US2015201937A1PendingUtilityA1

Layer arrangements for surgical staple cartridges

Assignee: ETHICON ENDO SURGERY INCPriority: Feb 15, 2008Filed: Mar 30, 2015Published: Jul 23, 2015
Est. expiryFeb 15, 2028(~1.5 yrs left)· nominal 20-yr term from priority
A61B 2017/07228A61B 2017/2919A61B 2017/00893A61B 18/1445A61B 2050/314A61B 2017/00831A61B 50/30A61B 2017/07264A61B 2017/2927A61B 2017/2923A61B 17/07292A61B 17/1155A61B 2017/0053A61B 2017/0725A61B 17/0643A61B 2017/2946A61B 2017/07214A61B 2017/2933A61B 2017/005A61B 2017/07271A61B 2017/00526A61B 2018/1455A61B 2017/07285A61B 2017/07242A61B 2017/00473A61B 2017/00004A61B 2017/2936A61B 2017/2908A61B 17/07207A61B 17/072A61B 2017/07235A61B 17/068A61B 2017/07278A61B 17/105A61B 2018/00196A61B 2017/00477A61B 2090/034A61B 2017/00964A61B 2090/037
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Claims

Abstract

A piece of buttress material and an end-effector of a surgical instrument including features which can aid a surgeon in properly and quickly attaching the piece of buttress material to the end-effector. In various embodiments, a piece of buttress material can include retention features which can be engaged with portions of an end-effector to releasably retain the piece of buttress material to at least a portion of the end-effector. Similarly, an end-effector can include features configured to engage portions of a piece of buttress material to releasably retain the piece of buttress material to the end-effector. In at least one embodiment, more than one piece of buttress material can be releasably retained to an end-effector.

Claims

exact text as granted — not AI-modified
1 - 16 . (canceled) 
     
     
         17 . A surgical instrument system, comprising:
 an end effector, comprising:
 a first jaw; 
 a second jaw, wherein said second jaw is rotatable relative to said first jaw; 
 a staple cartridge, comprising:
 a deck comprising a first step and a second step; 
 a first longitudinal row of staple cavities defined in said first step; 
 a second longitudinal row of staple cavities defined in said second step; and 
 staples removably stored in said staple cavities; 
 
 an anvil, comprising:
 a tissue compression surface; and 
 forming pockets configured to deform said staples; 
 
   an applicator assembly, comprising:
 a support insertable between said deck and said tissue compression surface, wherein said support comprises a first support surface and a second support surface; 
 a first implantable layer releasably attached to said first support surface, wherein said first implantable layer comprises a first outwardly-facing surface configured to engage said first step and said second step of said deck; 
 a flowable polymer adhesive on said first outwardly-facing surface; 
 a second implantable layer releasably attached to said second support surface, wherein said second implantable layer comprises a second outwardly-facing surface configured to engage said tissue compression surface of said anvil; 
 a flowable polymer adhesive on said second outwardly-facing surface, wherein each said flowable polymer adhesive is comprised of a copolymer composed of polycaprolactone in the range of from about 65 mole percent to about 35 mole percent; and 
 removable packaging which covers said first implantable layer and said second implantable layer and inhibits the inadvertent attachment of said flowable polymer adhesive. 
   
     
     
         18 . The surgical instrument system of  claim 17 , wherein said copolymer is further composed of polyglycolic acid in the range of from about 35 mole percent to about 65 mole percent. 
     
     
         19 . The surgical instrument system of  claim 17 , further comprising an indexing feature defined on one of said first implantable layer and said second implantable layer configured to assist in aligning said first implantable layer with said deck and said second implantable layer with said compression surface. 
     
     
         20 . The surgical instrument system of  claim 17 , wherein said support is positionable between said deck and said tissue compression surface in an alternate orientation in which said first implantable layer is releasably attached to said anvil and said second implantable layer is releasably attached to said deck. 
     
     
         21 . The surgical instrument system of  claim 17 , further comprising an attachment portion configured to be attached to a shaft of a surgical stapling instrument. 
     
     
         22 . The surgical instrument system of  claim 17 , wherein said staple cartridge is configured to be removed from said end effector and replaced with another staple cartridge. 
     
