IP Library Granted Patent US 9,254,164
Granted Patent B2
US 9,254,164 · App. 14/498,261 · Granted Feb 9, 2016

Electrosurgical system with suction control apparatus, system and method

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Quick Facts
Patent No.
US 9,254,164
App. No.
14/498,261
Granted
Feb 9, 2016
Kind
B2
Abstract

System and method for selectively applying electrical energy to structures within or on the surface of a patient's body and controlling the flow of an electrically conductive fluid from the application site to provide or maintain a desired operating condition of the electrosurgical device. An electrosurgical probe is in communication with a fluid transport apparatus through a fluid transport lumen having an opening at an end proximate the application site and disposed proximate the electrosurgical probe. A controller in communication with the fluid transport apparatus provides control signals to the fluid transport apparatus in response to at least one operating parameter associated with the system. Based on the received control signals, the fluid transport apparatus adjusts a flow rate of the electrically conductive fluid at the application site through the fluid transport lumen in response to at least one operating parameter associated with the system.

Claims (66)

1. A surgical method for treating tissue using an electrosurgical probe, the electrosurgical probe having a distal end including at least one active electrode, and a fluid transport lumen having an opening proximate the at least one active electrode, the method comprising:

positioning the distal end of the electrosurgical probe adjacent a target tissue;

generating a high frequency voltage from a power supply between the at least one active electrode and a return electrode;

measuring at least one operating parameter, wherein the at least one operating parameter is indicative of the status of the power supply in communication with the electrosurgical probe;

processing an operating parameter input indicative of the status of the power supply; and

controlling a fluid transport apparatus in communication with the fluid transport lumen based upon the operating parameter input;

wherein controlling the fluid transport apparatus further comprises adjusting a fluid flow through the opening in response to the status of the power supply.

2. The method of claim 1 wherein the status of the power supply in communication with the electrosurgical probe is indicative of the activation of the power supply.

3. The method of claim 1 , wherein the status of the power supply is indicative of the operating mode of the power supply, a first operating mode comprising generating a first high frequency voltage at the at least one active electrode, and controlling the fluid transport apparatus comprises activating the fluid transport apparatus.

4. The method of claim 3 , wherein the first operating mode comprises an ablation mode.

5. The method of claim 3 , wherein a second operating mode comprises generating a second high frequency voltage at the at least one active electrode in a second operating mode, and controlling the fluid transport apparatus comprises deactivating the fluid transport apparatus.

6. The method of claim 5 , wherein the second operating mode comprises a coagulation mode.

7. A surgical method for treating tissue using an electrosurgical probe, the electrosurgical probe having a distal end including at least one active electrode, and a fluid transport lumen having an opening proximate the at least one active electrode, the method comprising:

positioning the distal end of the electrosurgical probe adjacent a target tissue;

generating a high frequency voltage between the at least one active electrode and a return electrode;

measuring at least one operating parameter, wherein the at least one operating parameter is indicative of the condition of a plasma field proximate the at least one active electrode;

processing an operating parameter input indicative of the condition of a plasma field proximate the at least one active electrode; and

controlling a fluid transport apparatus in communication with the fluid transport lumen based upon the operating parameter input;

wherein controlling the fluid transport apparatus further comprises adjusting a fluid flow through the opening in response to the condition of the plasma field to create a desired effect at the at least one active electrode.

8. The method of claim 7 , wherein measuring the at least one operating parameter comprises measuring impedance.

9. The method of claim 7 , wherein measuring the at least one operating parameter comprises measuring current.

10. The method of claim 9 , wherein a change in the measured current may indicate a change in the condition of the plasma field stability.

11. The method of claim 10 , wherein a decrease in measured current may control the fluid transport apparatus to increase the fluid flow through the fluid transport apparatus.

12. The method of claim 10 , wherein an increase in measured current may control the fluid transport apparatus to decrease the fluid flow through the fluid transport apparatus.

13. The method of claim 7 , wherein controlling the fluid transport apparatus comprises incrementally increasing the fluid flow if the operating parameter is within a pre-selected range.

14. The method of claim 7 , wherein controlling the fluid transport apparatus comprises adjusting the fluid flow through the fluid transport apparatus.

15. The method of claim 14 , wherein adjusting the fluid flow further comprises dynamically adjusting the fluid flow through the fluid transport apparatus.

16. The method of claim 14 , wherein adjusting the fluid flow comprises at least one selected from the group consisting of: initiating the fluid flow through the fluid transport apparatus; ceasing the fluid flow through the fluid transport apparatus; decreasing the fluid flow through the fluid transport apparatus; increasing the fluid flow through the fluid transport apparatus; maintaining a preselected fluid flow through the fluid transport apparatus; and reversing the fluid flow through the fluid transport apparatus.

