IP Library Granted Patent US 9,839,422
Granted Patent B2
US 9,839,422 · App. 14/187,383 · Granted Dec 12, 2017

Implantable layers and methods for altering implantable layers for use with surgical fastening instruments

Inventors: Emily A. Schellin (Cincinnati, OH); Michael J. Vendely (Lebanon, OH); Lauren S. Weaner (Cincinnati, OH); Frederick E. Shelton, IV (Hillsboro, OH); Taylor W. Aronhalt (Loveland, OH); Donald L. Reynolds, II (West Chester, OH); Mark D. Timmer (Jersey City, NJ); Jackie J. Donners (Pennington, NJ); Trevor J. Barton (Cincinnati, OH)
Assignee: Ethicon LLC
A61B17/068A61B17/07207A61B17/07292A61L31/04A61L31/146A61B17/0644A61B2017/00004A61B2017/00526A61B2017/07242A61B2017/07278A61B2017/07285
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Quick Facts
Patent No.
US 9,839,422
App. No.
14/187,383
Granted
Dec 12, 2017
Kind
B2
Abstract

A method is disclosed for altering a implantable layer which includes the steps of obtaining an implantable layer comprising a surface at least partially comprised from a material with a glass transition temperature and a melting temperature, heating the surface to a temperature higher than the glass transition temperature and lower than the melting temperature, manipulating the surface, allowing the manipulated surface to cool below the glass transition temperature, and releasing the surface.

Claims (36)

1. A method for producing a biocompatible foam for use with a surgical stapler, said method comprising the steps of:

obtaining a biocompatible polymer comprising a glass transition temperature and a melting temperature;

dissolving said biocompatible polymer in a solvent to produce a solution;

lyophilizing said solution to produce a biocompatible foam;

heating said biocompatible foam to a temperature higher than said glass transition temperature and lower than said melting temperature;

inserting a space creator into said biocompatible foam in order to define a space in said biocompatible foam;

allowing said biocompatible foam to cool below said glass transition temperature; and

removing said space creator, wherein said biocompatible foam retains said space after removing said space creator.

2. The method of claim 1 , wherein said space creator comprises a central beam insertable into said biocompatible foam.

3. The method of claim 1 , wherein said space creator comprises a plurality of protrusions insertable into said biocompatible foam.

4. The method of claim 3 , wherein said plurality of protrusions is arranged in rows.

5. The method of claim 3 , wherein said plurality of protrusions comprises a plurality of pins, wherein said space creator comprises a surface, and wherein each of said plurality of pins extends from said surface in parallel to each other.

6. The method of claim 5 , wherein said each of said plurality of pins extends from said surface along an axis that is perpendicular to said surface.

7. The method of claim 1 , further comprising the step of actively cooling said biocompatible foam to return below said glass transition temperature.

8. A method for altering a biocompatible foam, said method comprising the steps of:

obtaining a biocompatible foam comprising a melting temperature;

heating a space creator to a temperature at least equal to said melting temperature of said biocompatible foam;

inserting said space creator into said biocompatible foam in order to define a space in said biocompatible foam;

allowing said biocompatible foam to cool below said melting temperature; and

removing said space creator, wherein said biocompatible foam retains said space after removing said space creator.

9. The method of claim 8 , wherein said space creator comprises a central beam insertable into said biocompatible foam.

10. The method of claim 8 , wherein said space creator comprises a plurality of protrusions insertable into said biocompatible foam.

11. A method for producing a biocompatible foam for use with a surgical stapler, said method comprising the steps of:

obtaining a biocompatible polymer comprising a glass transition temperature and a melting temperature;

dissolving said biocompatible polymer in a solvent to produce a solution;

lyophilizing said solution to produce a biocompatible foam;

heating said biocompatible foam to a temperature higher than said glass transition temperature and lower than said melting temperature;

inserting a beam into said biocompatible foam in order to create a slot in said biocompatible foam;

allowing said biocompatible foam to cool below said glass transition temperature; and

removing said beam from said biocompatible foam, wherein said biocompatible foam retains said slot after removing said beam.

12. A method for altering a biocompatible foam, said method comprising the steps of:

obtaining a biocompatible foam comprising a melting temperature;

heating a space creator to a temperature at least equal to said melting temperature of said biocompatible foam;

inserting a plurality of protrusions into said biocompatible foam in order to create a plurality of cavities;

allowing said biocompatible foam to cool below said melting temperature; and

removing said plurality of protrusions, wherein said biocompatible foam retains said plurality of cavities after removing said plurality of protrusions.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056601/0339 →
CHANGE OF NAME Recorded Feb 28, 2017
From: ETHICON ENDO-SURGERY, LLC
To: ETHICON LLC
Reel/Frame 041828/0945 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2015
From: ETHICON ENDO-SURGERY, INC.
To: ETHICON ENDO-SURGERY, LLC
Reel/Frame 037219/0677 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2014
From: SCHELLIN, EMILY A.; VENDELY, MICHAEL J.; WEANER, LAUREN S.; SHELTON, FREDERICK E., IV; ARONHALT, TAYLOR W.; REYNOLDS, DONALD L., II; TIMMER, MARK D.; DONNERS, JACKIE J.; BARTON, TREVOR J.
To: ETHICON ENDO-SURGERY, INC.
Reel/Frame 033046/0036 →
Continuity (1)
Related Publication 20150238185A1 · Aug 27, 2015