Anvil assembly with snap backup ring

Information

  • Patent Grant
  • 10111668
  • Patent Number
    10,111,668
  • Date Filed
    Thursday, July 2, 2015
    8 years ago
  • Date Issued
    Tuesday, October 30, 2018
    5 years ago
Abstract
An anvil assembly is provided. The anvil assembly includes center rod assembly, a head assembly pivotal relative to the center rod assembly between an operative position and a tilted position, and a mechanism for selectively maintaining the head assembly in the operative position.
Description
BACKGROUND

Technical Field


The present disclosure relates generally to an anvil assembly having a tiltable head which is suitable for use with a circular anastomosis stapler. More specifically, the present disclosure relates a tiltable anvil assembly having an improved retaining mechanism.


Background of Related Art


Circular anastomosis staplers which include an anvil assembly having a tiltable anvil head are known in the art. An example of such circular anastomosis stapler and tiltable anvil assembly are disclosed in commonly owned U.S. Pat. No. 7,364,060 (“the '060 patent”). A further example of a tiltable anvil assembly is disclosed in commonly owned U.S. Pat. No. 8,540,132 (“the '132 patent”). The content of each of the '060 patent and the '132 patent are incorporated herein by reference in their entirety. The anvil assembly described in the '132 patent includes a backup member located within the anvil assembly positioned to prevent tilting of the anvil head of the anvil assembly prior to firing of the stapler, e.g., in a proximal position. Upon firing of the stapler, a knife blade of the stapler engages and moves the backup member to a position, e.g., a distal position, which allows the anvil head to tilt upon retraction of the knife blade. If the backup member sticks to the knife blade upon retraction of the knife blade and/or is otherwise not retained in the distal position, the backup member may return to the proximal position, thereby preventing the anvil head from tilting.


In order to maintain the backup member in the proximal position where it prevents tilting of the anvil head prior to firing, the anvil assembly described in the '132 patent includes a retainer member positioned distal of the backup member. The retainer member includes a plurality of deformable tabs which prevent distal movement of the backup member until a predetermined force sufficient to deform the tabs is applied to the backup member, i.e., through engagement with the knife blade during staple formation. A residual proximal force is produced during deformation of the deformable tabs. This force acts on the backup member which may cause the backup member to move proximally towards its original position. As described in the '132 patent, the tilting operation of the anvil assembly relies on the distal positioning of the backup member following the firing of the stapler. Any proximal force that acts on the backup member may cause the backup member to return to the original proximal position, thereby preventing tilting of the anvil assembly.


Therefore, it would be beneficial to provide an anvil assembly with a mechanism or feature for retaining the backup member in the proximal position prior to firing of the stapling assembly, that allows the backup member to move to the distal position during firing of the stapling assembly, and that retains the backup member in the distal position after firing of the stapling assembly such that the anvil assembly may tilt.


SUMMARY

Accordingly, an anvil assembly is provided. The anvil assembly includes a center rod assembly and a head assembly pivotally supported on the center rod assembly between an operative position and a tilted position. The head assembly includes a housing, a post extending proximally from the housing and defining a proximal annular groove, and a backup member operably supported about the post, wherein the backup member is movable from a first position in which a portion of the backup member is positioned to prevent pivotal movement of the head assembly from the operative position to the tilted position, to a second position in which the backup member is positioned to permit pivotal movement of the head assembly from the operative position to a tilted position. The backup member includes a first locking feature and a second locking feature receivable within the proximal annular groove of the post to maintain the backup member in the first position.


In embodiments, the post further defines a distal annular groove, the first and second locking features being received within the distal annular groove to maintain the backup member in the second position. The center rod assembly may include a center rod having at least one tab. The at least one tab may engage the backup member when the backup member is in the first position to maintain the head assembly in the operative position. Movement of the backup member from the first position to the second position may disengage the backup member from the at least one tab to permit the head assembly to move to the tilted position.


The first and second locking features may be configured to prevent movement of the backup member from the first position to the second position until a predetermined force has been applied to the backup member. The first and second locking features may be configured to flex radially outward when the predetermined force is applied to the backup member. The first and second locking features may each include a ridge configured for receipt within the proximal annular groove when the backup member is in the first position and within the distal annular groove when the backup member is in the second position.


In embodiments, an anvil assembly in accordance with the present disclosure includes a center rod assembly, and a head assembly pivotally supported on the center rod assembly between an operative position and a tilted position. The head assembly includes a housing, a post extending proximally from the housing, and a backup member operably supported about the post, wherein the backup member is movable from a first position in which a portion of the backup member is positioned to prevent pivotal movement of the head assembly from the operative position to the tilted position, to a second position in which the backup member is positioned to permit pivotal movement of the head assembly from a operative position to the tilted position. The backup member includes a first detent and a second detent configured to engage a proximal surface of the post to maintain the backup member in the first position.


In embodiments, the post defines first and second cutouts for receiving the respective first and second detents when the backup member is in the second position. The center rod assembly may include a center rod having at least one tab, wherein the at least one tab engages the backup member when the backup member is in the first position to maintain the head assembly in the operative position. Movement of the backup member from the first position to the second position may disengage the backup member from the at least one tab to permit the head assembly to move to the tilted position. The at least one tab may engage one of the first and second detents. The first and second detents may be configured to prevent movement of the backup member from the first position to the second position until a predetermined force has been applied to the backup member.





