IP Library Granted Patent US 11,957,795
Granted Patent B2
US 11,957,795 · App. 17/549,084 · Granted Apr 16, 2024

Tissue thickness compensator configured to redistribute compressive forces

Inventors: Katherine J. Schmid (Loveland, OH); Frederick E. Shelton, IV (Hillsboro, OH); Bret W. Smith (South Lebanon, OH)
Assignee: Cilag GmbH International
A61K9/70A61B17/07292A61B2017/00004A61B2017/00526A61B2017/00884A61B2017/00893
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Quick Facts
Patent No.
US 11,957,795
App. No.
17/549,084
Filed
Dec 13, 2021
Granted
Apr 16, 2024
Kind
B2
Art Unit
3731
USPC
227/175.1
Abstract

A tissue thickness compensator may generally comprise a compressible core comprising a plurality of movable particles, and a wrap surrounding the compressible core. The plurality of movable particles may comprise at least one medicament. A tissue thickness compensator may generally comprise a compressible core comprising a plurality of crushable particles, and a wrap surrounding the compressible core. The plurality of crushable particles may comprise at least one medicament. The compressible core may comprise a material selected from a group consisting of a biocompatible material. The wrap may comprise a material selected from a group consisting of a biocompatible material. Articles of manufacture comprising the tissue thickness compensator and methods of making and using the tissue thickness compensator are also described.

Claims (62)

1. A stapling system for stapling the tissue of a patient, said stapling system comprising:

a first jaw;

a second jaw, wherein one of said first jaw and said second jaw is movable relative to the other of said first jaw and said second jaw between an open position and a closed position to capture the patient tissue therebetween;

a staple cartridge, comprising:

a deck;

a longitudinal slot configured to receive a firing driver, wherein said firing driver moves through said staple cartridge during a staple firing stroke;

staple cavities defined in said deck and arranged in a plurality of longitudinal staple cavity rows, wherein said plurality of longitudinal staple cavity rows comprises a first longitudinal staple cavity row and a second longitudinal staple cavity row;

staple drivers; and

staples removably stored in said staple cavities, wherein said staples are configured to be ejected from said staple cavities during said staple firing stroke; and

an adjunct positioned intermediate said first jaw and said second jaw, wherein said adjunct comprises:

a tissue thickness compensator comprising a porous structure, wherein said porous structure comprises:

a plurality of first openings, wherein at least one of said first openings is aligned with said first longitudinal staple cavity row; and

a plurality of second openings that are larger than said plurality of first openings; and

an attachment layer, wherein said attachment layer adhesively attaches said adjunct to said deck of said staple cartridge, and wherein each staple is configured to capture a portion of said adjunct, capture a portion of the patient tissue, and apply a compressive force to the patient tissue during said staple firing stroke.

2. The stapling system of claim 1 , wherein said adjunct comprises cutout regions aligned with and facing each of said staple cavities in said deck of said staple cartridge.

3. The stapling system of claim 1 , wherein said deck comprises a plurality of projections extending above said deck adjacent to said staple cavities, and wherein said plurality of projections extend into said adjunct.

4. The stapling system of claim 1 , wherein at least one of said second openings is aligned with said second longitudinal staple cavity row.

5. The stapling system of claim 4 , wherein said at least one of said first openings and said at least one of said second openings comprise different depths.

6. The stapling system of claim 1 , wherein each said first opening comprises a cross-sectional profile comprising a base and angled sidewalls extending from said base toward a tissue-contacting surface of said tissue thickness compensator.

7. The stapling system of claim 1 , wherein a first staple leg and a second staple leg of at least one of said staples is configured to enter said at least one of said first openings as said at least one of said staples is ejected during said staple firing stroke.

8. A stapling system for stapling the tissue of a patient, said stapling system comprising:

a staple cartridge, comprising:

a deck;

a longitudinal slot configured to receive a firing driver, wherein said firing driver moves through said staple cartridge during a staple firing stroke;

staple cavities defined in said deck;

and

staples removably stored in said staple cavities, wherein said staples are configured to be ejected from said staple cavities during said staple firing stroke, wherein said staples are arranged in a plurality of longitudinal staple rows, wherein said plurality of longitudinal staple rows comprises a first longitudinal staple row and a second longitudinal staple row; and

an adjunct, comprising:

a tissue thickness compensator comprising a cartridge-facing surface, wherein said tissue thickness compensator comprises:

a plurality of first openings defined in said cartridge-facing surface, wherein at least one of said first openings is aligned with said first longitudinal staple row; and

a plurality of second openings that are larger than said plurality of first openings; and

an attachment layer, wherein said attachment layer adhesively attaches said adjunct to said deck of said staple cartridge, and wherein each staple is configured to capture a portion of said adjunct, capture a portion of the patient tissue, and apply a compressive force to the patient tissue during said staple firing stroke.

