IP Library Granted Patent US 9,624,926
Granted Patent B2
US 9,624,926 · App. 13/659,123 · Granted Apr 18, 2017

Heating/ cooling system for indwelling heat exchange catheter

Inventors: Wayne A. Noda (Mission Viejo, CA); Stelica Stelea (Yorba Linda, CA)
Assignee: Zoll Circulation, Inc.
F04C2/18F04C15/0069F04C29/0064F04D13/024F04D29/606A61F7/0085A61F7/12A61F2007/0054A61F2007/0093A61F2007/0096A61F2007/126F25B2400/01F25B2600/0253F25B2700/1351F25D17/02
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Quick Facts
Patent No.
US 9,624,926
App. No.
13/659,123
Granted
Apr 18, 2017
Kind
B2
Abstract

A cooling system for an indwelling heat exchange catheter includes a heat exchange bath that is configured to receive a conduit that carries saline to and from the catheter. A heating/cooling fluid is in the bath and exchanges heat with the saline. The heating/cooling fluid flows through a heat exchanger that includes a refrigerant and two variable speed DC compressor for removing heat from the refrigerant. A gear pump circulates the working fluid to and from the catheter and is removably engaged with a pump support platform.

Claims (25)

1. A fluid pump assembly, comprising: a pump support platform supporting a motor; and a pump removably engaged with the pump support platform, the pump pumping working fluid to and from an intravascular catheter, the motor being removably coupled to the pump to provide power to the pump when the pump is engaged with the pump support platform; a magnet extending from the pump and coupled thereto: a cup-shaped member coupled to the motor to receive the magnet and magnetically engage the magnet such that as the cup-shaped member is rotated by the motor it causes the magnet to rotate which, in turn, causes the pump to pump fluid, wherein the pump support platform includes a first arcuate support collar and a second arcuate support collar, the collars being received in a pump bore in the pump support platform, the pump being received by the support collars in the pump bore.

2. The pump assembly of claim 1 , wherein the pump support platform comprises:

a pump locking bore, the pump removably engaging the pump locking bore.

3. The assembly of claim 1 , wherein the pump support platform further comprises:

at least one sensor for detecting the presence of the pump when it is engaged with the pump support platform.

4. The assembly of claim 1 , wherein the pump is a diaphragm pump.

5. The assembly of claim 1 , wherein the pump support platform includes an overflow bore through which any saline that may leak from the pump can flow.

6. The assembly of claim 1 , wherein the pump is a gear pump.

7. The assembly of claim 1 , wherein a magnetic coupling is established between the cup-shaped member and the magnet to be broken under a predetermined overpressure.

8. A fluid pump assembly, comprising:

a pump support platform supporting a motor; and

a pump removably engaged with the pump support platform, the pump pumping working fluid to and from an intravascular catheter, the motor being removably coupled to the pump to provide power to the pump when the pump is engaged with the pump support platform;

the pump support platform including a first arcuate support collar and a second arcuate support collar, the collars being received in a pump bore in the pump support platform, the pump being received by the support collars in the pump bore.

9. The assembly of claim 8 , wherein the pump support platform further comprises:

at least one sensor for detecting the presence of the pump when it is engaged with the pump support platform.

10. The assembly of claim 8 , wherein the pump is a diaphragm pump.

11. The assembly of claim 8 , wherein the pump support platform includes an overflow bore through which any saline that may leak from the pump can flow.

12. The assembly of claim 8 , wherein the pump is a gear pump.

13. The assembly of claim 8 , comprising:

a magnet extending from the pump and coupled thereto;

a cup-shaped member coupled to the motor to receive the magnet and magnetically engage the magnet such that as the cup-shaped member is rotated by the motor it causes the magnet to rotate which, in turn, causes the pump to pump fluid.

14. The assembly of claim 8 , comprising first and second magnetic elements respectively coupled to the pump and the motor to couple the pump to the motor, a magnetic coupling being established by the magnetic elements to be broken under a predetermined overpressure.

15. A fluid pump assembly, comprising: a pump support platform supporting a motor; and a pump removably engaged with the pump support platform, the pump pumping working fluid to and from an intravascular catheter, the motor being magnetically coupled to the pump to provide power to the pump when the pump is engaged with the pump support platform, first and second magnetic elements respectively coupled to the pump and the motor to couple the pump to the motor, a magnetic coupling being established by the magnetic elements to be broken under a predetermined overpressure, wherein the pump support platform includes a first arcuate support collar and a second arcuate support collar, the collars being received in a pump bore in the pump support platform, the pump being received by the support collars in the PUMP bore.

16. The assembly of claim 15 , wherein the pump is a gear pump.

17. The assembly of claim 15 , wherein the first magnetic element is established at least in part by a magnet extending from the pump and coupled thereto and the second magnetic element is established at least in part by a cup-shaped member coupled to the motor to receive the magnet and magnetically engage the magnet such that as the cup-shaped member is rotated by the motor it causes the magnet to rotate which, in turn, causes the pump to pump fluid.

Continuity (4)
Continuation 11765564 · Jun 20, 2007
Division 10913127 · Aug 6, 2004
Continuation In Part 09865560 · Jun 25, 2001
Related Publication 20130046365A1 · Feb 21, 2013