Surgical stapling cartridge with layer retention features
View Patent ↗A fastener cartridge assembly includes a plurality of fasteners and a layer configured to be captured by the fasteners. In addition, the layer includes a tissue contacting surface which includes a plurality of cleats, and/or any other suitable structures, configured to reduce slippage between the layer and the patient tissue. In various embodiments, the layer can include traction features extending therefrom.
1. A staple cartridge assembly, comprising:
a cartridge body, comprising:
a deck; and
a plurality of staples; and
an implantable layer configured to be captured by said staples, wherein said implantable layer comprises a tissue contacting surface, wherein said tissue contacting surface comprises a plurality of cleats configured to reduce tissue slippage relative to said implantable layer, wherein said cleats comprise small contact areas, wherein said small contact areas are configured to improve traction against said tissue by contacting without puncturing said tissue.
2. The staple cartridge assembly of claim 1 , wherein said implantable layer comprises a tissue thickness compensator.
3. The staple cartridge assembly of claim 2 , wherein said tissue thickness compensator comprises internal compression features within said implantable layer.
4. The staple cartridge assembly of claim 1 , wherein said cleats comprise micro-structures.
5. The staple cartridge assembly of claim 1 , wherein said cleats comprise nano-structures.
6. The staple cartridge assembly of claim 1 , wherein said cleats comprise pillars.
7. The staple cartridge assembly of claim 1 , wherein said implantable layer comprises a biocompatible film, and wherein said cleats are compression molded into said biocompatible film.
8. The staple cartridge assembly of claim 1 , wherein said cleats are arranged in a pattern.
9. A surgical stapler, comprising:
an anvil; and
a staple cartridge assembly comprising:
a cartridge body, comprising:
a deck; and
a plurality of staples; and
an implantable layer configured to be captured by said staples, said implantable layer comprising a tissue contacting surface, wherein said tissue contacting surface comprises traction means for improving traction against tissue, wherein said traction means comprise small contact areas, wherein said small contact areas on said traction means are configured to reduce lateral movement of said tissue against said implantable layer, by contacting without piercing said tissue.
10. The surgical stapler of claim 9 , wherein said implantable layer comprises a tissue thickness compensator.
11. The surgical stapler of claim 10 , wherein said tissue thickness compensator comprises internal compression features within said implantable layer.
12. The surgical stapler of claim 9 , wherein said traction means comprises micro-structures.
13. The surgical stapler of claim 9 , wherein said traction means comprises nano-structures.
14. The surgical stapler of claim 9 , wherein said traction means comprises a plurality of pillars.
15. The surgical stapler of claim 9 , wherein said implantable layer comprises a biocompatible film, and wherein said traction means are compression molded into said biocompatible film.
16. The surgical stapler of claim 9 , wherein said traction means comprises a plurality of protrusions arranged in a pattern.
17. A surgical stapler, comprising:
an anvil; and
a staple cartridge assembly, comprising:
a cartridge body, comprising:
a deck; and
a plurality of staples; and
an implantable layer configured to be captured by said staples, said implantable layer comprising a tissue contacting surface, wherein said tissue contacting surface comprises cleats each including small contact areas configured to reduce longitudinal movement of tissue against said implantable layer by atraumatically contacting said tissue.
18. A staple cartridge assembly, comprising:
a cartridge body, comprising:
a deck; and
a plurality of staples; and
an implantable layer configured to be captured by said staples, wherein said implantable layer comprises a tissue contacting surface, wherein said tissue contacting surface comprises cleats that include contact areas configured to improve traction against tissue in contact with said tissue contacting surface, and wherein said cleats comprise:
a first cleat comprising a first height; and
a second cleat comprising a second height, wherein said first cleat is positioned at a distance from said second cleat, and wherein said distance is greater than at least one of said first height and said second height.