IP Library Granted Patent US 7,122,047
Granted Patent B2
US 7,122,047 · App. 10/714,488 · Granted Oct 17, 2006

Controlled heat transfer with mammalian bodies

Assignee: The Board of Trustees of the Leland Stanford Junior University
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Quick Facts
Patent No.
US 7,122,047
App. No.
10/714,488
Granted
Oct 17, 2006
Kind
B2
Abstract

Methods, computer programming and devices for transferring heat to and/or from a body portion of a mammal are provided. One approach includes directly determining a state of vasoconstriction or vasodilation in a portion of a body, and supplying heat to the portion of the body when vasoconstriction is determined, and removing heat from the portion of the body when vasodilation is determined. The body portion preferably includes specific heat exchange vasculature. In another approach, a transition of the body portion from a state of vasodilation to vasoconstriction is determined and the body portion is then actively kept in a state of vasodilation while removing heat therefrom.

Claims (78)

1. A method of transferring heat from a body portion of a mammal comprising the acts of:

determining a state of vasoconstriction or vasodilation in a portion of a body;

supplying heat to the portion of the body when vasoconstriction is determined;

removing heat from the portion of the body when vasodilation is determined, and

applying negative pressure to the portion of the body.

2. The method of approach 1 , wherein the portion of the body is an arterial vascular anastamosis containing portion of the body.

3. The method of approach 1 further including the act of preselecting the portion of the body.

4. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation includes sensing a characteristic of the body associated with the state of vasoconstriction or vasodilation.

5. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation includes measuring blood flow.

6. The method of approach 5 , wherein the act of measuring blood flow further includes measuring a volume of the portion of the body.

7. The method of approach 5 , wherein the act of measuring blood flow further includes measuring blood flow by laser Doppler.

8. The method of approach 5 , wherein a state of vasoconstriction is associated with a first range of blood flow levels and vasodilation is associated with a second range of blood flow levels.

9. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes measuring heat transfer from the portion of the body.

10. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes measuring the temperature of the body.

11. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes measuring the core body temperature.

12. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes measuring tympanic temperature.

13. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes measuring skin temperature of a portion of the body.

14. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes measuring bio-impedance of a portion of the body.

15. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes measuring light absorption of a portion of the body.

16. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes providing an EKG.

17. The method of approach 1 , wherein the act of determining vasoconstriction or vasodilation further includes providing an ECG.

18. A method comprising the acts of:

monitoring for both vasoconstriction and vasodilation in a portion of a body;

supplying heat to the portion of the body when vasoconstriction is determined;

removing heat from the portion of the body when vasodilation is determined; and

controlling at least one of vasoconstriction or vasodilation.

19. The method of approach 18 , wherein controlling at least one of vasoconstriction or vasodilation includes the act of inducing vasodilation in a portion of the body.

20. The method of approach 18 , wherein controlling at least one of vasoconstriction or vasodilation includes the act of inducing vasoconstriction in a portion of the body.

21. The method of approach 18 , wherein the act of controlling at least one of vasoconstriction or vasodilation includes applying a surface treatment to the portion of the body.

22. The method of approach 18 , wherein the act of controlling at least one of vasoconstriction or vasodilation includes influencing the thermoregulatory system of the mammal.

23. The method of approach 18 , wherein the act of controlling at least one of vasoconstriction or vasodilation includes influencing the Pre-Optic Anterior Hypothalamus (POAH) of the mammal.

24. The method of approach 18 , wherein the act of controlling at least one of vasoconstriction or vasodilation includes providing at least one preselected visual stimulus.

25. The method of approach 18 , wherein the act of controlling at least one of vasoconstriction or vasodilation includes drug delivery.

26. The method of approach 18 , wherein the act of controlling at least one of vasoconstriction or vasodilation includes adjusting the temperature of the portion of the body.

27. The method of approach 1 , wherein the act of supplying heat further includes supplying sufficient heat to effect vasodilation.

