IP Library Granted Patent US 7,485,131
Granted Patent B2
US 7,485,131 · App. 10/631,019 · Granted Feb 3, 2009

System and method for controlling pressure in a surgical tourniquet

Assignee: Stryker Corporation
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Quick Facts
Patent No.
US 7,485,131
App. No.
10/631,019
Granted
Feb 3, 2009
Kind
B2
Abstract

A system and method of controlling the pressure within a pressure cuff of a surgical tourniquet so as selectively to occlude blood flow within a portion of a limb of a patient, wherein a sensor determines when flow past the tourniquet is occurring so that corrective action may be taken, such as by increasing the pressure in the tourniquet or by notifying an operator of the flow past the tourniquet. The present invention may use an acoustic sensor to detect Korotkoff sounds indicating incipient blood flow past the tourniquet. When such signals are detected, the tourniquet controller may either incrementally increase the pressure in the tourniquet, or if a threshold would be exceeded by such an increase, signal an alarm indicative of the blood flow.

Claims (43)

1. A surgical tourniquet controller, said controller comprising:

a pressure source, said pressure source supplying a pressure medium at a sufficient pressure to pressurize a pressure cuff being used as a surgical tourniquet;

a pressure port, said pressure port allowing a pressure medium to be supplied to a pressure cuff;

a source valve, said source valve interposed between said pressure source and said pressure port;

an occlusion sensing means for detecting blood flow past a pressure cuff; and

a processor, said processor communicably connected to said occlusion sensing means, said processor further communicably connected to said source valve;

wherein said processor instructs said source valve to increase the pressure in a pressure cuff when said occlusion sensing means detects blood flow past the pressure cuff.

2. A surgical tourniquet controller according to claim 1 , wherein said occlusion sensing means comprises a pressure transducer for detecting pressure variations in the pressure cuff indicative of blood flow past the pressure cuff.

3. A surgical tourniquet controller according to claim 2 , wherein said occlusion sensing means further comprises a processor having instructions for detecting oscillometric pressure variations indicative of blood flow past the pressure cuff.

4. A surgical tourniquet controller according to claim 2 , wherein said occlusion sensing means further comprises a processor having instructions for detecting Korotkoff sounds indicative of blood flow past the pressure cuff.

5. A surgical tourniquet controller according to claim 2 , wherein said occlusion sensing means further comprises signal processing circuitry to detect oscillometric variations in the pressure indicative of blood flow past the pressure cuff.

6. A surgical tourniquet controller according to claim 2 , wherein said occlusion sensing means further comprises signal processing circuitry to detect Korotkoff sounds indicative of blood flow past the pressure cuff.

7. A surgical tourniquet controller according to claim 1 , further comprising a pressure threshold value, wherein said processor instructs said source valve to increase the pressure in a pressure cuff only when the increased pressure would not exceed the pressure threshold value.

8. A surgical tourniquet controller according to claim 1 , further comprising a pressure relief valve, said pressure relief valve having a pre-determined pressure threshold value, said pressure relief valve being connected to said pressure port such that if a pressure in said pressure port exceeds said pressure threshold value, said pressure relief valve vents said pressure port.

9. A surgical tourniquet controller according to claim 1 , wherein said occlusion sensing means comprises a photometric sensor for measuring blood oxygen saturation.

10. A surgical tourniquet controller according to claim 9 , wherein said surgical tourniquet controller further comprises a pressure cuff, said photometric sensor being located on an inner surface of said pressure cuff.

11. A surgical tourniquet controller according to claim 10 , wherein said photometric sensor comprises a laser doppler perfusion monitor.

12. A surgical tourniquet controller according to claim 9 , wherein said surgical tourniquet controller further comprises a processor having instructions for detecting variations in sensed blood oxygen saturation levels indicative of blood flow past the pressure cuff.

13. A surgical tourniquet controller according to claim 9 , wherein said surgical tourniquet controller further comprises signal processing circuitry for detecting variations in sensed blood oxygen saturation levels indicative of blood flow past the pressure cuff.

14. A method for controlling a surgical tourniquet, said method comprising the steps of:

inflating a pressure cuff to an initial pressure;

incrementally decreasing pressure in the pressure cuff until flow is detected by a flow sensor past the pressure cuff;

increasing the pressure in the pressure cuff a pre-set amount;

monitoring the flow sensor to detect flow past the pressure cuff; and

when flow is detected past said pressure cuff, incrementally increasing pressure in said pressure cuff until flow is no longer detected.

15. A method for controlling a surgical tourniquet according to claim 14 , further comprising the step of:

when flow is detected past said pressure cuff, increasing the pressure in said pressure cuff a pre-set amount once flow is no longer detected past said pressure cuff.

16. A method for controlling a surgical tourniquet according to claim 14 , further comprising the step of:

receiving a desired inflation duration;

starting a timer when the pressure cuff is initially inflated; and

deflating the pressure cuff when the desired inflation duration has occurred.

17. A method for controlling a surgical tourniquet according to claim 14 , further comprising the steps of:

receiving a desired inflation duration;

starting a timer when the pressure cuff is initially inflated;

informing an operator when the desired inflation duration has occurred.

18. A method for controlling a surgical tourniquet according to claim 14 , further comprising the steps of:

determining a threshold pressure above which the pressure cuff should not be inflated;

ceasing pressure increases when the threshold pressure is achieved; and

informing an operator that the threshold pressure has been achieved.

19. A method for controlling a surgical tourniquet according to claim 14 , further comprising the steps of:

receiving a threshold pressure above which the pressure cuff should not be inflated from an operator;

ceasing pressure increases if the threshold pressure is reached; and

informing an operator that the threshold pressure has been reached.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNMENT TO ADD ADDITIONAL PAGE PREVIOUSLY RECORDED ON REEL 019753 FRAME 0104. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 6, 2007
From: VARITREX, LLC
To: STRYKER CORPORATION
Reel/Frame 019790/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2007
From: VARITREX, LLC
To: STRYKER CORPORATION
Reel/Frame 019753/0104 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2007
From: HOVANES, MICHAEL E.; SCHMITT, DON S.
To: VARITREX, LLC
Reel/Frame 019275/0685 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2007
From: INSTRUMED, INC.
To: VARITREX, LLC
Reel/Frame 018898/0984 →
Continuity (4)
Continuation In Part 0995576300 · Sep 19, 2001
Continuation In Part 0950413100 · Feb 15, 2000
Continuation In Part 0928031200 · Mar 29, 1999
Related Publication 20040147956A1 · Jul 29, 2004