BRIEF DESCRIPTION OF THE DRAWINGS

Various embodiments of the presently disclosed anvil assembly are disclosed herein with reference to the drawings wherein:



FIG. 1 is a perspective side view of a surgical stapling device including an embodiment of an anvil assembly according to the present disclosure;



FIG. 2 is enlarged view of the indicated area of detail shown in FIG. 1;



FIG. 3 is a cross-sectional side view taken along line 3-3 shown in FIG. 2, illustrating the anvil assembly approximated against a loading unit;



FIG. 4 is a perspective side view of the anvil assembly shown in FIG. 1 with the parts separated;



FIG. 5 is a perspective side view of a backup member of the anvil assembly shown in FIG. 4;



FIG. 6 is a perspective side view of the anvil assembly shown in FIG. 4;



FIG. 7 is an enlarged view of the indicated area of detail shown in FIG. 6;



FIG. 8 is a cross-sectional perspective view taken along line 8-8 shown in FIG. 7;



FIG. 9 is a cross-sectional side view taken along line 9-9 shown in FIG. 7;



FIG. 10 is a cross-sectional side view taken along line 3-3 shown in FIG. 2, during a tissue cutting stroke;



FIG. 11 is a perspective top view of a head assembly of the anvil assembly shown in FIG. 4 subsequent to firing of the surgical stapling device show in FIG. 1;



FIG. 12 is a cross-sectional perspective view taken along line 8-8 shown in FIG. 7 subsequent to tilting of the head assembly;



FIG. 13 is a cross-sectional side view taken along line 9-9 shown in FIG. 7, subsequent to tilting of the head assembly;



FIG. 14 is a perspective view of another embodiment of an anvil assembly according to the present disclosure;



FIG. 15 is an enlarged perspective view a head assembly of the anvil assembly shown in FIG. 14 with a cutting ring removed and a backup member in a proximal position;



FIG. 16 is an enlarged view of the indicated area of detail shown in FIG. 15;



FIG. 17 is an enlarged perspective view of the head assembly of the anvil assembly shown in FIG. 14 with the backup member in a distal position; and



FIG. 18 is a perspective side view of the anvil assembly shown in FIG. 14 with the head assembly in a tilted position and the backup member and the cutting ring removed.





DETAILED DESCRIPTION OF EMBODIMENTS

Embodiments of the presently disclosed anvil assembly will now be described in detail with reference to the drawings in which like reference numerals designate identical or corresponding elements in each of the several views. As is common in the art, the term “proximal” refers to that part or component closer to the user or operator, i.e. surgeon or clinician, while the term “distal” refers to that part or component further away from the user.


Referring initially to FIGS. 1-3, an anvil assembly according to an embodiment of the present disclosure, shown generally as anvil assembly 100, is secured to a surgical stapling device 10. The surgical stapling device 10 includes a powered handle 20, an adapter assembly 30, an extension assembly 40, and a loading unit 50. Although shown and described with reference to anvil assembly 100 and surgical stapling device 10, the aspects of the present disclosure may be modified for use with anvil assemblies having alternative configurations, with manual surgical stapling devices having various configurations, and with powered surgical stapling devices having alternative configurations. For a detailed description of an exemplary surgical stapling device, please refer to commonly owned U.S. Pat. No. 9,023,014 (“the '014 patent) and U.S. Pat. Appl. Publ. No. 2012/0253329 (“the '329 application”), the contents of which are incorporated by reference herein in their entirety.


Referring to FIGS. 2-4, briefly, the anvil assembly 100 includes a head assembly 112 pivotally secured to a center rod assembly 114. The head assembly 112 includes a housing 120, a post 130, a backup member 140, and a cutting ring 150. The center rod assembly 114 includes a center rod 160 and a biasing mechanism 170 (FIG. 3) operably received within a distal bore 161 (FIG. 3) of the center rod 160. The biasing mechanism 170 facilitates moving of the head assembly 112 relative to the center rod 160 between at least an operative position (FIG. 6) and a tilted position (FIG. 11). The biasing mechanism 170 includes a plunger member 172 (FIG. 3) and a biasing member, e.g., a compression spring 174 (FIG. 3). For a detailed description of an exemplary center rod assembly 114, please refer to the '132 patent, the contents of which were previously incorporated by reference herein.


With continued reference to FIGS. 3 and 4, the housing 120 of the head assembly 112 of the anvil assembly 100 defines a plurality of staple forming pockets 121 on a proximal facing surface 122 thereof. Alternatively, the head assembly 112 may include an anvil plate (not shown), defining a plurality of staple forming pockets (not shown), supported on the proximal facing surface 122 of the housing 120. The housing 120 further defines a cavity 123 between an inner wall 124 and the post 130 for operably receiving the backup member 140 and the cutting ring 150. As will be described in further detail below, the inner wall 124 of the housing 120 defines an annular groove 125 for receiving a plurality of tabs 156 of the cutting ring 150.


As shown, the post 130 of the head assembly 112 is monolithically formed with and centrally positioned within the housing 120. Alternately, the housing 120 and the post 130 are formed separately and fastened together using a known fastening technique, e.g., adhesive, welding, friction fit, etc. The post 130 includes a substantially cylindrical body 132 having a projection 134, and defining opposed cutouts 133 and proximal and distal annular grooves 135a, 135b. The projection 134 of the post 130 defines a throughbore 131 and is configured to operably engage the center rod 160 of the center rod assembly 114. More particularly, the projection 134 of post 130 is received between extensions 162 of the center rod 160 of the center rod assembly 114 and is pivotally secured to the center rod 160 by a pivot pin 162 received through the throughbore 131.


With additional reference to FIG. 5, the backup member 140 of the head assembly 112 includes an annular body 142 and an annular flange 144 extending from the annular body 142. The backup member 140 defines an annular groove 141 disposed between the annular body 142 and the annular flange 144, and a central opening 143 extending through the annular body 142 and the annular flange 144. The backup member 140 is operably receivable within the cavity 123 of the housing 120 of the head assembly 112 about the post 130. The backup member 140 includes opposed protrusions 146 extending within the central opening 143 and receivable within the opposed cutouts 133 of the post 130 when the backup member 140 is received within the cavity 123 of the housing 120. As will be described in further detail below, when the backup member 140 is in a proximal position (FIG. 3), the opposed protrusions 146 engage tabs 162a formed on the extensions 162 of the center rod 160 of the center rod assembly 114 to maintain the head assembly 112 in an operative position (FIG. 3).


With particular reference still to FIG. 5, the backup member 140 further includes opposed locking features 148 that frictionally engage the post 130 when the backup member 140 is received within the cavity 121 of the housing 120 and about the post 130. More particularly, each of the opposed locking features 148 forms a resilient member that includes a ridge 148a selectively receivable within the proximal and distal annular grooves 135a, 135b of the post 130. When the ridges 148a of the opposed locking features 148 of the backup member 140 are received within the proximal annular groove 135a of the post 130, the opposed locking features 148 operate to maintain the backup member 140 in the proximal position (FIG. 3). Although shown including two locking features 148, it is envisioned that the backup member 140 may include three (3) or more locking features 148.


