IP Library › Granted Patent US 10,940,036
Granted Patent B2
US 10,940,036 · App. 16/300,602 · Granted Mar 9, 2021

Balloon catheter

Inventors: Peter Kyone Park (Milpitas, CA); Dominic Santoianni (Kirkland, CA); Stewart Maddison Fox (Cambridgeshire, GB); Peter Georg Laitenberger (Cambridgeshire, GB)
Assignee: Cryotherapeutics GmbH
A61F7/123A61B18/02A61F7/0085A61B2018/00011A61B2018/0022A61B2018/00023A61B2018/00041A61B2018/00577A61B2018/0212A61B2018/0268A61F2007/0058A61F2007/0092A61F2007/126A61M25/1002A61M2025/1088
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Quick Facts
Patent No.
US 10,940,036
App. No.
16/300,602
Granted
Mar 9, 2021
Kind
B2
Abstract

A catheter is provided comprising a flexible heat transfer element provided on an outer surface of the catheter, a conduit arranged to supply an inflation fluid for inflating the flexible heat transfer element so as to form an inflated balloon, a guide wire lumen for receiving a guide wire, and an elongate cooling element arranged to cool said inflation fluid for inflating the balloon. Said cooling element and said guide wire lumen are arranged inside the flexible heat transfer element such that, when inflated the cooling element is substantially central within the balloon and said guide wire lumen is parallel to and radially offset from the cooling element.

Claims (26)

1. A catheter comprising:

a flexible heat transfer element provided on an outer surface of the catheter;

a conduit arranged to supply an inflation fluid for inflating the flexible heat transfer element so as to form an inflated balloon;

a guide wire lumen for receiving a guide wire; and

an elongate cooling element arranged to cool said inflation fluid for inflating the balloon;

wherein said cooling element and said guide wire lumen are arranged inside the flexible heat transfer element such that, when inflated the cooling element is substantially central within the balloon and said guide wire lumen is parallel to and radially offset from the cooling element; and

wherein the flexible heat transfer member is configured to inflate anisotropically when viewed in the plane normal to the longitudinal axis of the cooling element so as to form the balloon.

2. The catheter according to claim 1 , wherein said cooling element is arranged within the balloon so that, in use, the inner surface of the balloon is cooled substantially uniformly by the cooling element around the circumference of the balloon.

3. The catheter according to claim 1 , wherein the elongate cooling element extends along a longitudinal axis in a direction parallel to a central axis of the balloon.

4. The catheter according to claim 3 , wherein the central axis of the balloon is radially offset from the longitudinal axis of the elongate cooling element by 0.1 to 0.5 mm, more preferably 0.2 to 0.4 mm.

5. The catheter according to claim 1 , wherein the cooling element is arranged inside the flexible heat transfer element such that, when viewed in the plane normal to the longitudinal axis of the cooling element, the cooling element is provided substantially within the centre of the balloon.

6. The catheter according to claim 1 , wherein the flexible heat transfer element is configured to inflate into a substantially cylindrical balloon having first and second asymmetric ends.

7. The catheter according to claim 1 , wherein the conduit arranged to supply an inflation fluid, the guide wire lumen and the elongate cooling element are provided inside a shaft, wherein the flexible heat transfer element is adhered to the shaft at the first end, and wherein the flexible heat transfer element is adhered to the guide wire lumen at the second end.

8. The catheter according to claim 1 , wherein said cooling element comprises a first tube provided inside a second tube, wherein the first tube is substantially parallel to the second tube; and the second tube is configured to receive a flow of a coolant for cooling the cooling element from the first tube.

9. The catheter according to claim 1 , wherein, in use, the first tube and the second tube are operated such that the pressure of the second tube is lower than the pressure of the first tube.

10. The catheter according to claim 9 , wherein the elongate cooling chamber is arranged co-linearly with an end of the second tube, wherein said cooling element further comprises a restriction tube configured to convey the coolant from the first tube to the cooling chamber, wherein said restriction tube has narrower internal diameter than the first tube, and wherein the restriction tube and cooling chamber are configured such that when the coolant conveyed along the first tube as a liquid, at least some of the coolant undergoes a phase change in the restriction tube and/or in the cooling chamber and returns through the second tube as a gas.

11. The catheter according to claim 1 , wherein said cooling element comprises an elongate cooling chamber configured to receive coolant from the first tube and provide said coolant to the second tube.

12. The catheter according to claim 1 , wherein, said balloon is substantially cylindrical.

13. The catheter according to claim 1 wherein, in use in a vessel, the inflated flexible heat transfer element occludes fluid flow between the walls of the vessel and the inflated flexible heat transfer element.

14. The catheter according to claim 1 , wherein the conduit is further configured to provide a return flow of the inflation fluid of the flexible heat transfer element.

15. The catheter according to claim 1 , wherein the central axis of the balloon extends through the elongate cooling element, in the direction of the longitudinal axis of the cooling element.

16. The catheter according to claim 1 , wherein said cooling element is not attached to the end of the guide wire lumen and wherein said cooling element is configured such that, when in use, the flow of the coolant causes the cooling element to vibrate.

17. The catheter according to claim 1 , wherein the flexible heat transfer element has single walled outer membrane.

18. The catheter according to claim 1 , further comprising a heater for heating the inflation fluid, or solidified inflation fluid, of the flexible heat transfer element.

19. The catheter according to claim 1 , wherein the conduit, the guide wire lumen and the cooling element protrude from a shaft, and wherein, inside the shaft, the cooling element has an outer surface having a flattened-circular shape when viewed in the plane normal to the longitudinal axis of the cooling element.

20. The catheter according to claim 1 , wherein the conduit, the guide wire lumen and the cooling element protrude from a shaft, the shaft comprising a solid body occupying the regions between the conduit, the guide wire lumen and the cooling element.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2020
From: PARK, PETER KYONE
To: CRYOTHERAPEUTICS GMBH
Reel/Frame 053884/0826 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2020
From: SANTOIANNI, DOMENIC; FOX, STEWART MADDISON; LAITENBERGER, PETER GEORG
To: CRYOTHERAPEUTICS GMBH
Reel/Frame 053485/0532 →
Continuity (2)
Provisional Application 62335885 · May 13, 2016
Related Publication 20190209368A1 · Jul 11, 2019