IP Library Granted Patent US 8,348,948
Granted Patent B2
US 8,348,948 · App. 12/846,602 · Granted Jan 8, 2013

Vessel sealing system using capacitive RF dielectric heating

Assignee: Covidien AG
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Quick Facts
Patent No.
US 8,348,948
App. No.
12/846,602
Granted
Jan 8, 2013
Kind
B2
Abstract

An electrosurgical system for sealing vessels using capacitive (RF) dielectric heating and a method thereof are provided. The system includes an electrosurgical instrument having an end effector with parallel plate electrodes that will clamp onto a vessel and maintain a specified gap distance; however, the electrodes will be coated with a non-conductive dielectric material. Such an end effector will ensure that direct conduction between the electrodes does not occur through tissue or fluids and effectively creates a parallel plate capacitor with a dielectric, e.g., tissue and coating, in between the plates. The electrosurgical instrument will be activated with an AC signal at a specified RF frequency, e.g., a Debye resonance frequency, via an electrosurgical generator. An effective AC current will flow through the tissue and cause heating due to fictional losses from rotating polar molecules in the tissue.

Claims (30)

1. A method for electrosurgically sealing tissue, the method comprising the steps of:

selecting a type of tissue to be sealed;

determining a predetermined frequency based on the type of tissue to be sealed;

executing a predictive algorithm to determine a shift in the predetermined frequency; and

applying RF energy to the tissue at the shifted predetermined frequency determined by the predictive algorithm.

2. The method according to claim 1 , wherein the predetermined frequency is a Debye resonance frequency of the tissue to be sealed.

3. The method according to claim 1 , wherein the applying step includes generating an AC electric field that causes energy to flow at the predetermined frequency through the tissue to be sealed.

4. The method according to claim 1 , wherein the applying step includes applying RF energy to the tissue via an end effector having opposing jaw members adapted to connect to a source of electrosurgical energy.

5. The method according to claim 4 , wherein each jaw member includes an electrode having a dielectric coating, wherein the dielectric coating has a predetermined frequency different than the predetermined frequency of the tissue.

6. A method for electrosurgically sealing tissue, the method comprising the steps of:

selecting a type of tissue to be sealed;

determining a Debye resonance frequency of the tissue being sealed based on the type of tissue to be sealed;

applying RF energy to the tissue, the RF energy being applied at the Debye resonance frequency of the tissue being sealed;

executing a predictive algorithm to determine a shift in the Debye resonance frequency of the tissue being sealed; and

regulating the application of RF energy to the tissue to cause energy to flow through the tissue being sealed at the shifted Debye resonance frequency based on the determined shift.

7. A method according to claim 6 , wherein the applying step includes generating an AC electric field that causes energy to flow at the Debye resonance frequency through the tissue to be sealed.

8. The method according to claim 6 , further comprising the step of:

providing an electrosurgical instrument for sealing tissue, the electrosurgical instrument comprising:

an end effector having opposing jaw members, at least one of the jaw members movable relative to one another from a first position wherein the jaw members are disposed in spaced relation relative to one another to a second position wherein the jaw members cooperate to grasp tissue therebetween, at least one jaw member adapted to connect to a source of electrosurgical energy;

grasping tissue between the jaw members; and

applying RF energy to the grasped tissue at the Debye resonance frequency of the tissue.

9. A method for electrosurgically sealing tissue, the method comprising the steps of:

providing an electrosurgical instrument for sealing tissue, the electrosurgical instrument comprising:

an end effector having opposing jaw members, at least one of the jaw members movable relative to one another from a first position wherein the jaw members are disposed in spaced relation relative to one another to a second position wherein the jaw members cooperate to grasp tissue therebetween, at least one jaw member adapted to connect to a source of electrosurgical energy;

selecting a type of tissue to be sealed;

determining a predetermined frequency based on the type of tissue to be sealed;

applying RF energy from the source of electrosurgical energy to the tissue via the jaw members, the RF energy applied at the predetermined frequency;

executing a predictive algorithm to determine a shift in the predetermined frequency of the tissue being sealed; and

regulating the application of RF energy from the electrosurgical energy source to the tissue to cause energy to flow through the tissue being sealed at the shifted predetermined frequency based on the determined shift.

10. The method according to claim 9 , wherein the predetermined frequency is a Debye resonance frequency of the tissue to be sealed.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2010
From: BAHNEY, TIMOTHY J.
To: SHERWOOD SERVICES AG
Reel/Frame 024774/0836 →
CHANGE OF NAME Recorded Aug 2, 2010
From: SHERWOOD SERVICES AG
To: COVIDIEN AG
Reel/Frame 024774/0840 →
MERGER Recorded Aug 2, 2010
From: COVIDIEN AG
To: TYCO HEALTHCARE GROUP AG
Reel/Frame 024774/0847 →
CHANGE OF NAME Recorded Aug 2, 2010
From: TYCO HEALTHCARE GROUP AG
To: COVIDIEN AG
Reel/Frame 024774/0849 →
Continuity (3)
Division 11063684 · Feb 23, 2005
Provisional Application 60549232 · Mar 2, 2004
Related Publication 20100312235A1 · Dec 9, 2010