When a predetermined force is applied to the backup member 140 in the distal direction, the opposed locking features 148 of the backup member 140 are configured to flex radially outwardly as the backup member 140 moves in a distal direction. The radial outward flexion of the ridges 148a of the opposed locking features 148 retract the ridges 148a from within the proximal annular groove 135a, thereby permitting continued distal movement of the backup member 140. The distal annular groove 135b of the post 130 is positioned such that when the backup member 140 is moved to the distal position (FIG. 13), the ridges 148a of the opposed locking features 148 align with and are subsequently received within the distal annular groove 135b because of the resilient nature of the opposed locking features 148.


With continued reference to FIGS. 3 and 4, the cutting ring 150 of the head assembly 112 of the anvil assembly 100 includes an annular body 152 and defines an annular groove 151 and a central opening 153. The cutting ring 150 is secured about the annular flange 144 of the backup member 140 and includes an inwardly extending lip 154 that is received within the annular groove 143 of the backup member 140 for securing the cutting ring 150 to the backup member 140. As noted above, a plurality of tabs 156 extend outwardly from the annular body 152 of the cutting ring 150. The plurality of tabs 156 are received within the annular groove 125 formed in the inner wall 124 of the housing 120 when the cutting ring 150 is received within the cavity 123 of the housing 120. The plurality of tabs 156 maintains the backup member 140 and the cutting ring 150 within the housing 120 of the head assembly 112.


Although the cutting ring 150 is shown and described as being formed as an independent component that is secured to the backup member 140 by placing the cutting ring 150 around the annular flange 144 of the backup member 140 and receiving the lip 154 of the cutting ring 150 within the annular groove 143 of the backup member 140, it is envisioned that the backup member 140 and the cutting ring 150 may be integrally formed, or formed as a one piece or monolithic structure.


With reference now to FIGS. 6-9, the anvil assembly 100 is shown with the head assembly 112 in the operative position. In the operative position, the backup member 140 and the cutting ring 150 are in the proximal position. When the backup member 140 and the cutting ring 150 are in the proximal position, the ridges 148a of the opposed locking features 148 of the backup member 140 are received within the proximal annular groove 135a of the post 130 to maintain the backup member 140 and the cutting ring 150 in the proximal position. Additionally, the plurality of tabs 156 (FIG. 8) of the cutting ring 150 are received within the annular groove 125 formed in the inner surface 124 of the housing 120 to maintain the backup member 140 and the cutting ring 150 within the cavity 123 of the housing 120.


As noted above, the head assembly 112 of the anvil assembly 100 is maintained in the operative position by the backup member 140 when the backup member 140 is in the proximal position. In particular, the opposed protrusions 146 of the backup member 140 engage the tabs 162a extending from the extension 162 of the center rod 160 of the center rod assembly 114 to prevent the head assembly 112 from pivoting to the tilted position (FIG. 11) relative to the center rod 160.


With reference now to FIG. 10, during actuation of surgical stapling device 10, subsequent to the stapling of tissue in a two stroke stapling device, or concurrently with the stapling of tissue in a single stroke device, the knife 52 of the loading unit 50 is advanced into contact with the cutting ring 150 of the head assembly 112 of the anvil assembly 100. Since the cutting ring 150 is secured to the backup member 140, the force applied to the cutting ring 150 is transferred to the backup member 150. As noted above, when the predetermined force is applied to the backup member 140, the opposed locking features 148 of the backup member 140 flex radially outwardly to retract the ridges 148a of the opposed locking features 148 from within the proximal annular groove 135a of the post 130 to allow the backup member 140 to move relative to the post 130.


Turning now to FIGS. 11-13, the anvil assembly 100 is shown with the backup member 140 and the cutting ring 150 in the distal position. As the backup member 140 moves to the distal position, the opposed protrusions 144 of the backup member 140 disengage from the tabs 162a formed on the extensions 162 of the center rod 160 of the center rod assembly 114 to permit the head assembly 112 to pivot relative to the center rod assembly 114. As noted above, when the backup member 140 is in the distal position, the ridges 148a of the opposed locking features 148 align with and are received within the distal annular groove 135b of the post 130 to lock the backup member 140 in the distal position.


It is noted that the anvil head assembly 100 will not immediately tilt or pivot to the tilted position upon firing of the surgical stapling device 10 because, upon firing, the head assembly 100 is in an approximated position, i.e., the head assembly 100 is in close alignment with the loading unit 50 of the surgical stapling device 10 (FIG. 10). As such, the head assembly 100 is prevented from tilting until the head assembly 112 is moved away from the loading unit 50.


With reference to FIGS. 14-18, another embodiment of an anvil assembly according to the present disclosure is shown generally as anvil assembly 200. The anvil assembly 200 is substantially similar to the anvil assembly 100 described hereinabove and will only be described in detail as relates to the differences therebetween.


The anvil assembly 200 includes a head assembly 212 and a center rod assembly 214. The head assembly 212 includes a housing 220, a post 230, a backup member 240, and a cutting ring 250. The center rod assembly includes a center rod 260 and a biasing assembly 270 (FIG. 18). The housing 220 is substantially similar to housing 120 and will not be described any further herein.


The post 230 of the head assembly 212 is centrally disposed within the housing 220 and includes a substantially cylindrical body 232. A projection 234 extends proximally from the cylindrical body 232 and is pivotally secured to extensions 262 of the center rod 260. The cylindrical body 232 of the post 230 defines opposed cutouts 233. As will be described in further detail below, the opposed cutouts 233 facilitate securing the backup member 240 in a distal position (FIG. 17).


The backup member 240 includes a substantially planar body 242 and an annular flange 244 extending proximally from the planar body 242. The annular flange 244 is receivable about the post 230 and includes opposed detents 246 formed on a proximal end of the annular flange 244. The opposed detents 246 operate to maintain the backup member 240 in the proximal position prior to actuation of the surgical stapler 10 (FIG. 1) and in the distal position subsequent to actuation of the surgical stapler 10. The opposed detents 246 further operate to maintain the head assembly 212 in the operative position when the backup member 240 is in the proximal position. Although shown including two detents 246, it is envisioned that the backup member 140 may include three (3) or more detents 246.


The backup member 240 includes a plurality of tangs 248 for securing the cutting ring 250 to the backup member 240. Although shown including a plurality of tangs 248, it is envisioned that the cutting ring 250 may be secured to the backup member 240 in any suitable manner. The cutting ring 250 is substantially similar to the cutting ring 150 described hereinabove and will not be described in further detail herein.


