Claims
- 1. An organ reshaping device, comprising:
a reshaping member comprised of elastic material, said reshaping member configured to be placed about at least a portion of the organ such that the elastic material is subject to substantially the same environmental conditions as the surface of the organ; said elastic material having an elastic characteristic which:
a) changes upon alteration of the environmental conditions beyond a threshold level; and b) remains at least partially changed upon return of the environmental conditions from beyond the threshold level to an unaltered level.
- 2. An organ reshaping device as in claim 1, wherein the elastic characteristic is a range of elastic deformation.
- 3. An organ reshaping device as in claim 1, wherein the elastic material has a first state and a second state.
- 4. An organ reshaping device as in claim 3, wherein the elastic material is generally in the first state prior to alteration of environmental conditions beyond the threshold level.
- 5. An organ reshaping device as in claim 4, wherein the elastic material is generally in the second state when the environmental conditions are altered beyond the threshold level.
- 6. An organ reshaping device as in claim 5, wherein the elastic material is generally in the first state when the environmental conditions return to the unaltered level.
- 7. An organ reshaping device as in claim 6, wherein the first state is a martensitic state, and the second state is an austenitic state.
- 8. An organ reshaping device as in claim 7, wherein the elastic material comprises a shape memory material.
- 9. An organ reshaping device as in claim 8, wherein the elastic material comprises Nitinol.
- 10. An organ reshaping device as in claim 1, wherein the reshaping member comprises a harness.
- 11. An organ reshaping device as in claim 10, wherein the harness is configured to extend substantially circumferentially around the organ.
- 12. An organ reshaping device for exerting a force on an organ, comprising:
a bending member configured to be placed in contact with the organ so that the organ urges the bending member into a deformed shape relative to an at rest shape of the member, and the bending member exerts a bending force on the organ; the bending member has a first elastic deflection range and a second elastic deflection range, and may operate over only one deflection range at a time; wherein the bending member is responsive to inputs to shift between the first and second elastic deflection ranges.
- 13. An organ reshaping device as in claim 12, wherein the bending member is responsive to an input of thermal energy to shift between the first and second elastic deflection ranges.
- 14. An organ reshaping device as in claim 12, wherein the bending member comprises a shape memory material.
- 15. An organ reshaping device as in claim 14, wherein the bending member shape memory material exhibits transformational elasticity.
- 16. A method, comprising:
providing a harness comprised of a shape memory material; placing the harness around an organ while the shape memory material is in a generally martensitic state; and raising the temperature of the shape memory material to transform the shape memory material to a generally austenitic state so that the harness generally hugs the surface of the organ.
- 17. A method as in claim 16 additionally comprising reducing the temperature of the shape memory material to transform the shape memory material back to a generally martensitic state.
- 18. A method as in claim 16, wherein raising the temperature of the shape memory material comprises delivering a warm fluid onto the harness.
- 19. A method as in claim 16, wherein raising the temperature of the shape memory material comprises application of an electrical current to the harness.
- 20. A method as in claim 16 additionally comprising allowing the organ to change in shape and then raising the temperature of the shape memory material to transform the shape memory material to a generally austenitic state so that the harness generally hugs the surface of the organ.
- 21. A method of reshaping an organ from an initial shape to a desired shape, comprising:
placing a reshaping harness about at least a portion of the organ, said placing comprising elastically deforming the harness such that reshaping forces in response to deformation are applied by the harness to the organ within an elastic deflection range of the harness, the reshaping forces urging the organ from the initial shape towards an intermediate shape between the initial shape and the desired shape; and after the organ has assumed the intermediate shape, altering the elastic deflection range of the harness so that the reshaping forces act within the altered deflection range to urge the organ from the intermediate shape towards the desired shape.
- 22. A method as in claim 21, wherein altering the elastic deflection range comprises applying thermal energy to the harness.
- 23. A method as in claim 21, wherein the harness exhibits transformational elasticity.
- 24. An organ shaping device for exerting a force on an organ within a patient's body, comprising:
a bending member configured to be placed around at least a portion of the organ so that the organ urges the bending member into an expanded deformed shape relative to an at rest shape of the member, and the bending member exerts a bending force on the organ that tends to squeeze the organ, wherein the bending member comprises a material configured to increase in stiffness as the temperature of the material is increased within an operational range of temperatures.
- 25. An organ shaping device as in claim 24, wherein the material comprises an alloy of Nitinol configured to have an austenite start temperature less than about 37° C.
- 26. An organ shaping device as in claim 24. wherein the material comprises Nitinol having an austenite start temperature less than about 30° C.
- 27. An organ shaping device as in claim 26, wherein the Nitinol has an austenite finish temperature greater than about 37° C.
- 28. An organ shaping device as in claim 26, wherein the Nitinol has an austenite finish temperature less than about 37° C.
- 29. An organ shaping device as in claim 26, wherein the Nitinol has an austenite finish temperature less than about 30° C.
- 30. A method, comprising
providing a harness comprised of a shape memory material having an at rest shape; and placing the harness around an organ, said placing comprising expandingly deforming the harness from the at rest shape so that the harness fits around at least a portion of the organ and the harness applies a pressure onto the organ in resistance to the deformation; wherein the shape memory material is in a generally austenitic state when at a temperature of the organ.
- 31. A method as in claim 30, wherein the shape memory material comprises Nitinol having an austenite start temperature less than about 30° C.
- 32. A method as in claim 30, wherein the shape memory material is in a generally austenitic state throughout an operation range of temperatures of the harness.
RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Application No. 60/335,437, which was filed on Oct. 31, 2001, the entirety of which is hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
|
60335437 |
Oct 2001 |
US |