9. A stapling system for stapling the tissue of a patient, said stapling system comprising:

a staple cartridge, comprising:

a deck;

a longitudinal slot configured to receive a firing driver, wherein said firing driver moves through said staple cartridge during a staple firing stroke;

staple cavities defined in said deck;

staple drivers; and

staples removably stored in said staple cavities, wherein said staples are configured to be ejected from said staple cavities during said staple firing stroke; and

an adjunct, comprising:

a tissue thickness compensator, comprising:

a plurality of first porous openings; and

a plurality of second porous openings that are larger than said plurality of first porous openings; and

an attachment layer, wherein said attachment layer adhesively attaches said adjunct to said deck of said staple cartridge, wherein each staple is configured to capture a portion of said adjunct, capture a portion of the patient tissue, and apply a compressive force to the patient tissue during said staple firing stroke, and wherein said first porous openings and said second porous openings are configured to be collapsed during said staple firing stroke, and

wherein said adjunct comprises cutout regions aligned with and facing each of said staple cavities in said deck of said staple cartridge.

10. A stapling system for stapling the tissue of a patient, said stapling system comprising:

a staple cartridge, comprising:

a deck;

a longitudinal slot configured to receive a firing driver, wherein said firing driver moves through said staple cartridge during a staple firing stroke;

staple cavities defined in said deck;

staple drivers; and

staples removably stored in said staple cavities, wherein said staples are configured to be ejected from said staple cavities during said staple firing stroke; and

an adjunct, comprising:

a tissue thickness compensator, comprising:

a plurality of first porous openings; and

a plurality of second porous openings that are larger than said plurality of first porous openings; and

an attachment layer, wherein said attachment layer adhesively attaches said adjunct to said deck of said staple cartridge, wherein each staple is configured to capture a portion of said adjunct, capture a portion of the patient tissue, and apply a compressive force to the patient tissue during said staple firing stroke, and wherein said first porous openings and said second porous openings are configured to be collapsed during said staple firing stroke, and

wherein said deck comprises a plurality of projections extending above said deck adjacent to said staple cavities, and wherein said plurality of projections extend into said adjunct.

11. The stapling system of claim 8 , wherein at least one of said second openings is aligned with said second longitudinal staple row.

12. The stapling system of claim 11 , wherein said at least one of said first openings and said at least one of said second openings comprise different depths.

13. The stapling system of claim 8 , wherein each said first opening comprises a cross-sectional profile comprising a base and angled sidewalls extending from said base toward a tissue-contacting surface of said tissue thickness compensator.

14. The stapling system of claim 8 , wherein a first staple leg and a second staple leg of at least one of said staples is configured to enter said at least one of said first openings as said at least one of said staples is ejected during said staple firing stroke.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2022
From: SCHMID, KATHERINE J.; SHELTON, FREDERICK E., IV
To: ETHICON ENDO-SURGERY, INC.
Reel/Frame 060212/0113 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2022
From: ETHICON ENDO-SURGERY, INC.
To: ETHICON ENDO-SURGERY, LLC
Reel/Frame 060212/0243 →
CHANGE OF NAME Recorded Jun 15, 2022
From: ETHICON ENDO-SURGERY, LLC
To: ETHICON LLC
Reel/Frame 060212/0307 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2022
From: SMITH, BRET W.
To: CILAG GMBH INTERNATIONAL
Reel/Frame 060212/0479 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2022
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 060449/0587 →
Continuity (7)
Continuation 16851528 · Apr 17, 2020
Continuation 15480854 · Apr 6, 2017
Continuation 14220779 · Mar 20, 2014
Continuation In Part 13433175 · Mar 28, 2012
Continuation In Part 13097891 · Apr 29, 2011
Continuation In Part 12894377 · Sep 30, 2010
Related Publication 20220313619A1 · Oct 6, 2022
Cited By (1)
US 12,408,914