SURGICAL TOOL WITH PROXIMAL THERMOCOUPLE
A surgical tool according to at least one embodiment of the present disclosure includes a proximal end; and a distal end, the distal end including a first electrode; a second electrode different from the first electrode; and a thermal bridge that is disposed between the first electrode and the second electrode and that electrically isolates the first electrode from the second electrode.
1 . A surgical tool, comprising:
a proximal end; and
a distal end, the distal end comprising:
a first electrode;
a second electrode different from the first electrode; and
a thermal bridge that is disposed between the first electrode and the second electrode and that electrically isolates the first electrode from the second electrode.
2 . The surgical tool of claim 1 , wherein the distal end further comprises:
a thermocouple disposed on a proximal end of the first electrode.
3 . The surgical tool of claim 1 , wherein the first electrode comprises an active Radio Frequency (RF) electrode, and wherein the second electrode comprises a return RF electrode.
4 . The surgical tool of claim 1 , wherein the thermal bridge is at least one of alumina or artificial diamond.
5 . The surgical tool of claim 1 , wherein the first electrode, the second electrode, and the thermal bridge are substantially cylindrical, and wherein the first electrode, the second electrode, and the thermal bridge are aligned coaxially.
6 . The surgical tool of claim 5 , further comprising:
an inflow tube disposed in an interior of the surgical tool and extending from the proximal end to a first distance from the distal end, the inflow tube configured to discharge a coolant into a cavity in the distal end of the surgical tool; and
an outflow tube disposed in the interior of the surgical tool and extending from the proximal end to the first distance from the distal end, the outflow tube configured to remove the coolant from the cavity in the distal end of the surgical tool.
7 . The surgical tool of claim 6 , wherein the first distance from the distal end is within an interior of the thermal bridge.
8 . The surgical tool of claim 1 , wherein the thermal bridge comprises one or more interlocking keys, and wherein the one or more interlocking keys connect the thermal bridge to the first electrode and to the second electrode.
9 . The surgical tool of claim 1 , wherein the thermal bridge is soldered to at least one of the first electrode or the second electrode.
10 . The surgical tool of claim 1 , wherein the second electrode comprises a domed tip, and wherein the surgical tool further comprises:
an active RF wire extending through an interior of the surgical tool and connected to the domed tip.
11 . A surgical system, comprising:
a cylindrical housing having a proximal end and a distal end;
a proximal tube, a first end of the proximal tube connected to a first end of the distal end;
a first thermocouple disposed between at least a portion of a return wire and the proximal tube;
a heat sink, a first end of the heat sink connected to a second end of the proximal tube; and
a distal tube, a first end of the distal tube connected to a second end of the heat sink.
12 . The surgical system of claim 11 , further comprising:
an inflow conduit disposed in the cylindrical housing and configured to dispense a coolant into a cavity within the distal tube; and
an outflow conduit disposed in the cylindrical housing and configured to extract the coolant from the cavity within the distal tube.
13 . The surgical system of claim 12 , wherein at least one of a first end of the inflow conduit or a first end of the outflow conduit is disposed in the heat sink, and wherein the cylindrical housing comprises an air gap between the cavity and the distal tube.
14 . The surgical system of claim 13 , wherein the surgical system further comprises:
a polyimide insulation layer disposed around at least one of the cylindrical housing or the return wire.
15 . The surgical system of claim 14 , wherein the heat sink comprises at least one of alumina or artificial diamond.
16 . The surgical system of claim 14 , wherein the cylindrical housing further comprises:
an active Radiofrequency (RF) wire extending from the proximal end of the cylindrical housing to a domed tip disposed in the distal tube, the active RF wire configured to carry current to the distal tube.
17 . The surgical system of claim 16 , wherein the heat sink is soldered to at least one of the proximal tube or the distal tube.
18 . An apparatus, comprising:
a fluid management system including an inflow tube and an outflow tube; and
a surgical probe, the surgical probe comprising:
an active Radiofrequency (RF) electrode;
a return RF electrode; and
a distal bridge that physically and thermally couples the return RF electrode and the active RF electrode and electrically decouples the return RF electrode and the active RF electrode.
19 . The apparatus of claim 18 , wherein at least one of the inflow tube and the outflow tube is in fluidic communication with the surgical probe, and wherein at least one of the inflow tube and the outflow tube ends within the distal bridge.
20 . The apparatus of claim 19 , wherein the distal bridge comprises at least one of alumina or artificial diamond, and wherein the surgical probe further comprises:
a thermocouple disposed on a proximal end of the return RF electrode, wherein the thermocouple generates a temperature reading of the return RF electrode.