17. A surgical method for treating tissue using an electrosurgical probe, the electrosurgical probe having a distal end including at least one active electrode, and a fluid transport lumen having an opening proximate the at least one active electrode, the method comprising:

positioning the distal end of the electrosurgical probe adjacent a target tissue;

generating a high frequency voltage between the at least one active electrode and a return electrode;

measuring the at least one operating parameter, wherein the at least one operating parameter is indicative of the condition at the distal end of the electrosurgical probe; processing an operating parameter input indicative of the condition at the distal end of the electrosurgical probe; and

controlling a fluid transport apparatus in communication with the fluid transport lumen based upon the operating parameter input;

wherein controlling the fluid transport apparatus further comprises adjusting a fluid flow through the opening in response to the condition at the distal end of the probe.

18. The method of claim 17 , wherein the condition at the distal end of the probe provides input indicative of the presence of an obstruction at the distal end of the electrosurgical probe.

19. The method of claim 17 , wherein the condition at the distal end of the probe provides input indicative of a stability of a vapor layer at the at least one active electrode.

20. The method of claim 17 wherein the operating parameter is measured by sensors disposed within the probe.

21. The method of claim 17 wherein the operating parameter is measured by sensors disposed within the power supply.

22. The method of claim 17 wherein the operating parameter is measured by sensors disposed within the fluid transport lumen.

23. A surgical method for treating tissue using an electrosurgical probe, the electrosurgical probe having a distal end including at least one active electrode, and a fluid transport lumen having an opening proximate the at least one active electrode, the method comprising:

positioning the distal end of the electrosurgical probe adjacent a target tissue;

generating a high frequency voltage between the at least one active electrode and a return electrode;

measuring at least one operating parameter, wherein the at least one operating parameter is indicative of the condition at the treatment surface of the electrosurgical probe;

processing an operating parameter input indicative of condition at the treatment surface of the electrosurgical probe; and

controlling a fluid transport apparatus in communication with the fluid transport lumen based upon the operating parameter input;

wherein controlling the fluid transport apparatus further comprises adjusting a fluid flow through the opening in response to the condition at the treatment surface of the probe.

24. The method of claim 23 , wherein the condition at the treatment surface of the electrosurgical probe provides input indicative of the condition of the vapor layer proximate the at least one active electrode.

25. A surgical method for treating tissue using an electrosurgical probe, the electrosurgical probe having a distal end including at least one active electrode, and a fluid transport lumen having an opening proximate the at least one active electrode, the method comprising:

positioning the distal end of the electrosurgical probe adjacent a target tissue;

generating a high frequency voltage between the at least one active electrode and a return electrode;

measuring at least one operating parameter, wherein the at least one operating parameter is indicative of the condition of a vapor layer proximate the at least one active electrode;

processing an operating parameter input indicative of the condition of the vapor layer proximate the at least one active electrode; and

controlling a fluid transport apparatus in communication with the fluid transport lumen based upon the operating parameter input;

wherein controlling the fluid transport apparatus further comprises adjusting a fluid flow through the opening in response to the condition of the vapor layer proximate the at least one active electrode.

26. The method of claim 25 , wherein measuring the at least one operating parameter comprises measuring impedance.

27. The method of claim 25 , wherein measuring the at least one operating parameter comprises measuring current.

28. The method of claim 27 , wherein a change in the measured current may indicate a change in the condition of the vapor layer stability.

29. The method of claim 25 , wherein controlling the fluid transport apparatus comprises maintaining the fluid flow if the operating parameter is within a pre-selected range.

30. A surgical method for treating tissue using an electrosurgical probe, the electrosurgical probe having a distal end including at least one active electrode, and a fluid transport lumen having an opening proximate the at least one active electrode, the method comprising:

positioning the distal end of the electrosurgical probe adjacent a target tissue;

generating a high frequency voltage between the at least one active electrode and a return electrode;

measuring and processing an electrical current associated with the distal end of the probe, wherein the current is indicative of the condition of a vapor layer proximate the at least one active electrode;

controlling a fluid transport apparatus in communication with the fluid transport lumen based upon the current;

wherein controlling the fluid transport apparatus further comprises adjusting a fluid flow through the opening in order to maintain the current within a pre-selected value range and thereby maintain a stable vapor layer condition proximate the at least one active electrode.

31. The method of claim 30 wherein a measured current approximating an upper value or exceeding an upper value of the preselected value range controls the fluid transport apparatus so as to decrease the fluid flow.

32. The method of claim 30 wherein a measured current approximating a lower value or dropping below a lower value in the pre-selected value range controls the fluid transport apparatus so as to increase the fluid flow.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2014
From: WOLOSZKO, JEAN
To: ARTHROCARE CORPORATION
Reel/Frame 033829/0930 →