With reference to FIGS. 14-16, when the backup member 240 is in the proximal position, a distal portion 246b of the opposed detents 246 engages a top surface 232a (FIG. 16) of the cylindrical body 232 of the post 230 to maintain the backup member 240 in the proximal position. When the backup member 240 is in the proximal position, the opposed detents 246 are aligned with the tabs 262a formed on the extension 262 of the center rod 260 of the center rod assembly 214 to maintain the head assembly 212 in the operative position.


When a predetermined force is applied to the backup member 240, e.g., by knife 52 (FIG. 10) during actuation of the surgical stapler 10, the opposed detents 246 flex radially outwardly as the backup member 240 moves distally about the cylindrical body 232 of the post 230 to permit movement of the backup member 240 to the distal position. The post 230 may include a longitudinal slot (not shown) for receiving the detents 246 and facilitating distal movement of the backup member 240 from the proximal position to the distal position.


When the backup member 240 is in the distal position, the opposed detents 246 of the backup member 240 are received within the opposed cutout 233 of the post 230 to secure the backup member 240 in the distal position. More particularly, a proximal surface 246a of the opposed detents 246 engages the cylindrical body 232 of the post 230 when the detents 246 are received in the cutouts 233 of the post 230 to maintain the backup member 240 in the distal position.


Persons skilled in the art will understand that the devices and methods specifically described herein and illustrated in the accompanying drawings are non-limiting exemplary embodiments. It is envisioned that the elements and features illustrated or described in connection with one exemplary embodiment may be combined with the elements and features of another without departing from the scope of the present disclosure. As well, one skilled in the art will appreciate further features and advantages of the disclosure based on the above-described embodiments. Accordingly, the disclosure is not to be limited by what has been particularly shown and described, except as indicated by the appended claims.

