SURGICAL STAPLE FOR USE WITH COMBINATION ELECTROSURGICAL INSTRUMENTS
Disclosed is a surgical staple for a combination energy stapler surgical instrument. The staple includes a crown defining a base, first and second deformable legs extending from the each end of the base and an electrically insulative material disposed on at least a portion of the base.
1 . A surgical staple for a combination energy stapler surgical instrument, the staple comprising:
a crown defining a base;
first and second deformable legs extending from the each end of the base; and
an electrically insulative material disposed on at least a portion of the base.
2 . The surgical staple of claim 1 , wherein the electrically insulative material is overmolded on the base.
3 . The surgical staple of claim 1 , wherein the electrically insulative material is coated on the base.
4 . The surgical staple of claim 1 , wherein the electrically insulative material has a thickness in the range of 0.0005 inches to 0.0015 inches.
5 . The surgical staple of claim 4 , wherein the electrically insulative material has a thickness of 0.001 inches.
6 . The surgical staple of claim 1 , wherein the electrically insulative material comprises a lactide and glycolide copolymer plus calcium stearate.
7 . The surgical staple of claim 1 , wherein the electrically insulative material comprises a polymer.
8 . The surgical staple of claim 7 , wherein the polymer is polyisobutene.
9 . The surgical staple of claim 1 , wherein the electrically insulative material comprises a polyimide.
10 . The surgical staple of claim 1 , wherein the electrically insulative material comprises a material having variable electrical resistance that increases resistance as a function of temperature.
11 . The surgical staple of claim 1 , wherein the electrically insulative material comprises a variable resistance thermally sensitive material.
12 . A surgical staple for a combination energy stapler surgical instrument, the staple comprising:
a crown defining a base;
first and second deformable legs extending from the each end of the base;
a first electrically conductive material disposed on at least a first portion of the base; and
a second electrically conductive material disposed on at least a second portion of the base;
wherein electrical conductivity of the first electrically conductive material is different from the electrical conductivity of the second electrically conductive material.
13 . The surgical staple of claim 12 , wherein the first and second electrically conductive materials are the same and the electrical conductivity varies based on different geometries of the first and second electrically conductive materials deposited on the first and second portions of the base.
14 . The surgical staple of claim 12 , wherein the first and second electrically conductive materials have different compositions and the electrical conductivity varies based on the different compositions of the first and second electrically conductive materials deposited on the first and second portions of the base.
15 . The surgical staple of claim 14 , wherein the first and second electrically conductive materials have similar geometries.
16 . A surgical staple for a combination energy stapler surgical instrument, the staple comprising:
a crown defining a base;
first and second deformable legs extending from the each end of the base; and
a ferroelectric ceramic material disposed on at least a portion of the base.
17 . The surgical staple of claim 16 , wherein the ferroelectric ceramic comprises barium titanate.
18 . The surgical staple of claim 16 , wherein the ferroelectric ceramic comprises lead zirconate titanate.