IP Library Granted Patent US 8,480,663
Granted Patent B2
US 8,480,663 · App. 12/432,538 · Granted Jul 9, 2013

Apparatus and methods for cryogenically ablating tissue and adjusting cryogenic ablation regions

Inventors: Frank W. Ingle (Palo Alto, CA); Robert F. Bencini (Sunnyvale, CA); Josef V. Koblish (Sunnyvale, CA); Jonathan A. Wohlgemuth (Morgan Hill, CA); Paul Roche (Mountain View, CA)
Assignee: Boston Scientific Scimed, Inc.
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Quick Facts
Patent No.
US 8,480,663
App. No.
12/432,538
Granted
Jul 9, 2013
Kind
B2
Abstract

Apparatus and methods for performing cryogenic ablation of tissue and adjusting the size and/or location of a cryogenic cooling region. A cooling assembly may include tubes for dispensing and exhausting a coolant or refrigerant. One or both of the tubes may be moved, e.g., slidably adjusted, in order to adjust the location or size of a cryogenic ablation region. The cooling assembly may be integrated into cryogenic ablation devices including a cryogenic balloon device that includes an inner inflatable balloon and another balloon that is at least partially wrapped around the inner balloon and carries refrigerant for performing cryo-ablation. Electrodes permit electrical mapping of tissue before or after cryo-ablation to verify success of the procedure.

Claims (21)

1. A cryogenic ablation apparatus, comprising:

a support member;

a first balloon extending from the support member and having a first shape; and

a second balloon extending from the support member and having a second shape different than the first shape, the second balloon and wrapping around at least a portion of the first balloon, wherein the first and second balloons are separate balloons.

2. The cryogenic ablation apparatus of claim 1 , a portion of the second balloon wrapping completely around the first balloon.

3. The cryogenic ablation apparatus of claim 1 , the first shape being a bulbous shape, a spherical shape or a spheroid shape, and the second shape being a helical shape or a spiral shape.

4. The cryogenic ablation apparatus of claim 1 , the first balloon being inflatable, the second balloon being configured to carry coolant.

5. The cryogenic ablation apparatus of claim 1 , at least one of the first balloon and the second balloon including a mapping electrode.

6. The cryogenic ablation apparatus of claim 1 , the first and second balloons being attached to each other.

7. The cryogenic ablation apparatus of claim 1 , a diameter or width of the first balloon varying along a length of the first balloon, and a diameter or width of the second balloon being substantially constant along a length of the second balloon.

8. The cryogenic ablation apparatus of claim 1 , a first portion of the second balloon extending substantially laterally along a first portion of an outer surface of the first balloon, and a second portion of the second balloon wrapping around a second portion of the outer surface of the first balloon.

9. The cryogenic ablation apparatus of claim 1 , wherein the second balloon is wrapped multiple times around an outer surface of the first balloon.

10. A cryogenic ablation apparatus, comprising:

a support member;

a cryogenic ablation element including a first balloon extending from the support member and having a first shape, and a second balloon extending from the support member and having a second shape different than the first shape, the second balloon wrapping around at least a portion of the first balloon; and

an adjustment element including a first tube having and a proximal end and a distal end positioned within and opening into an interior of the second balloon to supply a refrigerant to the second balloon, the adjustment element including a second tube having a proximal end and a distal end being positioned within and opening into an interior of the second balloon to exhaust spent refrigerant therefrom, a cryogenic ablation region being defined between the respective distal end openings of the first and second tubes, the ablation region being adjustable by movement of at least one of the first and second tubes within the second balloon.

11. The cryogenic ablation apparatus of claim 10 , wherein a portion of the second balloon is wrapped around the first balloon.

12. The cryogenic ablation apparatus of claim 10 , the first shape being a bulbous shape, a spherical shape or a spheroid shape, and the second shape being a helical shape or a spiral shape.

13. The cryogenic ablation apparatus of claim 10 , the first balloon being inflatable, and the second balloon being configured to carry coolant such that the first balloon is not exposed to coolant.

14. The cryogenic ablation apparatus of claim 10 , a diameter or width of the first balloon varying along a length of the first balloon, and a diameter or width of the second balloon being substantially constant along a length of the second balloon.

15. The cryogenic ablation apparatus of claim 14 , a first portion of the second balloon extending substantially laterally along a first portion of an outer surface of the first balloon, and a second portion of the second balloon wrapping around a second portion of the outer surface of the first balloon.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2009
From: INGLE, FRANK; BENCINI, ROBERT F.; KOBLISH, JOSEF V.; WOHLGEMUTH, JONATHAN A.; ROCHE, PAUL
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 022632/0151 →
Continuity (2)
Provisional Application 61053590 · May 15, 2008
Related Publication 20090287202A1 · Nov 19, 2009