IP Library Granted Patent US 9,375,271
Granted Patent B2
US 9,375,271 · App. 14/072,342 · Granted Jun 28, 2016

Vessel sealing system

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Quick Facts
Patent No.
US 9,375,271
App. No.
14/072,342
Granted
Jun 28, 2016
Kind
B2
Abstract

An electrosurgical system is disclosed. The electrosurgical system includes an electrosurgical generator adapted to supply electrosurgical energy to tissue. The electrosurgical generator includes impedance sensing circuitry which measures impedance of tissue, a microprocessor configured to determine whether a tissue reaction has occurred as a function of a minimum impedance value and a predetermined rise in impedance, wherein tissue reaction corresponds to a boiling point of tissue fluid, and an electrosurgical instrument including at least one active electrode adapted to apply electrosurgical energy to tissue.

Claims (12)

1. An electrosurgical generator, comprising:

an RF energy source configured to provide RF energy;

an output configured to couple the RF energy source to opposing first and second electrodes of a surgical instrument and provide the RF energy thereto, the opposing first and second electrodes when positioned about tissue forming a gap therebetween; and

a controller configured to regulate the RF energy from the RF energy source, the controller configured to decrease the output of the RF energy as the gap between the first electrode and second electrode is decreased.

2. The generator according to claim 1 , wherein the controller controllably decreases an amplitude of the RF energy to compensate for a decrease in the gap due to thermally-induced shrinkage of tissue.

3. The generator according to claim 1 , wherein the controller applies a plurality of pulses of RF energy between the first and second electrodes and controllably decreases an amplitude between each individual RF energy pulse as the gap between the first and second electrodes decreases.

4. The generator according to claim 3 , wherein the amplitude is controllably decreased to compensate for a decrease in gap between the first and second electrodes due to thermally-induced shrinkage of tissue.

5. An electrosurgical generator comprising:

a controller configured to apply an initial pulse of RF energy to opposing first and second electrodes having a gap defined therebetween, the initial pulse of RF energy forming an electrical potential between the first and second electrodes when positioned about tissue, the controller configured to apply at least one subsequent pulse of RF energy to the first and second electrodes forming a subsequent electrical potential between the first and second electrodes when positioned about tissue, the difference in the at least one subsequent pulse of RF energy and subsequent electrical potential between first and second electrodes being decreased as the gap between the first and second electrodes is decreased.

6. An electrosurgical generator comprising:

a controller configured to apply an initial pulse of RF energy to the tissue, the initial pulse forming an electrical potential between first and second electrodes positioned about tissue having a gap defined therebetween, the controller configured to decrease the amplitude of subsequent pulses of RF energy as the gap between the first and second electrodes is decreased.

7. The generator according to claim 6 wherein the controller controllably decreases the amplitude of subsequent pulses of RF energy to compensate for a decrease in the gap between the first and second electrodes due to thermally-induced shrinkage of tissue.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2013
From: WHAM, ROBERT H.; BUYSSE, STEVEN P.; ORSZULAK, JAMES H.
To: SHERWOOD SERVICES AG
Reel/Frame 031608/0485 →
CHANGE OF NAME Recorded Nov 15, 2013
From: SHERWOOD SERVICES AG
To: COVIDIEN AG
Reel/Frame 031608/0555 →
MERGER Recorded Nov 15, 2013
From: COVIDIEN AG
To: TYCO HEALTHCARE GROUP AG
Reel/Frame 031608/0614 →
CHANGE OF NAME Recorded Nov 15, 2013
From: TYCO HEALTHCARE GROUP AG
To: COVIDIEN AG
Reel/Frame 031608/0663 →