Ultrasonic surgical blades
An ultrasonic surgical blade includes a body having a proximal end, a distal end, and an outer surface. The distal end is movable relative to a longitudinal axis in accordance with ultrasonic vibrations applied to the proximal end. At least a portion of the outer surface of the body comprises a lubricious coating adhered thereto. The lubricious coating has a coefficient of friction that is less than the coefficient of friction of the outer surface of the body.
1. An ultrasonic surgical blade, comprising:
a body, comprising:
a proximal end;
a distal end movable relative to a curved axis extending from the proximal end in accordance with ultrasonic vibrations applied to the proximal end, wherein the body extends along the curved axis from the proximal end to the distal end; and
a tissue treatment region comprising an outer surface, wherein the outer surface comprises a body coefficient of friction; and
a coating adhered to at least a portion of the tissue treatment region and configured to directly contact the tissue to be treated, wherein the coating comprises a coating coefficient of friction that is less than the body coefficient of friction, and wherein the coating comprises a polymeric material.
2. The ultrasonic surgical blade of claim 1 , wherein the body is asymmetric with respect to a longitudinal axis extending distally from the proximal end.
3. The ultrasonic surgical blade of claim 1 , wherein the distal end is misaligned with a longitudinal axis extending distally from the proximal end.
4. The ultrasonic surgical blade of claim 1 , wherein the polymeric material is selected from the following group: tetrafluoroethylene (TFE) and hexafluoropropylene (HFP) copolymers (FEP), liquid FEP, FEP/ceramic composites, liquid FEP ceramic epoxy composites, polytetrafluoroethylene (PTFE), PTFE/ceramic composites, and combinations thereof.
5. The ultrasonic surgical blade of claim 1 , further comprising a surface treatment formed on at least a portion of the outer surface to enhance adhesion of the coating.
6. The ultrasonic surgical blade of claim 1 , wherein the coating comprises a thickness of about 0.0001 inches to about 0.010 inches.
7. An ultrasonic surgical blade, comprising:
an asymmetrical body, comprising:
a proximal end;
a distal end movable relative to an axis in accordance with ultrasonic vibrations applied to the proximal end; and
a tissue treatment region comprising an outer surface, wherein the outer surface comprises a body coefficient of friction; and
a coating adhered to at least a portion of the tissue treatment region and configured to directly contact the tissue to be treated, wherein the coating comprises a coating coefficient of friction that is less than the body coefficient of friction, and wherein the coating comprises a polymeric material.
8. The ultrasonic surgical blade of claim 7 , wherein the asymmetrical body comprises a curved body.
9. The ultrasonic surgical blade of claim 8 , wherein the curved body curves away from a longitudinal axis extending distally from the proximal end.
10. The ultrasonic surgical blade of claim 7 , wherein the tissue treatment region is asymmetric with respect to a longitudinal axis extending distally from the proximal end.
11. The ultrasonic surgical blade of claim 7 , wherein the polymeric material is selected from the following group: tetrafluoroethylene (TFE) and hexafluoropropylene (HFP) copolymers (FEP), liquid FEP, FEP/ceramic composites, liquid FEP ceramic epoxy composites, polytetrafluoroethylene (PTFE), PTFE/ceramic composites, and combinations thereof.
12. The ultrasonic surgical blade of claim 7 , further comprising a surface treatment formed on at least a portion of the outer surface to enhance adhesion of the coating.
13. The ultrasonic surgical blade of claim 7 , wherein the coating comprises a thickness of about 0.0001 inches to about 0.010 inches.
14. An ultrasonic surgical blade, comprising:
a curved body, comprising:
a proximal end;
a distal end movable relative to an axis in accordance with ultrasonic vibrations applied to the proximal end; and
a tissue treatment region comprising an outer surface, wherein the outer surface comprises a body coefficient of friction; and
a coating adhered to at least a portion of the tissue treatment region and configured to directly contact the tissue to be treated, wherein the coating comprising a coating coefficient of friction that is less than the body coefficient of friction, and wherein the coating comprises a polymeric material.
15. The ultrasonic surgical blade of claim 14 , wherein the curved body is asymmetric with respect to a longitudinal axis extending distally from the proximal end.
16. The ultrasonic surgical blade of claim 14 , wherein the tissue treatment region is asymmetric with respect to a longitudinal axis extending distally from the proximal end.
17. The ultrasonic surgical blade of claim 14 , wherein the distal end is misaligned with a longitudinal axis extending distally from the proximal end.
18. The ultrasonic surgical blade of claim 14 , wherein the polymeric material is selected from the following group: tetrafluoroethylene (TFE) and hexafluoropropylene (HFP) copolymers (FEP), liquid FEP, FEP/ceramic composites, liquid FEP ceramic epoxy composites, polytetrafluoroethylene (PTFE), PTFE/ceramic composites, and combinations thereof.
19. The ultrasonic surgical blade of claim 14 , further comprising a surface treatment formed on at least a portion of the outer surface to enhance adhesion of the coating.
20. The ultrasonic surgical blade of claim 14 , wherein the coating comprises a thickness of about 0.0001 inches to about 0.010 inches.