Method of treatment with adjustable ferromagnetic coated conductor thermal surgical tool
An electrical conductor, such as a wire or catheter, which is coated circumferentially with a ferromagnetic material in a selected region, is fed from a high frequency alternating current source. The ferromagnetic material has a quick response in heating and cooling to the controllable power delivery. The ferromagnetic material can be used for separating tissue, coagulation, tissue destruction or achieving other desired tissue effects in numerous surgical procedures.
1. A method for treating tissue, the method comprising:
selecting a conductor having a ferromagnetic coating disposed on a portion thereof, the conductor extending through the entire ferromagnetic coating;
disposing the ferromagnetic coating into contact with the tissue; and
delivering an oscillating electrical signal to the conductor so as to heat the ferromagnetic coating; and
treating the tissue; and
wherein delivering an oscillating electrical signal to the conductor comprises variably controlling power of the oscillating electrical signal to heat the ferromagnetic coating to achieve a temperature above about 40 degrees Centigrade and below a Curie temperature of the ferromagnetic coating.
2. The method according to claim 1 , wherein the ferromagnetic coating is plated on the conductor.
3. The method according to claim 1 , wherein the selected conductor is about 0.375 millimeters in diameter and wherein the ferromagnetic coating has a thickness of about 0.05 millimeters or smaller.
4. The method according to claim 1 , wherein the conductor has a low thermal mass to provide for rapid temperature regulation.
5. The method according to claim 1 , wherein the selecting step comprises selecting the conductor to have a first portion, a second portion and a middle portion disposed between the first portion and the second portion, the middle portion being formed in a shape selected from the group of loop, solid loop, square, pointed, hook and angled, and wherein the ferromagnetic coating is disposed only on part of the middle portion.
6. A method for treating tissue, the method comprising:
selecting a conductor having a ferromagnetic coating disposed on a portion thereof, the conductor extending through the entire ferromagnetic coating;
disposing the ferromagnetic coating into contact with the tissue; and
delivering an oscillating electrical signal to the conductor so as to heat the ferromagnetic coating; and
treating the tissue; and
wherein delivering an oscillating electrical signal to the conductor comprises variably controlling power of the oscillating electrical signal to heat and maintain the ferromagnetic coating at a temperature between about 37 and 600 degrees Centigrade.
7. The method according to claim 1 , wherein treating the tissue includes incising the tissue by contacting the tissue with the heated ferromagnetic coating.
8. The method according to claim 1 , wherein treating the tissue includes causing hemostasis in the tissue by contacting the tissue with the heated ferromagnetic coating.
9. The method according to claim 1 , wherein treating the tissue includes ablating the tissue by contacting the tissue with the heated ferromagnetic coating.
10. The method according to claim 1 , wherein treating the tissue includes vascular endothelial welding by contacting the tissue with the heated ferromagnetic coating.
11. A method for treating tissue, the method comprising:
selecting a conductor having a ferromagnetic coating disposed on a portion thereof, the conductor extending through the entire ferromagnetic coating;
disposing the ferromagnetic coating into contact with the tissue; and
delivering an oscillating electrical signal to the conductor so as to heat the ferromagnetic coating; and
treating the tissue; and
wherein delivering an oscillating electrical signal to the conductor comprises variably controlling power of the oscillating electrical signal to heat and maintain the ferromagnetic coating at a temperature between about 80-200 degrees Centigrade to promote tissue searing and sealing.
12. A method for treating tissue, the method comprising:
selecting a conductor having a ferromagnetic coating disposed on a portion thereof, the conductor extending through the entire ferromagnetic coating;
disposing the ferromagnetic coating into contact with the tissue; and
delivering an oscillating electrical signal to the conductor so as to heat the ferromagnetic coating; and
treating the tissue; and
wherein delivering an oscillating electrical signal to the conductor comprises variably controlling power of the oscillating electrical signal to heat and maintain the ferromagnetic coating at a temperature between about 200-400 degrees Centigrade to create tissue incisions.
13. A method for treating tissue, the method comprising:
selecting a conductor having a ferromagnetic coating disposed on a portion thereof, the conductor extending through the entire ferromagnetic coating;
disposing the ferromagnetic coating into contact with the tissue; and
delivering an oscillating electrical signal to the conductor so as to heat the ferromagnetic coating; and
treating the tissue; and
wherein delivering an oscillating electrical signal to the conductor comprises variably controlling power of the oscillating electrical signal to heat and maintain the ferromagnetic coating at a temperature between about 400-500 degrees Centigrade to cause tissue ablation and vaporization.