 14, 2008 and dated Jul. 23, 2008; (5 pp).
European Search Report corresponding to EP 08 25 1989.3, completed Mar. 11, 2010 and dated Mar. 24, 2010; (6 pp).
European Search Report corresponding to EP 10 25 0639.1, completed Jun. 17, 2010 and dated Jun. 28, 2010; (7 pp).
European Search Report corresponding to EP 10 25 0715.9, completed Jun. 30, 2010 and dated Jul. 20, 2010; (3 pp).
European Search Report corresponding to EP 05 80 4382.9, completed Oct. 5, 2010 and dated Oct. 12, 2010; (3 pp).
European Search Report corresponding to EP 09 25 2897.5, completed Feb. 7, 2011 and dated Feb. 15, 2011; (3 pp).
European Search Report corresponding to EP 10 25 0642.5, completed Mar. 25, 2011 and dated Apr. 4, 2011; (4 pp).
European Search Report corresponding to EP 12 15 2229.6, completed Feb. 23, 2012 and dated Mar. 1, 2012; (4 pp).
European Search Report corresponding to EP 12 15 0511.9, completed Apr. 16, 2012 and dated Apr. 24, 2012; (7 pp).
European Search Report corresponding to EP 12 15 2541.4, completed Apr. 23, 2012 and dated May 3, 2012; (10 pp).
European Search Report corresponding to EP 12 16 5609.4, completed Jul. 5, 2012 and dated Jul. 13, 2012; (8 pp).
European Search Report corresponding to EP 12 15 8861.0, completed Jul. 17, 2012 and dated Jul. 24, 2012; (9 pp).
European Search Report corresponding to EP 12 16 5878.5, completed Jul. 24, 2012 and dated Aug. 6, 2012; (8 pp).
Extended European Search Report corresponding to EP 12 19 1035.0, completed Jan. 11, 2013 and dated Jan. 18, 2013; (7 pp).
Extended European Search Report corresponding to EP 12 18 6175.1, completed Jan. 15, 2013 and dated Jan. 23, 2013; (7 pp).
Extended European Search Report corresponding to EP 12 19 1114.3, completed Jan. 23, 2013 and dated Jan. 31, 2013; (10 pp).
Extended European Search Report corresponding to EP 12 19 2224.9, completed Mar. 14, 2013 and dated Mar. 26, 2013; (8 pp).
Extended European Search Report corresponding to EP 12 19 6904.2, completed Mar. 28, 2013 and dated Jul. 26, 2013; (8 pp).
Extended European Search Report corresponding to EP 12 19 6911.7, completed Apr. 18, 2013 and dated Apr. 24, 2013; (8 pp).
Extended European Search Report corresponding to EP 07 00 5842.5, completed May 13, 2013 and dated May 29, 2013; (7 pp).
Extended European Search Report corresponding to EP 12 19 8776.2, completed May 16, 2013 and dated May 27, 2013; (8 pp).
Extended European Search Report corresponding to EP 12 19 8749.9, completed May 21, 2013 and dated May 31, 2013; (8 pp).
Extended European Search Report corresponding to EP 13 15 6297.7, completed Jun. 4, 2013 and dated Jun. 13, 2013; (7 pp).
Extended European Search Report corresponding to EP 13 17 3985.6, completed Aug. 19, 2013 and dated Aug. 28, 2013; (6 pp).
Extended European Search Report corresponding to EP 13 17 3986.4, completed Aug. 20, 2013 and dated Aug. 29, 2013; (6 pp).
Extended European Search Report corresponding to EP 13 17 7437.4, completed Sep. 11, 2013 and dated Sep. 19, 2013; 6 pages.
Extended European Search Report corresponding to EP 13 17 7441.6, completed Sep. 11, 2013 and dated Sep. 19, 2013; (6 pp).
Extended European Search Report corresponding to EP 07 86 1534.1, completed Sep. 20, 2013 and dated Sep. 30, 2013; (5 pp).
Extended European Search Report corresponding to EP 13 18 3876.5, completed Oct. 14, 2013 and dated Oct. 24, 2013; (5 pp).
Extended European Search Report corresponding to EP 13 17 1856.1, completed Oct. 29, 2013 and dated Nov. 7, 2013; (8 pp).
Extended European Search Report corresponding to EP 13 18 0373.6, completed Oct. 31, 2013 and dated Nov. 13, 2013; (7 pp).
Extended European Search Report corresponding to EP 13 18 0881.8, completed Nov. 5, 2013 and dated Nov. 14, 2013; (6 pp).
Extended European Search Report corresponding to EP 13 17 6895.4, completed Nov. 29, 2013 and dated Dec. 12, 2013; (5 pp).
Extended European Search Report corresponding to EP 13 18 2911.1, completed Dec. 2, 2013 and dated Dec. 16, 2013; (8 pp).
Extended European Search Report corresponding to EP 10 25 1795.0, completed Dec. 11, 2013 and dated Dec. 20, 2013; (6 pp).
Extended European Search Report corresponding to EP 13 18 7911.6, completed Jan. 22, 2014 and dated Jan. 31, 2014; (8 pp).
Extended European Search Report corresponding to EP 13 19 2111.6, completed Feb. 13, 2014 and dated Feb. 27, 2014; (10 pp).
Extended European Search Report corresponding to EP 13 19 5919.9, completed Feb. 10, 2014 and dated Mar. 3, 2014; (7 pp).
Extended European Search Report corresponding to EP 08 72 6500.5, completed Feb. 20, 2014 and dated Mar. 3, 2014; (7 pp).
Extended European Search Report corresponding to EP 13 19 5019.8, completed Mar. 14, 2014 and dated Mar. 24, 2014; (7 pp).
Extended European Search Report corresponding to EP 13 19 6816.6, completed Mar. 28, 2014 and dated Apr. 9, 2014; (9 pp).
Extended European Search Report corresponding to EP 13 19 7958.5, completed Apr. 4, 2014 and dated Apr. 15, 2014; (8 pp).
Extended European Search Report corresponding to EP 13 19 4995.0, completed Jun. 5, 2014 and dated Jun. 16, 2014; (5 pp).
Extended European Search Report corresponding to EP 14 15 7195.0, completed Jun. 5, 2014 and dated Jun. 18, 2014; (9 pp).
Extended European Search Report corresponding to EP 14 15 6342.9, completed Jul. 22, 2014 and dated Jul. 29, 2014; (8 pp).
Related Publications (1)
Number Date Country
20210290230 A1 Sep 2021 US
Provisional Applications (1)
Number Date Country
62991655 Mar 2020 US