IP Library Granted Patent US 9,775,663
Granted Patent B2
US 9,775,663 · App. 14/204,116 · Granted Oct 3, 2017

Ablation system, methods, and controllers

Inventors: John B. Blix (Maple Grove, MN); James C. Baker (Woodbury, MN); Kevin K. Ennett (Lino Lakes, MN); John Eric Hein (Neenah, WI); Joseph Allen Brotz (Oshkosh, WI); Joseph William Barnier (Menasha, WI); Raymond Vincent Froehlich (Neenah, WI); Michael Olsen (Savage, MN); Sukanya Varadharajan (Maplewood, MN); Catherine A. Pipenhagen (Plymouth, MN)
Assignee: St. Jude Medical, Cardiology Division, Inc.
A61B18/08A61B18/1206A61B18/1492A61B18/10A61B18/1233A61B2018/00434A61B2018/00577A61B2018/00642A61B2018/00654A61B2018/00666A61B2018/00702A61B2018/00714A61B2018/00779A61B2018/00797A61B2018/00815A61B2018/00821A61B2018/00827A61B2018/00892A61B2018/00898A61B2018/1467
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Quick Facts
Patent No.
US 9,775,663
App. No.
14/204,116
Granted
Oct 3, 2017
Kind
B2
Abstract

Multi-electrode ablation systems, methods, and controllers are described. In one example, a method of beginning an ablation procedure using a multi-electrode ablation system is described. The method includes selectively coupling the output of a power supply to a first electrode of a plurality of electrodes to increase a temperature at the first electrode to a first temperature set-point and limit a rate of increase of the temperature at the first electrode to a predetermined first rate.

Claims (14)

1. A method of beginning an ablation procedure using a multi-electrode ablation system, the method comprising:

selectively coupling an output of a power supply to a first electrode of a plurality of electrodes to increase a temperature at the first electrode to a first temperature set-point and limit a rate of increase of the temperature at the first electrode to a predetermined first rate while the temperature at the first electrode is increasing to the first temperature set-point; and

selectively coupling the output of the power supply to a second electrode of the plurality of electrodes to increase a temperature at the second electrode to a second temperature set-point and limit a rate of increase of the temperature at the second electrode to a predetermined second rate while the temperature at the second electrode is increasing to the second temperature set-point, wherein the predetermined second rate is not the same as the predetermined first rate, and wherein the temperature at the first electrode and the temperature at the second electrode are simultaneously increased to the first temperature set-point and second temperature set-point, respectively.

2. The method set forth in claim 1 further comprising selectively coupling the output of the power supply to the first electrode after the first electrode reaches the first temperature set-point to increase the temperature at the first electrode to a third temperature set-point and limit the rate of increase of the temperature at the first electrode to a predetermined third rate.

3. The method set forth in claim 1 further comprising selectively coupling the output of the power supply to the first electrode to maintain the temperature at the first electrode substantially at the first set-point for at least a first dwell period after the temperature reaches the first temperature set-point.

4. A multi-electrode ablation system comprising:

a power supply configured to be coupled to a plurality of electrodes; and

a controller coupled to the power supply, the controller configured to:

selectively couple the output of the power supply to a first electrode of the plurality of electrodes to increase a temperature at the first electrode to a first temperature set-point and limit an increase of the temperature at the first electrode to a predetermined first rate while the temperature at the first electrode is increasing to the first temperature set-point; and

selectively couple the output of the power supply to a second electrode of the plurality of electrodes to increase a temperature at the second electrode to a second temperature set-point and limit a rate of increase of the temperature at the second electrode to a predetermined second rate while the temperature at the second electrode is increasing to the second temperature set-point, wherein the predetermined second rate is not the same as the predetermined first rate, and wherein the controller is configured to simultaneously increase i) the temperature at the first electrode to the first temperature set-point and ii) the temperature at the second electrode to the second temperature set-point.

5. The system set forth in claim 4 wherein selectively coupling the output of the power supply to a second electrode comprises selectively coupling the output of the power supply to the second electrode a delay period after selectively coupling the output of the power supply to the first electrode.

6. The system set forth in claim 4 wherein the controller is further configured to selectively couple the output of the power supply to the first electrode after the first electrode reaches the first temperature set-point to increase the temperature at the first electrode to a third temperature set-point and limit the increase of the temperature at the first electrode to a predetermined third rate.

7. The system set forth in claim 4 wherein the controller is further configured to selectively couple the output of the power supply to the first electrode to maintain the temperature at the first electrode substantially at the first set-point for at least a first dwell period after the temperature reaches the first temperature set-point.

8. The system set forth in claim 7 wherein the controller is further configured to selectively couple the output of the power supply to the first electrode after the first dwell period to increase the temperature at the first electrode to a third temperature set-point and limit a rate of increase of the temperature at the first electrode to a predetermined third rate.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2014
From: BROTZ, JOSEPH ALLEN; HEIN, JOHN ERIC; FROEHLICH, RAYMOND VINCENT; BARNIER, JOSEPH WILLIAM
To: PLEXUS CORP.
Reel/Frame 032846/0324 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2014
From: PLEXUS CORP.
To: ST. JUDE MEDICAL, CARDIOLOGY DIVISION, INC.
Reel/Frame 032846/0379 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2014
From: BLIX, JOHN B.; BAKER, JAMES C.; ENNETT, KEVIN K.; VARADHARAJAN, SUKANYA; OLSEN, MICHAEL; PIPENHAGEN, CATHERINE A.
To: ST. JUDE MEDICAL, CARDIOLOGY DIVISION, INC.
Reel/Frame 032846/0476 →
Continuity (4)
Provisional Application 61788012 · Mar 15, 2013
Provisional Application 61817550 · Apr 30, 2013
Provisional Application 61817561 · Apr 30, 2013
Related Publication 20140316400A1 · Oct 23, 2014