IP Library Granted Patent US 7,951,140
Granted Patent B2
US 7,951,140 · App. 11/971,582 · Granted May 31, 2011

Catheter with cryogenic and electrical heating ablation

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,951,140
App. No.
11/971,582
Granted
May 31, 2011
Kind
B2
Abstract

A catheter includes a cryoablation tip with an electrically-driven ablation assembly for heating tissue. The cryoablation tip may be implemented with a cooling chamber through which a controllably injected coolant circulates to lower the tip temperature, and having an RF electrode at its distal end. The RF electrode may be operated to warm cryogenically-cooled tissue, or the coolant may be controlled to conductively cool the tissue in coordination with an RF treatment regimen, allowing greater versatility of operation and enhancing the lesion size, speed or placement of multi-lesion treatment or single lesion re-treatment cycles.

Claims (23)

1. A catheter for the treatment of tissue having a controller, comprising:

a catheter body,

a treatment tip positioned on the catheter body, the tip having a cryogenic cooling segment for contacting and thermally treating tissue, and an electrically-driven ablation assembly, the electrically-driven ablation assembly operable by the controller to apply heating ablation energy to the tissue and ablate the tissue simultaneously with the cooling segment.

2. The catheter of claim 1 , wherein the cooling segment operates to ablate the contacted tissue to a predetermined cooled tissue boundary and the electrically-driven ablation assembly operates to extend ablation beyond the predetermined cooled tissue boundary.

3. The catheter of claim 1 , wherein the tip further comprises one or more sensing electrodes, the sensing electrodes usable to cold-map cardiac tissue sites.

4. The catheter of claim 1 , wherein the electrically driven ablation assembly and the cooling segment are arranged to provide a predetermined tip temperature.

5. The catheter of claim 1 , wherein the cooling segment is coolable to about −70° C.

6. The catheter of claim 1 , wherein the electrically-driven ablation assembly includes an electrode assembly for applying radio frequency energy.

7. The catheter of claim 6 , further comprising a driver providing the radio frequency energy at a frequency effective to achieve enhanced absorption in the thermally treated tissue at a depth beyond a thermal conduction depth of the cooling segment.

8. The catheter of claim 1 , wherein the electrically-driven ablation assembly and the cooling segment operate to prevent near field charring during ablation.

9. The catheter of claim 1 , wherein the electrically-driven ablation assembly and the cooling segment operate to prevent near field icing during ablation.

10. The catheter of claim 1 , wherein the electrically-driven ablation assembly and the cooling segment operate to maintain a non-ablating near field temperature while attaining an ablation temperature at a depth beyond a thermal conduction depth of the cooling segment.

11. A catheter for the treatment of tissue, comprising:

a catheter body,

a treatment tip positioned on the catheter body, the tip having a cryogenic cooling segment for contacting and thermally treating tissue, and an electrically-driven ablation assembly, the electrically-driven ablation assembly operable to apply heating ablation energy to the tissue, the cooling segment ablates contacted tissue to a predetermined cooled tissue boundary and the electrically-driven ablation assembly extends ablation beyond the predetermined cooled tissue boundary.

12. The catheter of claim 11 , wherein the tip further comprises one or more sensing electrodes, the sensing electrodes usable to cold-map cardiac tissue sites.

13. The catheter of claim 11 , wherein the electrically driven ablation assembly and the cooling segment operate simultaneously to provide a predetermined tip temperature.

14. The catheter of claim 11 , wherein the cooling segment is coolable to about −70° C.

15. The catheter of claim 11 , wherein the electrically-driven ablation assembly includes an electrode assembly for applying radio frequency energy.

16. The catheter of claim 15 , further comprising a driver providing the radio frequency energy at a frequency effective to achieve enhanced absorption in the thermally treated tissue at a depth beyond a thermal conduction depth of the cooling segment.

17. The catheter of claim 11 , wherein the electrically-driven ablation assembly and the cooling segment operate to prevent near field charring during ablation.

18. The catheter of claim 11 , wherein the electrically-driven ablation assembly and the cooling segment operate to prevent near field icing during ablation.

19. The catheter of claim 11 , wherein the electrically-driven ablation assembly and the cooling segment operate to maintain a non-ablating near field temperature while attaining an ablation temperature at a depth beyond a thermal conduction depth of the cooling segment.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2009
From: CRYOCATH TECHNOLOGIES INC.
To: MEDTRONIC CRYOCATH LP
Reel/Frame 023119/0651 →