Energy delivery systems and uses thereof
First Claim
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1. An ablation antenna device comprising:
- a) an antenna comprising an inner conductor, wherein the antenna has a proximal end and a distal end, wherein the inner conductor has a distal end and a proximal end, and a conductive fitting, wherein the distal end of the inner conductor is located at the terminus of the inner conductor, wherein the proximal end of the inner conductor is located at the origin of the inner conductor, wherein the antenna further comprises an insulator, said insulator attached to a distal end of said conductive fitting, wherein said insulator comprises a ceramic insulator; and
b) a conductive tip at the distal end of said antenna, said conductive tip is attached to the insulator;
wherein said inner conductor is not physically coupled to said conductive tip, wherein said inner conductor is capacitively-coupled to said conductive tip,wherein said inner conductor not physically coupled to said conductive tip is the innermost conductor of the antenna, wherein said inner conductor is hollow,wherein said inner conductor comprises a coolant channel for circulating a coolant through the proximal end of the inner conductor and out the distal end of the inner conductor,wherein the distal end of the inner conductor is adhered to and surrounded by the conductive fitting,wherein the conductive fitting is a metal fitting,wherein said conductive fitting, insulator, and conductive tip are positioned and dimensioned so as to generate a low impedance overlap to transfer energy to said conductive tip when energy is supplied to said inner conductor.
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Abstract
The present invention relates to comprehensive systems, devices and methods for delivering energy to tissue for a wide variety of applications, including medical procedures (e.g., tissue ablation, resection, cautery, vascular thrombosis, treatment of cardiac arrhythmias and dysrhythmias, electrosurgery, tissue harvest, etc.). In certain embodiments, systems, devices, and methods are provided for treating a tissue region (e.g., a tumor) through application of energy.
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15 Claims
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1. An ablation antenna device comprising:
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a) an antenna comprising an inner conductor, wherein the antenna has a proximal end and a distal end, wherein the inner conductor has a distal end and a proximal end, and a conductive fitting, wherein the distal end of the inner conductor is located at the terminus of the inner conductor, wherein the proximal end of the inner conductor is located at the origin of the inner conductor, wherein the antenna further comprises an insulator, said insulator attached to a distal end of said conductive fitting, wherein said insulator comprises a ceramic insulator; and b) a conductive tip at the distal end of said antenna, said conductive tip is attached to the insulator; wherein said inner conductor is not physically coupled to said conductive tip, wherein said inner conductor is capacitively-coupled to said conductive tip, wherein said inner conductor not physically coupled to said conductive tip is the innermost conductor of the antenna, wherein said inner conductor is hollow, wherein said inner conductor comprises a coolant channel for circulating a coolant through the proximal end of the inner conductor and out the distal end of the inner conductor, wherein the distal end of the inner conductor is adhered to and surrounded by the conductive fitting, wherein the conductive fitting is a metal fitting, wherein said conductive fitting, insulator, and conductive tip are positioned and dimensioned so as to generate a low impedance overlap to transfer energy to said conductive tip when energy is supplied to said inner conductor. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15)
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Specification