Claims
  • 1. An anvil assembly comprising: a center rod assembly; anda head assembly pivotally supported on the center rod assembly between an operative position and a tilted position, the head assembly including: a housing;a post extending proximally from the housing and defining a proximal annular groove; anda backup member operably supported about the post, wherein the backup member is movable from a first position in which a portion of the backup member is positioned to prevent pivotal movement of the head assembly from the operative position to the tilted position, to a second position in which the backup member is positioned to permit pivotal movement of the head assembly from the operative position to a tilted position, the backup member including a first locking feature and a second locking feature receivable within the proximal annular groove of the post to maintain the backup member in the first position.
  • 2. The anvil assembly according to claim 1, wherein the post further defines a distal annular groove, the first and second locking features being received within the distal annular groove to maintain the backup member in the second position.
  • 3. The anvil assembly according to claim 1, wherein the center rod assembly includes a center rod having at least one tab, wherein the at least one tab engages the backup member when the backup member is in the first position to maintain the head assembly in the operative position.
  • 4. The anvil assembly according to claim 3, wherein movement of the backup member from the first position to the second position disengages the backup member from the at least one tab to permit the head assembly to move to the tilted position.
  • 5. The anvil assembly according to claim 1, wherein the first and second locking features are configured to prevent movement of the backup member from the first position to the second position until a predetermined force has been applied to the backup member.
  • 6. The anvil assembly according to claim 5, wherein the first and second locking features are configured to flex radially outward when the predetermined force is applied to the backup member.
  • 7. The anvil assembly according to claim 1, wherein the first and second locking features each include a ridge configured for receipt within the proximal annular groove when the backup member is in the first position and within the distal annular groove when the backup member is in the second position.
  • 8. An anvil assembly comprising: a center rod assembly including a center rod having at least one tab; anda head assembly pivotally supported on the center rod assembly between an operative position and a tilted position, the head assembly including:a housing;a post extending proximally from the housing; anda backup member operably supported about the post, wherein the backup member is movable from a first position in which a portion of the backup member is positioned to prevent pivotal movement of the head assembly from the operative position to the tilted position, to a second position in which the backup member is positioned to permit pivotal movement of the head assembly from an operative position to the tilted position, the backup member including a first detent and a second detent configured to engage a proximal surface of the post to maintain the backup member in the first position, wherein the at least one tab engages the backup member when the backup member is in the first position to maintain the head assembly in the operative position.
  • 9. The anvil assembly according to claim 8, wherein the post defines first and second cutouts for receiving the respective first and second detents when the backup member is in the second position.
  • 10. The anvil assembly according to claim 8, wherein movement of the backup member from the first position to the second position disengages the backup member from the at least one tab to permit the head assembly to move to the tilted position.
  • 11. The anvil assembly according to claim 8, wherein the at least one tab engages one of the first and second detents.
  • 12. The anvil assembly according to claim 8, wherein the first and second detents are configured to prevent movement of the backup member from the first position to the second position until a predetermined force has been applied to the backup member.
US Referenced Citations (507)
Number Name Date Kind
3193165 Akhalaya et al. Jul 1965 A
3388847 Kasulin et al. Jun 1968 A
3552626 Astafiev et al. Jan 1971 A
3638652 Kelley Feb 1972 A
3771526 Rudie Nov 1973 A
4198982 Fortner et al. Apr 1980 A
4207898 Becht Jun 1980 A
4289133 Rothfuss Sep 1981 A
4304236 Conta et al. Dec 1981 A
4319576 Rothfuss Mar 1982 A
4350160 Kolesov et al. Sep 1982 A
4351466 Noiles Sep 1982 A
4379457 Gravener et al. Apr 1983 A
4473077 Noiles et al. Sep 1984 A
4476863 Kanshin et al. Oct 1984 A
4485817 Swiggett Dec 1984 A
4488523 Shichman Dec 1984 A
4505272 Utyamyshev et al. Mar 1985 A
4505414 Filipi Mar 1985 A
4520817 Green Jun 1985 A
4550870 Krumme et al. Nov 1985 A
4573468 Conta et al. Mar 1986 A
4576167 Noiles Mar 1986 A
4592354 Rothfuss Jun 1986 A
4603693 Conta et al. Aug 1986 A
4606343 Conta et al. Aug 1986 A
4632290 Green et al. Dec 1986 A
4646745 Noiles Mar 1987 A
4665917 Clanton et al. May 1987 A
4667673 Li May 1987 A
4671445 Barker et al. Jun 1987 A
4700703 Resnick et al. Oct 1987 A
4703887 Clanton et al. Nov 1987 A
4708141 Inoue et al. Nov 1987 A
