IP Library Granted Patent US 7,780,608
Granted Patent B2
US 7,780,608 · App. 11/228,691 · Granted Aug 24, 2010

Cryotherapy method for detecting and treating vulnerable plaque

Assignee: Boston Scientific Scimed, Inc.
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Quick Facts
Patent No.
US 7,780,608
App. No.
11/228,691
Granted
Aug 24, 2010
Kind
B2
Abstract

Methods, apparatus, and kits detect and/or treat vulnerable plaque of a blood vessel. A temperature differential can be sensed along a lumen surface with temperature sensors on a balloon filled with warm gas. Treatment methods include controlled and safe cryogenic cooling of vulnerable plaque to inhibit release of retained fluid within the vulnerable plaque so as to inhibit acute coronary syndrome and to help maintain patency of a body lumen.

Claims (30)

1. A catheter system for detecting vulnerable plaque of a blood vessel having a lumen surface, said catheter system comprising:

a catheter body having a proximal end and a distal end with a supply lumen and an exhaust lumen extending therebetween;

a balloon disposed at the distal end of the catheter body and having a balloon wall with an outer surface and an inner surface, the outer surface of the balloon wall being an outer surface of the catheter system and the inner surface defining a balloon inflation cavity, the balloon in fluid communication with the supply lumen and exhaust lumen;

an inflation supply in fluid communication with the supply lumen at the proximal end of the catheter body, the inflation supply configured to inflate the balloon inflation cavity with a gas when detecting the vulnerable plaque;

a gas disposed in the balloon inflation cavity, wherein the gas has a temperature of about 30° C. or more;

a plurality of temperature sensors affixed to the balloon so as to provide temperature measurements of the lumen surface; and

external equipment comprising a circuit and an indicator that provides an indication to a user of the catheter system, the circuit adapted to measure a temperature differential between at least two different ones of the plurality of temperature sensors, and to generate a vulnerable plaque signal on the indicator when the temperature differential is about 1° C. or more.

2. A catheter as in claim 1 , wherein the inflation supply is further configured to direct cooling fluid to the balloon in a treatment mode so that an outer temperature of the balloon is about 10° C. or less.

3. A catheter as in claim 1 , wherein the plurality of temperature sensors are affixed to an outer surface of the balloon.

4. A catheter as in claim 3 , wherein the plurality of temperature sensors provide direct temperature measurements of the lumen surface.

5. A catheter as in claim 1 , wherein the balloon comprises a first balloon and further comprising a second balloon disposed over the first balloon, wherein the plurality of temperature sensors are disposed between the first balloon and the second balloon.

6. A catheter as in claim 1 , wherein the plurality of temperature sensors comprise thermocouples or thermistors.

7. A catheter as in claim 1 , wherein the plurality of temperature sensors are distributed circumferentially about the balloon.

8. A catheter as in claim 1 , wherein the external equipment further comprises a connector and a temperature readout device connectable to the connector.

9. A catheter as in claim 8 , wherein the circuit is attached to the connector.

10. A catheter as in claim 9 , wherein the indicator is located on the connector.

11. A catheter system for detecting vulnerable plaque of a blood vessel having a lumen surface, said catheter system comprising:

a catheter body having a proximal end and a distal end with a supply lumen and an exhaust lumen extending therebetween;

a balloon disposed at the distal end of the catheter body, the balloon in fluid communication with the supply lumen and exhaust lumen, the balloon having a balloon wall with an outer surface and an inner surface, the outer surface of the balloon wall being an outer surface of the catheter and the inner surface defining an inflation cavity;

an inflation supply in fluid communication with the supply lumen at the proximal end of the catheter body, the inflation supply configured to inflate the balloon inflation cavity with a gas when detecting the vulnerable plaque;

a gas disposed in the balloon inflation cavity, wherein the gas has a temperature of about 30° C. or more;

a plurality of temperature sensors affixed to the balloon wall so as to provide temperature measurements of the lumen surface; and

a device adapted to measure a temperature differential between at least two different ones of the plurality of temperature sensors, and to initiate therapy automatically by the catheter system when the temperature differential is about 1° C. or more.

12. A catheter as in claim 11 , wherein the inflation supply is further configured to direct cooling fluid to the balloon in a treatment mode so that an outer temperature of the balloon is about 10° C. or less.

13. A catheter as in claim 11 , wherein the plurality of temperature sensors are affixed to an outer surface of the balloon.

14. A catheter as in claim 13 , wherein the plurality of temperature sensors provide direct temperature measurements of the lumen surface.

15. A catheter as in claim 11 , wherein the balloon comprises a first balloon and further comprising a second balloon disposed over the first balloon, wherein the plurality of temperature sensors are disposed between the first balloon and the second balloon.

16. A catheter as in claim 11 , wherein the plurality of temperature sensors comprise thermocouples or thermistors.

17. A catheter as in claim 11 , wherein the plurality of temperature sensors are distributed circumferentially about the balloon.

18. A catheter as in claim 11 , wherein the device further comprises a connector and a temperature readout device connectable to the connector.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2010
From: CRYOVASCULAR SYSTEMS, INC.
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 024626/0933 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2006
From: JOYE, JAMES; TATSUTANI, KRISTINE; WILLIAMS, JOSEPH J.
To: CRYOVASCULAR SYSTEMS, INC.
Reel/Frame 017471/0822 →
Continuity (3)
Division 1038734700 · Mar 11, 2003
Continuation In Part 0964146200 · Aug 18, 2000
Related Publication 20060015092A1 · Jan 19, 2006