Ultrapolar electrosurgery blade assembly and ultrapolar electrosurgery pencil with argon beam capability
An ultrapolar electrosurgery blade assembly with argon beam capability and an ultrapolar electrosurgery pencil with argon beam capability that are both capable of using monopolar energy in a bipolar mode for cutting and coagulation and using ionized gas for cutting and coagulation.
1. An ultrapolar electrosurgery blade assembly comprising:
a non-conductive blade having opposing planar sides, a narrow elongated top, a sharp cutting end, and an opposite non-cutting end;
both an active contact and a return contact located on each of the opposing planar sides of the non-conductive blade;
a non-conductive hollow tubular member positioned over the narrow elongated top of the non-conductive blade; and
a non-conductive support member connected to the non-conductive blade for retaining the ultrapolar electrosurgery blade assembly within an electrosurgery handpiece.
2. The ultrapolar electrosurgery blade assembly of claim 1 wherein the narrow elongated top of the non-conductive blade separates an active contact on one opposing planar side of the non-conductive blade and a return contact on the other opposing side of the non-conductive blade.
3. The ultrapolar electrosurgery blade assembly of claim 1 further comprising a second non-conductive hollow tubular member positioned over the narrow elongated top of the non-conductive blade adjacent to the non-conductive hollow tubular member.
4. The ultrapolar electrosurgery blade assembly of claim 1 further comprising a non-conductive shelf support for supporting the non-conductive hollow tubular member when positioned over the narrow elongated top of the non-conductive blade.
5. The ultrapolar electrosurgery blade assembly of claim 1 wherein the non-conductive hollow tubular member comprises a ceramic.
6. The ultrapolar electrosurgery blade assembly of claim 1 wherein the non-conductive blade comprises a ceramic.
7. The ultrapolar electrosurgery blade assembly of claim 1 wherein at least a portion of the active contact and the return contact are covered by the non-conductive hollow tubular member and project outward and downward from the narrow elongated top of the non-conductive blade.
8. The ultrapolar electrosurgery blade assembly of claim 1 wherein the non-conductive hollow tubular member includes a slot which fits over the narrow elongated top of the non-conductive blade.
9. The ultrapolar electrosurgery blade assembly of claim 8 wherein the non-conductive tubular member further includes an opening located above the slot on each end of the non-conductive tubular member.
10. An ultrapolar electrosurgery pencil with argon beam capability comprising:
a handpiece member having a first end and a second end;
a non-conductive blade positioned within the first end of the handpiece member wherein the non-conductive blade includes opposing planar sides, a sharp cutting end, and both an active contact and a return contact located on each of the opposing planar sides of the non-conductive blade;
a non-conductive hollow tubular member positioned on said non-conductive blade; and
a non-conductive tube positioned within the handpiece member and connected to the non-conductive hollow tubular member for supplying a gas to the non-conductive hollow tubular member.
11. The ultrapolar electrosurgery pencil of claim 10 wherein the handpiece member includes a channel therein for evacuating at least one of smoke and debris away from the sharp cutting end of the non-conductive blade.
12. The ultrapolar electrosurgery pencil of claim 11 further comprising a rotating member connected to the second end of the handpiece member.
13. The ultrapolar electrosurgery pencil of claim 10 wherein the non-conductive hollow tubular member includes a slot which fits over the narrow elongated top of the non-conductive blade.
14. The ultrapolar electrosurgery pencil of claim 13 wherein the non-conductive tubular member further includes an opening located above the slot on each end of the non-conductive tubular member.
15. The ultrapolar electrosurgery pencil of claim 10 further comprising a second non-conductive hollow tubular member positioned between, and connected to, the non-conductive hollow tubular member and the non-conductive tube.
16. The ultrapolar electrosurgery blade of claim 15 wherein the hollow non-conductive tubular member is positioned outside of the first end of the handpiece member.
17. An ultrapolar electrosurgery blade assembly comprising:
a non-conductive blade having opposing planar sides, a narrow elongated top, a sharp cutting end, and an opposite non-cutting end;
both an active contact and a return contact located on each of the opposing planar sides of the non-conductive blade; and
a non-conductive hollow tubular member positioned over the narrow elongated top of the non-conductive blade.
18. The ultrapolar electrosurgery blade assembly of claim 17 further comprising a non-conductive shelf support for supporting the non-conductive hollow tubular member when positioned over the narrow elongated top of the non-conductive blade.
19. The ultrapolar electrosurgery blade assembly of claim 17 further comprising a second non-conductive hollow tubular member positioned over the narrow elongated top of the non-conductive blade adjacent to the non-conductive hollow tubular member.
20. The ultrapolar electrosurgery blade assembly of claim 17 wherein the narrow elongated top of the non-conductive blade separates an active contact on one opposing planar side of the non-conductive blade and a return contact on the other opposing side of the non-conductive blade.