4717063 Ebihara Jan 1988 A
4752024 Green et al. Jun 1988 A
4754909 Barker et al. Jul 1988 A
4776506 Green Oct 1988 A
4817847 Redtenbacher et al. Apr 1989 A
4873977 Avant et al. Oct 1989 A
4893662 Gervasi Jan 1990 A
4903697 Resnick et al. Feb 1990 A
4907591 Vasconcellos et al. Mar 1990 A
4917114 Green et al. Apr 1990 A
4957499 Lipatov et al. Sep 1990 A
4962877 Hervas Oct 1990 A
5005749 Aranyi Apr 1991 A
5042707 Taheri Aug 1991 A
5047039 Avant et al. Sep 1991 A
5104025 Main et al. Apr 1992 A
5119983 Green et al. Jun 1992 A
5122156 Granger et al. Jun 1992 A
5139513 Segato Aug 1992 A
5158222 Green et al. Oct 1992 A
5188638 Tzakis Feb 1993 A
5193731 Aranyi Mar 1993 A
5197648 Gingold Mar 1993 A
5197649 Bessler et al. Mar 1993 A
5205459 Brinkerhoff et al. Apr 1993 A
5221036 Takase Jun 1993 A
5222963 Brinkerhoff et al. Jun 1993 A
5253793 Green et al. Oct 1993 A
5261920 Main et al. Nov 1993 A
5271543 Grant et al. Dec 1993 A
5271544 Fox et al. Dec 1993 A
5275322 Brinkerhoff et al. Jan 1994 A
5282810 Allen et al. Feb 1994 A
5285944 Green et al. Feb 1994 A
5285945 Brinkerhoff et al. Feb 1994 A
5292053 Bilotti et al. Mar 1994 A
5309927 Welch May 1994 A
5312024 Grant et al. May 1994 A
5314435 Green et al. May 1994 A
5314436 Wilk May 1994 A
5330486 Wilk Jul 1994 A
5333773 Main et al. Aug 1994 A
5344059 Green et al. Sep 1994 A
5346115 Perouse et al. Sep 1994 A
5348259 Blanco et al. Sep 1994 A
5350104 Main et al. Sep 1994 A
5355897 Pietrafitta et al. Oct 1994 A
5360154 Green Nov 1994 A
5368215 Green et al. Nov 1994 A
5392979 Green et al. Feb 1995 A
5395030 Kuramoto et al. Mar 1995 A
5403333 Kaster et al. Apr 1995 A
5404870 Brinkerhoff et al. Apr 1995 A
5411508 Bessler et al. May 1995 A
5425738 Gustafson et al. Jun 1995 A
5433721 Hooven et al. Jul 1995 A
5437684 Calabrese et al. Aug 1995 A
5439156 Grant et al. Aug 1995 A
5443198 Viola et al. Aug 1995 A
5447514 Gerry et al. Sep 1995 A
5454825 Van Leeuwen et al. Oct 1995 A
5464415 Chen Nov 1995 A
5470006 Rodak Nov 1995 A
5474223 Viola et al. Dec 1995 A
5497934 Brady et al. Mar 1996 A
5503635 Sauer et al. Apr 1996 A
5522534 Viola et al. Jun 1996 A
5533661 Main et al. Jul 1996 A
5588579 Schnut Dec 1996 A
5609285 Grant et al. Mar 1997 A
5626591 Kockerling et al. May 1997 A
5632433 Grant et al. May 1997 A
5639008 Gallagher et al. Jun 1997 A
5641111 Ahrens et al. Jun 1997 A
5658300 Bito et al. Aug 1997 A
5669918 Balazs et al. Sep 1997 A
5685474 Seeber Nov 1997 A
5709335 Heck Jan 1998 A
5715987 Kelley et al. Feb 1998 A
5718360 Green et al. Feb 1998 A
5720755 Dakov Feb 1998 A
5732872 Bolduc et al. Mar 1998 A
5749896 Cook May 1998 A
5758814 Gallagher et al. Jun 1998 A
5799857 Robertson et al. Sep 1998 A
5814055 Knodel et al. Sep 1998 A
5833698 Hinchliffe et al. Nov 1998 A
5836503 Ehrenfels et al. Nov 1998 A
5839639 Sauer et al. Nov 1998 A
5855312 Toledano Jan 1999 A
5860581 Robertson et al. Jan 1999 A
5868760 McGuckin, Jr. Feb 1999 A
5881943 Heck et al. Mar 1999 A
5915616 Viola et al. Jun 1999 A
5947363 Bolduc et al. Sep 1999 A
5951576 Wakabayashi Sep 1999 A
5957363 Heck Sep 1999 A
5993468 Rygaard Nov 1999 A
6024748 Manzo et al. Feb 2000 A
6050472 Shibata Apr 2000 A
6053390 Green et al. Apr 2000 A
6068636 Chen May 2000 A
6083241 Longo et al. Jul 2000 A
6102271 Longo et al. Aug 2000 A
6117148 Ravo et al. Sep 2000 A
6119913 Adams et al. Sep 2000 A
6126058 Adams et al. Oct 2000 A
6142933 Longo et al. Nov 2000 A
6149667 Hovland et al. Nov 2000 A
6176413 Heck et al. Jan 2001 B1
6179195 Adams et al. Jan 2001 B1
6193129 Bittner et al. Feb 2001 B1
6203553 Robertson et al. Mar 2001 B1
6209773 Bolduc et al. Apr 2001 B1
6241140 Adams et al. Jun 2001 B1
6253984 Heck et al. Jul 2001 B1
6258107 Balazs et al. Jul 2001 B1
6264086 McGuckin, Jr. Jul 2001 B1
6269997 Balazs et al. Aug 2001 B1
6273897 Dalessandro et al. Aug 2001 B1
6279809 Nicolo Aug 2001 B1
6302311 Adams et al. Oct 2001 B1
6338737 Toledano Jan 2002 B1
6343731 Adams et al. Feb 2002 B1
6387105 Gifford, III et al. May 2002 B1
6398795 McAlister et al. Jun 2002 B1
6402008 Lucas Jun 2002 B1
6439446 Perry et al. Aug 2002 B1
6443973 Whitman Sep 2002 B1
6450390 Heck et al. Sep 2002 B2
6478210 Adams et al. Nov 2002 B2
6488197 Whitman Dec 2002 B1
6491201 Whitman Dec 2002 B1
6494877 Odell et al. Dec 2002 B2
6503259 Huxel et al. Jan 2003 B2
6517566 Hovland et al. Feb 2003 B1
6520398 Nicolo Feb 2003 B2
6533157 Whitman Mar 2003 B1
6551334 Blatter et al. Apr 2003 B2
6578751 Hartwick Jun 2003 B2
6585144 Adams et al. Jul 2003 B2
6588643 Bolduc et al. Jul 2003 B2
6592596 Geitz Jul 2003 B1
6601749 Sullivan et al. Aug 2003 B2
6605078 Adams Aug 2003 B2
6605098 Nobis et al. Aug 2003 B2
6626921 Blatter et al. Sep 2003 B2
6629630 Adams Oct 2003 B2
6631837 Heck Oct 2003 B1
6632227 Adams Oct 2003 B2
6632237 Ben-David et al. Oct 2003 B2
6652542 Blatter et al. Nov 2003 B2
6659327 Heck et al. Dec 2003 B2
6676671 Robertson et al. Jan 2004 B2
6681979 Whitman Jan 2004 B2
6685079 Sharma et al. Feb 2004 B2
6695198 Adams et al. Feb 2004 B2
6695199 Whitman Feb 2004 B2
6698643 Whitman Mar 2004 B2
6716222 McAlister et al. Apr 2004 B2
6716233 Whitman Apr 2004 B1
6726697 Nicholas et al. Apr 2004 B2
6742692 Hartwick Jun 2004 B2
6743244 Blatter et al. Jun 2004 B2
6763993 Bolduc et al. Jul 2004 B2
6769590 Vresh et al. Aug 2004 B2
6769594 Orban, III Aug 2004 B2
6820791 Adams Nov 2004 B2
6821282 Perry et al. Nov 2004 B2
6827246 Sullivan et al. Dec 2004 B2
6840423 Adams et al. Jan 2005 B2
6843403 Whitman Jan 2005 B2
6846308 Whitman et al. Jan 2005 B2
6852122 Rush Feb 2005 B2
