Method of applying a buttress to a surgical stapler end effector
A buttress is applied to an end effector of a surgical stapler. The buttress is loaded on a platform of a buttress applier cartridge. The end effector is closed upon the platform. An adhesive layer of the buttress secures the buttress to the end effector. The buttress is thus adhered to the end effector when the end effector is opened. The end effector is then actuated on tissue of a patient, thereby stapling the buttress to the tissue.
1. A buttress assembly configured for use with an end effector of a surgical stapler, comprising:
(a) a buttress body having:
(i) a compressible layer configured to contact tissue clamped by the end effector during closure thereof, and
(ii) an attachment surface disposed over the compressible layer; and
(b) an adhesive layer disposed over the attachment surface of the buttress body, wherein the adhesive layer includes a viscous adhesive, wherein the adhesive layer is configured to releasably adhere to a stapling surface of the end effector in response to closure of the end effector on the buttress assembly,
wherein the buttress body is configured to be pierced and captured by staples ejected from the end effector into the clamped tissue and thereby reinforce the engagement between the ejected staples with the clamped tissue,
wherein the adhesive layer defines an exposed surface configured to contact the stapling surface of the end effector, wherein the exposed surface extends along at least one of a width or a length of the buttress body.
2. The buttress assembly of claim 1 , wherein the compressible layer includes a compressible mesh layer.
3. The buttress assembly of claim 2 , wherein the compressible mesh layer includes a plurality of fibers arranged in a matrix.
4. The buttress assembly of claim 3 , wherein the fibers are interwoven with one another.
5. The buttress assembly of claim 1 , wherein the compressible layer defines a plurality of openings, wherein the attachment surface extends over the plurality of openings.
6. The buttress assembly of claim 1 , wherein the attachment surface extends continuously along the length of the buttress body.
7. The buttress assembly of claim 1 , wherein the compressible layer has a greater porosity than the attachment surface.
8. The buttress assembly of claim 1 , wherein the attachment surface has a greater surface continuity than the compressible layer.
9. The buttress assembly of claim 1 , wherein the attachment surface includes a different material than the compressible layer.
10. The buttress assembly of claim 1 , wherein the attachment surface is secured to the compressible layer.
11. The buttress assembly of claim 1 , wherein the buttress body further has a film layer disposed over the compressible layer, wherein the attachment surface is presented by the film layer.
12. The buttress assembly of claim 1 , wherein the compressible layer has a variable compressibility along the length of the buttress body.
13. The buttress assembly of claim 1 , wherein the compressible layer has a variable compressibility along the width of the buttress body.
14. The buttress assembly of claim 1 , wherein the viscous adhesive comprises a humidity tolerant adhesive.
15. The buttress assembly of claim 1 , wherein at least the buttress body of the buttress assembly is configured to separate from the stapling surface in response to opening of the end effector after the staples have been ejected into the clamped tissue.
16. The buttress assembly of claim 1 , wherein the attachment surface has different surface properties than the compressible layer.
17. The buttress assembly of claim 1 , wherein the exposed surface extends along both of the width and the length of the buttress body.
18. A surgical instrument, comprising:
(a) the buttress assembly of claim 1 , and
(b) the surgical stapler including the end effector, wherein the adhesive layer of the buttress assembly is releasably adhered to the stapling surface of the end effector via contact between the exposed surface of the adhesive layer and the stapling surface of the end effector.
19. A buttress assembly configured for use with an end effector of a surgical stapler, comprising:
(a) a buttress body having:
(i) a compressible layer configured to contact tissue clamped by the end effector during closure thereof, and
(ii) an attachment surface disposed over the compressible layer; and
(b) an adhesive layer disposed over the attachment surface of the buttress body, wherein the adhesive layer includes a viscous adhesive, wherein the adhesive layer is configured to releasably adhere to a stapling surface of the end effector in response to closure of the end effector on the buttress assembly,
wherein the buttress body is configured to be pierced and captured by staples ejected from the end effector into the clamped tissue and thereby reinforce the engagement between the ejected staples with the clamped tissue,
wherein the adhesive layer defines an exposed surface configured to contact the stapling surface of the end effector prior to piercing and capturing of the buttress body by the staples ejected from the end effector into the clamped tissue.
20. A buttress assembly configured for use with an end effector of a surgical stapler, comprising:
(a) a buttress body having:
(i) a compressible layer configured to contact tissue clamped by the end effector during closure thereof, and
(ii) an attachment surface disposed over the compressible layer; and
(b) an adhesive layer disposed over the attachment surface of the buttress body, wherein the adhesive layer includes a viscous adhesive, wherein the adhesive layer is configured to releasably adhere to a stapling surface of the end effector in response to closure of the end effector on the buttress assembly,
wherein the buttress body is configured to be pierced and captured by staples ejected from the end effector into the clamped tissue and thereby reinforce the engagement between the ejected staples with the clamped tissue,
wherein the adhesive layer is exposed such that the adhesive layer is configured to contact the stapling surface of the end effector prior to piercing and capturing of the buttress body by the staples ejected from the end effector into the clamped tissue.