DUAL ANTENNA ASSEMBLY WITH USER-CONTROLLED PHASE SHIFTING
An electrosurgical ablation system includes an energy source adapted to supply energy to an energy delivery device. The energy delivery device includes a handle assembly configured to couple a pair of antennas extending from a distal end thereof to the energy source for application of energy to tissue. A power splitting device is operatively associated with the handle assembly and has an input adapted to connect to the energy source and a pair of output channels operably coupled to the respective pair of antennas. A phase shifter is operatively associated with the handle assembly and is operably coupled to the pair of output channels. The phase shifter is configured to selectively shift a phase relationship between the pair of output channels.
1 - 20 . (canceled)
21 . An electrosurgical ablation device, comprising:
a handle assembly;
a pair of antennas extending from a distal portion of the handle assembly;
a power splitter operably coupled to the handle assembly and having an input configured to connect the pair of antennas to an energy source providing an ablative energy and a pair of output channels, each output channel of the pair of output channels operably coupled to one antenna of the pair of antennas; and
a phase shifter operably coupled to the pair of output channels, the phase shifter configured to selectively shift a phase relationship between the pair of output channels
22 . The electrosurgical ablation device according to claim 21 , further comprising an energy source configured to supply microwave energy to the pair of antennas.
23 . The electrosurgical ablation device according to claim 21 , further comprising at least one rectifier operably coupled to the pair of output channels and configured to monitor reflected power detected on the pair of output channels.
24 . The electrosurgical ablation device according to claim 21 , further comprising a switch assembly operably coupled to the phase shifter and configured to control the phase shifter.
25 . The electrosurgical ablation device according to claim 24 , wherein the switch assembly includes a slide switch accessible from an exterior of the handle assembly, the slide switch configured to slide within a groove defined within the handle assembly to control the phase shifter.
26 . The electrosurgical ablation device according to claim 21 , wherein the phase shifter is selectively controlled to generate a phase difference of +/−180 degrees between the pair of antennas.
27 . The electrosurgical ablation device according to claim 21 , wherein the energy delivery device is configured to operate in a tissue resection mode when a phase difference between the pair of antennas is +/−180 degrees.
28 . The electrosurgical ablation device according to claim 21 , wherein the phase shifter is selectively controllable to generate an in-phase relationship between the pair of antennas.
29 . The electrosurgical ablation device according to claim 21 , wherein the electrosurgical ablation device is configured to operate in a tissue ablation mode when an in-phase relationship exists between the pair of antennas.
30 . The electrosurgical ablation device according to claim 21 , wherein the phase shifter is selectively controllable to generate an in-phase relationship between the pair of antennas to produce a generally spherical ablation geometry proximate a radiating portion of each antenna of the pair of antennas.
31 . The electrosurgical ablation device according to claim 21 , wherein the phase shifter is selectively controllable to generate an out-of-phase relationship between the pair of antennas to produce a generally elongated ablation geometry proximate a radiating portion of each antenna of the pair of antennas.
32 . The electrosurgical ablation device according to claim 21 , wherein the pair of antennas are parallel to one another.
33 . The electrosurgical ablation device according to claim 21 , wherein the power splitter is a 90 degree power divider.
34 . The electrosurgical ablation device according to claim 21 , wherein the power splitter generates a substantially equal power split between the pair of output channels while maintaining a phase difference of +/−90 degrees between the pair of output channels.
35 . The electrosurgical ablation device according to claim 21 , wherein each antenna of the pair of antennas includes a tapered distal portion configured to be inserted through tissue.
36 . The electrosurgical ablation device according to claim 21 , wherein the ablative energy includes at least one of radiofrequency energy, microwave energy, heat energy, ultrasound energy, or laser energy.
37 . An electrosurgical ablation device, comprising:
a handle assembly;
a pair of antennas extending from a distal portion of the handle assembly;
a pair of output channels, each output channel of the pair of output channels operably coupled to one antenna of the pair of antennas;
an input operably coupled to the pair of output channels, the input configured to couple the pair of antennas to an energy source for application of ablative energy to tissue; and
a phase shifter operably coupled to the pair of output channels and configured to selectively shift a phase relationship between the pair of output channels.