Claims
- 1. An electrosurgical probe comprising:
a shaft having a proximal end and a distal end; and at least one active electrode located at or near said distal end, said at least one active electrode comprising a metallic body region surrounded by a dielectric material and a metallic tip adjacent said metallic body region, said metallic tip further comprising a plurality of protuberances spaced from each other by a predetermined distance.
- 2. The electrosurgical probe of claim 1, wherein said plurality of protuberances are surrounded by a plurality of dielectric regions.
- 3. The electrosurgical probe of claim 2, wherein said plurality of dielectric regions comprise an insulating material which is different from said dielectric material.
- 4. The electrosurgical probe of claim 2, wherein said plurality of dielectric regions comprise an insulating material which is the same as said dielectric material.
- 5. The electrosurgical probe of claim 2, wherein said plurality of dielectric regions have a planar distal surface.
- 6. The electrosurgical probe of claim 1, wherein said predetermined distance is of about 0.1 to about 2 millimeters.
- 7. The electrosurgical probe of claim 6, wherein said predetermined distance is of about 1 to about 2 millimeters.
- 8. The electrosurgical probe of claim 1, wherein said plurality of protuberances protrude above a distal transversal surface of said dielectric material.
- 9. The electrosurgical probe of claim 1, wherein said plurality of protuberances protrude for about 0.1 to about 5 millimeters.
- 10. The electrosurgical probe of claim 1, wherein lateral walls of said metallic tip form an incidence angle with adjacent lateral walls of said dielectric material.
- 11. The electrosurgical probe of claim 10, wherein said incidence angle is of about 10 to 80 degrees.
- 12. The electrosurgical probe of claim 1, wherein said metallic protuberances have a cross-sectional shape selected from the group consisting of rectangular, square, circular, trapezoidal, triangular and hexagonal shape.
- 13. An electrosurgical system for the electrosurgical treatment of tissue immersed in a conductive fluid comprising:
a power supply source; and means for applying high frequency voltage to an electrosurgical probe, said electrosurgical probe comprising a shaft having a proximal end and a distal end; and an active electrode located at or near said distal end, said active electrode comprising a metallic body region surrounded by a dielectric material and a metallic tip adjacent said metallic body region, said metallic tip further comprising a plurality of protuberances spaced from each other by about 0.1 to about 2 millimeters and surrounded by a plurality of dielectric regions.
- 14. The electrosurgical system of claim 13, wherein said plurality of dielectric regions have a planar distal surface.
- 15. The electrosurgical system of claim 13, wherein lateral walls of said metallic tip form an incidence angle of about 10 to 80 degrees with adjacent lateral walls of said dielectric material.
- 16. A method of conducting an electrosurgical procedure comprising the steps of:
providing an active electrode of an electrosurgical probe, said active electrode comprising a metallic body region surrounded by a dielectric material and a metallic tip adjacent said metallic body region, said metallic tip comprising a plurality of protuberances spaced from each other by about 0.1 to about 2 millimeters and surrounded by a plurality of dielectric regions; positioning said active electrode in the proximity of a tissue to be treated in the presence of an electrically conductive fluid; applying a high frequency voltage to said active electrode to generate an electric field adjacent said metallic tip; and effecting ablation of at least a portion of said tissue to be treated.
- 17. The method of claim 16, wherein said plurality of protuberances protrude above said dielectric material by about 0.1 to about 5 millimeters.
- 18. The method of claim 16, wherein lateral walls of said metallic tip further form an incidence angle with adjacent lateral walls of said dielectric material.
- 19. The method of claim 18, wherein said step of applying said high frequency voltage to said active electrode further comprises generating an electric field adjacent said incidence angle.
Parent Case Info
[0001] The present application claims the benefit under 35 U.S.C. 119(e) of U.S. Provisional Application Serial No. 60/330,918 filed on Nov. 2, 2001, the disclosure of which is incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60330918 |
Nov 2001 |
US |