6866178 Adams et al. Mar 2005 B2
6872214 Sonnenschein et al. Mar 2005 B2
6874669 Adams et al. Apr 2005 B2
6884250 Monassevitch et al. Apr 2005 B2
6905504 Vargas Jun 2005 B1
6938814 Sharma et al. Sep 2005 B2
6942675 Vargas Sep 2005 B1
6945444 Gresham et al. Sep 2005 B2
6953138 Dworak et al. Oct 2005 B1
6957758 Aranyi Oct 2005 B2
6959851 Heinrich Nov 2005 B2
6978922 Bilotti et al. Dec 2005 B2
6981941 Whitman et al. Jan 2006 B2
6981979 Nicolo Jan 2006 B2
7032798 Whitman et al. Apr 2006 B2
7059331 Adams et al. Jun 2006 B2
7059510 Orban, III Jun 2006 B2
7077856 Whitman Jul 2006 B2
7080769 Vresh et al. Jul 2006 B2
7086267 Dworak et al. Aug 2006 B2
7114642 Whitman Oct 2006 B2
7118528 Piskun Oct 2006 B1
7122044 Bolduc et al. Oct 2006 B2
7128748 Mooradian et al. Oct 2006 B2
7141055 Abrams et al. Nov 2006 B2
7168604 Milliman et al. Jan 2007 B2
7179267 Nolan et al. Feb 2007 B2
7182239 Myers Feb 2007 B1
7195142 Orban, III Mar 2007 B2
7207168 Doepker et al. Apr 2007 B2
7220237 Gannoe et al. May 2007 B2
7234624 Gresham et al. Jun 2007 B2
7235089 McGuckin, Jr. Jun 2007 B1
RE39841 Bilotti et al. Sep 2007 E
7285125 Viola Oct 2007 B2
7303106 Milliman et al. Dec 2007 B2
7303107 Milliman et al. Dec 2007 B2
7309341 Ortiz et al. Dec 2007 B2
7322994 Nicholas et al. Jan 2008 B2
7325713 Aranyi Feb 2008 B2
7334718 McAlister et al. Feb 2008 B2
7335212 Edoga et al. Feb 2008 B2
7364060 Milliman Apr 2008 B2
7398908 Holsten et al. Jul 2008 B2
7399305 Csiky et al. Jul 2008 B2
7401721 Holsten et al. Jul 2008 B2
7401722 Hur Jul 2008 B2
7407075 Holsten et al. Aug 2008 B2
7410086 Ortiz et al. Aug 2008 B2
7422137 Manzo Sep 2008 B2
7422138 Bilotti et al. Sep 2008 B2
7431191 Milliman Oct 2008 B2
7438718 Milliman et al. Oct 2008 B2
7455676 Holsten et al. Nov 2008 B2
7455682 Viola Nov 2008 B2
7481347 Roy Jan 2009 B2
7494038 Milliman Feb 2009 B2
7506791 Omaits et al. Mar 2009 B2
7516877 Aranyi Apr 2009 B2
7527185 Harari et al. May 2009 B2
7537602 Whitman May 2009 B2
7546939 Adams et al. Jun 2009 B2
7546940 Milliman et al. Jun 2009 B2
7547312 Bauman et al. Jun 2009 B2
7556186 Milliman Jul 2009 B2
7559451 Sharma et al. Jul 2009 B2
7585306 Abbott et al. Sep 2009 B2
7588174 Holsten et al. Sep 2009 B2
7600663 Green Oct 2009 B2
7611038 Racenet et al. Nov 2009 B2
7635385 Milliman et al. Dec 2009 B2
7669747 Weisenburgh, II et al. Mar 2010 B2
7686201 Csiky Mar 2010 B2
7694864 Okada et al. Apr 2010 B2
7699204 Viola Apr 2010 B2
7708181 Cole et al. May 2010 B2
7717313 Criscuolo et al. May 2010 B2
7721932 Cole et al. May 2010 B2
7726539 Holsten et al. Jun 2010 B2
7743958 Orban, III Jun 2010 B2
7744627 Orban, III et al. Jun 2010 B2
7770776 Chen et al. Aug 2010 B2
7771440 Ortiz et al. Aug 2010 B2
7776060 Mooradian et al. Aug 2010 B2
7793813 Bettuchi Sep 2010 B2
7802712 Milliman et al. Sep 2010 B2
7823592 Bettuchi et al. Nov 2010 B2
7837079 Holsten et al. Nov 2010 B2
7837080 Schwemberger Nov 2010 B2
7837081 Holsten et al. Nov 2010 B2
7845536 Viola et al. Dec 2010 B2
7845538 Whitman Dec 2010 B2
7857187 Milliman Dec 2010 B2
7886951 Hessler Feb 2011 B2
7896215 Adams et al. Mar 2011 B2
7900806 Chen et al. Mar 2011 B2
7909039 Hur Mar 2011 B2
7909219 Cole et al. Mar 2011 B2
7909222 Cole et al. Mar 2011 B2
7909223 Cole et al. Mar 2011 B2
7913892 Cole et al. Mar 2011 B2
7918377 Measamer et al. Apr 2011 B2
7922062 Cole et al. Apr 2011 B2
7922743 Heinrich et al. Apr 2011 B2
7931183 Orban, III Apr 2011 B2
7938307 Bettuchi May 2011 B2
7942302 Roby et al. May 2011 B2
7951166 Orban, III et al. May 2011 B2
7959050 Smith et al. Jun 2011 B2
7967181 Viola et al. Jun 2011 B2
7975895 Milliman Jul 2011 B2
8002795 Beetel Aug 2011 B2
8006701 Bilotti et al. Aug 2011 B2
8006889 Adams et al. Aug 2011 B2
8011551 Marczyk et al. Sep 2011 B2
8011554 Milliman Sep 2011 B2
8016177 Bettuchi et al. Sep 2011 B2
8016858 Whitman Sep 2011 B2
8020741 Cole et al. Sep 2011 B2
8025199 Whitman et al. Sep 2011 B2
8028885 Smith et al. Oct 2011 B2
8038046 Smith et al. Oct 2011 B2
8043207 Adams Oct 2011 B2
8066167 Measamer et al. Nov 2011 B2
8066169 Viola Nov 2011 B2
8070035 Holsten et al. Dec 2011 B2
8070037 Csiky Dec 2011 B2
8096458 Hessler Jan 2012 B2
8109426 Milliman et al. Feb 2012 B2
8109427 Orban, III Feb 2012 B2
8113406 Holsten et al. Feb 2012 B2
8113407 Holsten et al. Feb 2012 B2
8123103 Milliman Feb 2012 B2
8128645 Sonnenschein et al. Mar 2012 B2
8132703 Milliman et al. Mar 2012 B2
8136712 Zingman Mar 2012 B2
8146790 Milliman Apr 2012 B2
8146791 Bettuchi et al. Apr 2012 B2
8181838 Milliman et al. May 2012 B2
8192460 Orban, III et al. Jun 2012 B2
8201720 Hessler Jun 2012 B2
8203782 Brueck et al. Jun 2012 B2
8211130 Viola Jul 2012 B2
8225799 Bettuchi Jul 2012 B2
8225981 Criscuolo et al. Jul 2012 B2
8231041 Marczyk et al. Jul 2012 B2
8231042 Hessler et al. Jul 2012 B2
8257391 Orban, III et al. Sep 2012 B2
8267301 Milliman et al. Sep 2012 B2
8272552 Holsten et al. Sep 2012 B2
8276802 Kostrzewski Oct 2012 B2
8281975 Criscuolo et al. Oct 2012 B2
8286845 Perry et al. Oct 2012 B2
8308045 Bettuchi et al. Nov 2012 B2
8312885 Bettuchi et al. Nov 2012 B2
8313014 Bettuchi Nov 2012 B2
8317073 Milliman et al. Nov 2012 B2
8317074 Ortiz et al. Nov 2012 B2
8322590 Patel et al. Dec 2012 B2
8328060 Jankowski et al. Dec 2012 B2
8328062 Viola Dec 2012 B2
8328063 Milliman et al. Dec 2012 B2
8343185 Milliman et al. Jan 2013 B2
8353438 Baxter, III et al. Jan 2013 B2
8353439 Baxter, III et al. Jan 2013 B2
8353930 Heinrich et al. Jan 2013 B2
8360295 Milliman et al. Jan 2013 B2