     
         23 . A surgical instrument system, comprising:
 an end effector, comprising:
 a first jaw; 
 a second jaw, wherein said second jaw is rotatable relative to said first jaw; 
 a staple cartridge, comprising:
 a deck; 
 a first longitudinal row of staple cavities; 
 a second longitudinal row of staple cavities; and 
 staples removably stored in said staple cavities; 
 
 an anvil, comprising:
 a tissue compression surface; and 
 forming pockets configured to deform said staples; 
 
   an applicator assembly, comprising:
 a support insertable between said deck and said tissue compression surface, wherein said support comprises a first support surface and a second support surface; 
 a first implantable layer releasably attached to said first support surface, wherein said first implantable layer comprises a deck; 
 a flowable polymer adhesive on said first outwardly-facing surface; 
 a second implantable layer releasably attached to said second support surface, wherein said second implantable layer comprises a second outwardly-facing surface configured to engage said tissue compression surface of said anvil; 
 a flowable polymer adhesive on said second outwardly-facing surface, wherein each said flowable polymer adhesive is comprised of a copolymer composed of polyglycolic acid in the range of from about 35 mole percent to about 65 mole percent; and 
 removable packaging which covers said first implantable layer and said second implantable layer and inhibits the inadvertent attachment of said flowable polymer adhesive. 
   
     
     
         24 . The surgical instrument system of  claim 23 , wherein said copolymer is further composed of polycaprolactone in the range of from about 65 mole percent to about 35 mole percent. 
     
     
         25 . The surgical instrument system of  claim 23 , further comprising an indexing feature defined on one of said first implantable layer and said second implantable layer configured to assist in aligning said first implantable layer with said deck and said second implantable layer with said compression surface. 
     
     
         26 . The surgical instrument system of  claim 23 , wherein said support is positionable between said deck and said tissue compression surface in an alternate orientation in which said first implantable layer is releasably attached to said anvil and said second implantable layer is releasably attached to said deck. 
     
     
         27 . The surgical instrument system of  claim 23 , further comprising an attachment portion configured to be attached to a shaft of a surgical stapling instrument. 
     
     
         28 . The surgical instrument system of  claim 23 , wherein said staple cartridge is configured to be removed from said end effector and replaced with another staple cartridge. 
     
     
         29 . A surgical instrument system, comprising:
 an end effector, comprising:
 a first jaw; 
 a second jaw, wherein said second jaw is rotatable relative to said first jaw; 
 a staple cartridge, comprising:
 a deck; 
 a first longitudinal row of staple cavities; 
 a second longitudinal row of staple cavities; and 
 staples removably stored in said staple cavities; 
 
 an anvil, comprising:
 a tissue compression surface; and 
 forming pockets configured to deform said staples; 
 
   an applicator assembly, comprising:
 a support insertable between said deck and said tissue compression surface, wherein said support comprises a first support surface and a second support surface; 
 a first implantable layer releasably attached to said first support surface, wherein said first implantable layer comprises a deck; 
 a flowable polymer adhesive on said first outwardly-facing surface; 
 a second implantable layer releasably attached to said second support surface, wherein said second implantable layer comprises a second outwardly-facing surface configured to engage said tissue compression surface of said anvil; 
 a flowable polymer adhesive on said second outwardly-facing surface, wherein each said flowable polymer adhesive is comprised of a copolymer composed of polyglycolic acid in the range of from about 35 mole percent to about 65 mole percent and polycaprolactone in the range of from about 65 mole percent to about 35 mole percent; and 
 an indexing feature defined on one of said first implantable layer and said second implantable layer configured to assist in aligning said first implantable layer with said deck and said second implantable layer with said compression surface 
   
     
     
         30 . The surgical instrument system of  claim 29 , wherein said support is positionable between said deck and said tissue compression surface in an alternate orientation in which said first implantable layer is releasably attached to said anvil and said second implantable layer is releasably attached to said deck. 
     
     
         31 . The surgical instrument system of  claim 29 , further comprising an attachment portion configured to be attached to a shaft of a surgical stapling instrument. 
     
     
         32 . The surgical instrument system of  claim 29 , wherein said staple cartridge is configured to be removed from said end effector and replaced with another staple cartridge. 
     
     
         33 . The surgical instrument system of  claim 29 , further comprising removable packaging which covers said first implantable layer and said second implantable layer and inhibits the inadvertent attachment of said flowable polymer adhesive.

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