Electrosurgical instrument
An embodiment of the invention includes an electrosurgical jaw structure that carries cooperating PTC bodies in both series and parallel circuit components for controlled RF energy application to engaged tissue to effectively weld tissue.
1. A method for welding tissue comprising:
providing an electrosurgical instrument having a tissue engaging surface, an electrode and a PTC body portion comprising a positive temperature coefficient material;
engaging a target tissue volume with the tissue engaging surface;
delivering RF energy to the target volume, wherein the PTC body portion modulates the delivery of energy responsive to a temperature of the PTC body portion; and
progressively creating a tissue weld in at least a portion of the target tissue volume.
2. The method of claim 1 , further comprising: producing a substantially uniformly fused tissue mass within the tissue volume.
3. The method of claim 1 , further comprising: contemporaneously welding and transecting the at least a portion of the target tissue volume.
4. The method of claim 1 , further comprising: utilizing the PTC body portion to modulate energy density at a pixilated level over at least a portion of the tissue engaging surface.
5. The method of claim 1 , further comprising: utilizing the PTC body portion to reduce tissue desiccation and charring in the at least a portion of the target tissue volume.
6. The method of claim 1 , further comprising: utilizing the PTC body portion to modulate a progression of ohmic heating.
7. A method for welding tissue comprising:
providing an electrosurgical instrument having a tissue engaging surface, an electrode and a PTC body portion comprising a positive temperature coefficient material;
engaging a target tissue volume with the tissue engaging surface;
delivering RF energy to the target volume; modulating ohmic active heating of the engaged tissue volume on a microscale; and
welding at least a portion of the target tissue volume.
8. The method of claim 7 , further comprising: modulating ohmic active heating of the engaged tissue volume on a macroscale.