8365974 Milliman Feb 2013 B2
8403942 Milliman et al. Mar 2013 B2
8408441 Wenchell et al. Apr 2013 B2
8413870 Pastorelli et al. Apr 2013 B2
8413872 Patel Apr 2013 B2
8418905 Milliman Apr 2013 B2
8418909 Kostrzewski Apr 2013 B2
8424535 Hessler et al. Apr 2013 B2
8424741 McGuckin, Jr. et al. Apr 2013 B2
8430291 Heinrich et al. Apr 2013 B2
8430292 Patel et al. Apr 2013 B2
8453910 Bettuchi et al. Jun 2013 B2
8453911 Milliman et al. Jun 2013 B2
8485414 Criscuolo et al. Jul 2013 B2
8490853 Criscuolo et al. Jul 2013 B2
8511533 Viola et al. Aug 2013 B2
8551138 Orban, III et al. Oct 2013 B2
8567655 Nalagatla et al. Oct 2013 B2
8579178 Holsten et al. Nov 2013 B2
8590763 Milliman Nov 2013 B2
8590764 Hartwick et al. Nov 2013 B2
8608047 Holsten et al. Dec 2013 B2
8616428 Milliman et al. Dec 2013 B2
8616429 Viola Dec 2013 B2
8622275 Baxter, III et al. Jan 2014 B2
8631993 Kostrzewski Jan 2014 B2
8636187 Hueil et al. Jan 2014 B2
8640940 Ohdaira Feb 2014 B2
8662370 Takei Mar 2014 B2
8663258 Bettuchi et al. Mar 2014 B2
8672931 Goldboss et al. Mar 2014 B2
8678264 Racenet et al. Mar 2014 B2
8684248 Milliman Apr 2014 B2
8684250 Bettuchi et al. Apr 2014 B2
8684251 Rebuffat et al. Apr 2014 B2
8684252 Patel et al. Apr 2014 B2
8733611 Milliman May 2014 B2
9554802 Williams Jan 2017 B2
20030111507 Nunez Jun 2003 A1
20040195289 Aranyi Oct 2004 A1
20050006433 Milliman Jan 2005 A1
20050023325 Gresham Feb 2005 A1
20050051597 Toledano Mar 2005 A1
20050107813 Gilete Garcia May 2005 A1
20050116009 Milliman Jun 2005 A1
20050205639 Milliman Sep 2005 A1
20050205640 Milliman Sep 2005 A1
20060000869 Fontayne Jan 2006 A1
20060011698 Okada et al. Jan 2006 A1
20060097025 Milliman May 2006 A1
20060201989 Ojeda Sep 2006 A1
20070027473 Vresh et al. Feb 2007 A1
20070029363 Popov Feb 2007 A1
20070060952 Roby Mar 2007 A1
20080230581 Marczyk Sep 2008 A1
20090236392 Cole et al. Sep 2009 A1
20090236398 Cole et al. Sep 2009 A1
20090236401 Cole et al. Sep 2009 A1
20100019016 Edoga et al. Jan 2010 A1
20100038401 Milliman Feb 2010 A1
20100051668 Milliman et al. Mar 2010 A1
20100084453 Hu Apr 2010 A1
20100147923 D'Agostino et al. Jun 2010 A1
20100163598 Belzer Jul 2010 A1
20100224668 Fontayne et al. Sep 2010 A1
20100230465 Smith et al. Sep 2010 A1
20100258611 Smith et al. Oct 2010 A1
20100264195 Bettuchi Oct 2010 A1
20100327041 Milliman et al. Dec 2010 A1
20110011916 Levine Jan 2011 A1
20110114697 Baxter, III et al. May 2011 A1
20110114700 Baxter, III et al. May 2011 A1
20110144640 Heinrich et al. Jun 2011 A1
20110147432 Heinrich et al. Jun 2011 A1
20110192882 Hess et al. Aug 2011 A1
20120145755 Kahn Jun 2012 A1
20120193395 Pastorelli et al. Aug 2012 A1
20120193398 Williams et al. Aug 2012 A1
20120211544 Olson Aug 2012 A1
20120232339 Csiky Sep 2012 A1
20120273548 Ma et al. Nov 2012 A1
20120325888 Qiao Dec 2012 A1
20130015232 Smith et al. Jan 2013 A1
20130020372 Jankowski et al. Jan 2013 A1
20130020373 Smith et al. Jan 2013 A1
20130032628 Li et al. Feb 2013 A1
20130056516 Viola Mar 2013 A1
20130060258 Giacomantonio Mar 2013 A1
20130092720 Williams Apr 2013 A1
20130105544 Mozdzierz May 2013 A1
20130105546 Milliman et al. May 2013 A1
20130105551 Zingman May 2013 A1
20130126580 Smith et al. May 2013 A1
20130153630 Miller et al. Jun 2013 A1
20130153631 Vasudevan et al. Jun 2013 A1
20130153633 Casasanta, Jr. et al. Jun 2013 A1
20130153634 Carter et al. Jun 2013 A1
20130153638 Carter et al. Jun 2013 A1
20130153639 Hodgkinson et al. Jun 2013 A1
20130175315 Milliman Jul 2013 A1
20130175318 Felder et al. Jul 2013 A1
20130175319 Felder et al. Jul 2013 A1
20130175320 Mandakolathur Vasudevan et al. Jul 2013 A1
20130181035 Milliman Jul 2013 A1
20130181036 Olson et al. Jul 2013 A1
20130186930 Wenchell et al. Jul 2013 A1
20130193185 Patel Aug 2013 A1
20130193187 Milliman Aug 2013 A1
20130193190 Carter et al. Aug 2013 A1
20130193191 Stevenson et al. Aug 2013 A1
20130193192 Casasanta, Jr. et al. Aug 2013 A1
20130200131 Racenet et al. Aug 2013 A1
20130206816 Penna Aug 2013 A1
20130214027 Hessler et al. Aug 2013 A1
20130214028 Patel et al. Aug 2013 A1
20130228609 Kostrzewski Sep 2013 A1
20130240597 Milliman et al. Sep 2013 A1
20130240600 Bettuchi Sep 2013 A1
20130248581 Smith et al. Sep 2013 A1
20130277411 Hodgkinson et al. Oct 2013 A1
20130277412 Gresham et al. Oct 2013 A1
20130284792 Ma Oct 2013 A1
20130292449 Bettuchi et al. Nov 2013 A1
20130299553 Mozdzierz Nov 2013 A1
20130299554 Mozdzierz Nov 2013 A1
20130306701 Olson Nov 2013 A1
20130306707 Viola et al. Nov 2013 A1
20140008413 Williams Jan 2014 A1
20140012317 Orban et al. Jan 2014 A1
20140367450 Williams Dec 2014 A1
20170000486 Penna Jan 2017 A1
20170265857 Williams Sep 2017 A1
Foreign Referenced Citations (29)
Number Date Country
908529 Aug 1972 CA
1907239 Feb 2007 CN
1057729 May 1959 DE
3301713 Jul 1984 DE
0152382 Aug 1985 EP
0173451 Mar 1986 EP
0190022 Aug 1986 EP
0282157 Sep 1988 EP
0503689 Sep 1992 EP
0698376 Feb 1996 EP
1354560 Oct 2003 EP
1857058 Nov 2007 EP
2524656 Nov 2012 EP
2583631 Apr 2013 EP
2851011 Mar 2015 EP
1136020 May 1957 FR
1461464 Feb 1966 FR
1588250 Apr 1970 FR
2443239 Jul 1980 FR
1185292 Mar 1970 GB
2016991 Sep 1979 GB
2070499 Sep 1981 GB
7711347 Apr 1979 NL
1509052 Sep 1989 SU
8706448 Nov 1987 WO
8900406 Jan 1989 WO
9006085 Jun 1990 WO
2001054594 Aug 2001 WO
2008107918 Sep 2008 WO
Non-Patent Literature Citations (1)
Entry
European Search Report dated Nov. 3, 2016, issued in European Application No. 16177435.
Related Publications (1)
Number Date Country
20170000486 A1 Jan 2017 US