Surgical device and methods
Apparatus for performing electrosurgical tissue resections, such as transurethral resection of the include motor-driven cutters which drive both a shaft of the cutter and a cutter electrode, either or selectively. The systems often include controllers which coordinate movements of the shaft, electrodes, and other external components. The apparatus may include integrated imaging and light illumination systems. The apparatus may include integrated tissue filter and collection traps.
1 . A tissue trap for use with a tissue removal device having a fluid outflow connector configured to direct waste fluid to a waste fluid collection reservoir, said tissue trap comprising:
a collector housing having (a) a fluid inflow port configured to receive waste fluid from the fluid outflow connector of the tissue removal device and (b) a fluid outflow port configured to direct filtered waste fluid to the fluid collection reservoir;
a collector vial having an inlet end, and outlet end, and a filter member therebetween; and
a carrier disposed in an interior of the collector housing, said carrier configured to (a) removably carry the collector vial and (b) move between (i) a first position where the inlet and outlet ends of the collector vial are aligned with the fluid inflow and outflow ports of the collector housing to allow fluid flow, filtration, and collection and (ii) a second position where at least the fluid inflow port of the collector housing is sealed to block fluid flow from the fluid outflow connector.
2 . The tissue trap of claim 1 , wherein the collector housing has at least one lateral opening configured to allow placement of the collector vial on the carrier and removal of the collector vial from the carrier.
3 . The tissue trap of claim 2 , wherein the collector housing comprises a positioning tray having a superior bracket and an inferior bracket, wherein the lateral opening is disposed between the superior bracket and the inferior bracket.
4 . The tissue trap of claim 3 , wherein (a) the superior bracket has an inflow opening which seals to the inlet end of the collector vial when the collector vial is mounted on the tray and (b) the inferior bracket has an outflow opening which seals to the outlet end of the collector vial when the collector vial is mounted on the tray.
5 . The tissue trap of claim 4 , wherein the tray in the first position (a) aligns the inflow opening in the superior bracket with the inflow port of the housing to allow fluid flow into the collection vial and (b) aligns the outflow opening in the inferior bracket with the outflow port of housing to allow fluid outflow from the vial to the waste fluid collection reservoir.
6 . The tissue trap collector of claim 4 , wherein the tray in the second position aligns the inflow opening in the superior bracket with a first solid surface of the collector housing to block fluid flow into the collection vial.
7 . The tissue trap collector of claim 6 , wherein the tray in the second position aligns the outflow opening in the inferior bracket with a second solid surface of the collector housing to block fluid flow out of the collection vial.
8 . The tissue trap of claim 1 , wherein the collector vial comprises a transparent material.
9 . The tissue trap of claim 1 , wherein collector vial is exposed on opposing sides of the housing and configured for manual manipulation between the first position and the second position in the housing.
10 . A tissue removal system, comprising:
a tissue removal device having a fluid outflow connector configured to direct waste fluid to a waste fluid collection reservoir; and
the tissue trap of claim 1 .
11 . The tissue removal system of claim 10 , further comprising a fluid management system for circulating fluid flow from a fluid source through the tissue removal device and fluid outflow connector to the waste fluid collection reservoir.