28. A method of transferring heat from a body portion of a mammal comprising the acts of:

inducing a transition of a body portion from a state of vasodilation to vasoconstriction by removing heat from the body portion;

determining a transition temperature associated with the transition from vasodilation to vasoconstriction;

reestablishing vasodilation in the body portion; and

removing heat from the body portion with a temperature equal to or greater than the transition temperature.

29. The method claim 28 , wherein if the body portion is initially in vasoconstriction, supplying heat until vasodilation occurs before inducing the transition from vasodilation to vasoconstriction.

30. The method of claim 28 , wherein the temperature is within 2° C. of the transition from vasodilation to vasoconstriction.

31. The method of claim 28 , wherein the temperature is within 1° C. of the transition from vasodilation to vasoconstriction.

32. The method of claim 28 , wherein the temperature is lowered after reestablishing vasodilation without inducing vasoconstriction.

33. A method of transferring heat to or from a portion of a body of a mammal comprising the acts of:

determining a state of vasoconstriction or vasodilation in a portion of the body;

when vasodilation is determined, selecting transferring heat to or from the portion of the body; and

when vasoconstriction is determined, selecting at least one of supplying heat to the portion of the body and not removing heat from the portion of the body,

whereby optimal thermoregulatory status of the mammal is maintained.

34. A method for controlling the body temperature of a mammal comprising:

removing or supplying heat from a portion of the body,

while applying negative pressure to the portion of the body, and

maintaining the portion of the body above a temperature causing vasoconstriction in the portion of the body by a means for control employing a measured characteristic associated with a state of vasoconstriction or vasodilation of the portion of the body.

35. The method of approach 34 , wherein the temperature of the portion of the body is maintained above 18° C. to 22° C.

36. The method of approach 34 , further including the act of maintaining the temperature of the portion of the body below approximately 25° C.

37. A method of controlling body temperature of a mammal comprising:

placing at least a portion of the body in thermal communication with a conductor;

measuring a characteristic associated with a state of vasoconstriction or vasodilation in the portion of the body; and

controlling heating or cooling of the conductor to maintain vasodilation in the portion of the body based upon a value that relates the characteristic to vasodilation.

38. The method of approach 37 , wherein the value is determined by

supplying heat until vasodilation occurs,

removing heat until vasoconstriction occurs,

reestablishing vasodilation, and

setting the value equal to or greater than a value corresponding to the

transition from vasodilation to vasoconstriction.

39. The method of approach 38 wherein the value is associated with a temperature of the conductor greater than or equal to a temperature where a transition of vasodialtion to vasoconstriction occurs.

40. A system for controlling body temperature of a mammal comprising:

a conductor adapted to interface with a body portion of the mammal;

a controller adapted to vary a temperature of the conductor;

a sensor element for sensing a characteristic associated with vasoconstriction or vasodilation of the body portion,

wherein the controller adjusts the temperature of the conductor to maintain vasodilation in the portion of the body portion based upon a predetermined schedule that relates to the characteristic to vasodilation.

41. The system of claim 40 , further including a heat exchange medium in thermal communication with at least a portion of the mammal and with at least a portion of the conductor.

42. A method comprising the acts of:

monitoring for both vasoconstriction and vasodilation in a specific portion of a body;

supplying heat to said specific portion of the body when vasoconstriction is determined; and

removing heat from said specific portion of the body when vasodilation is determined.

43. The method of approach 42 , wherein the act of determining vasoconstriction or vasodilation includes sensing a characteristic of the body associated with the state of vasoconstriction or vasodilation.

44. The method of approach 43 , wherein the act of determining vasoconstriction or vasodilation includes measuring blood flow.

Assignments (2)
CONFIRMATORY LICENSE Recorded Mar 7, 2012
From: BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY
To: US ARMY, SECRETARY OF THE ARMY
Reel/Frame 027824/0155 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2004
From: GRAHN, DENNIS A.; HELLER, H. CRAIG
To: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY
Reel/Frame 015090/0298 →
Continuity (1)
Related Publication 20050103353A1 · May 19, 2005