Claims
- 1. A prosthetic foot device with variable stiffness response, the device comprising:
a) first and second foot members, configured to be coupled to an amputee, at least one of the first and second foot members being configured to be coupled to an amputee, and at least one of the first and second foot members being configured to contact ground during use; and b) a variable energy transfer medium, disposed between the first and second members, to transfer at least some energy between the first and second members during use; and c) the energy transfer medium including a variable viscosity fluid such that the variable viscosity fluid, and thus the energy transfer medium, variably transfers energy between the first and second members to vary stiffness of the prosthetic foot device.
- 2. A device in accordance with claim 1, wherein at least one of the first and second members includes a resilient member capable of storing energy during deflection.
- 3. A device in accordance with claim 1, wherein the variable viscosity fluid includes a shear stiffening material that increases in viscosity with an increase in a load factor applied to the shear stiffening material.
- 4. A device in accordance with claim 3, wherein the load factor includes at least one load factor selected from the group consisting of: a load, a load rate, a strain, a strain rate, a pressure, or a deflection.
- 5. A device in accordance with claim 1, wherein the variable viscosity fluid includes at least one fluid selected from the group consisting of: a magneto rheologic fluid responsive to a magnetic field, or an electro rheologic fluid responsive to an electric field.
- 6. A device in accordance with claim 5, further comprising:
a transducer, coupled to the prosthetic foot device, to sense a load factor; a power source, coupled to the transducer; control electronics, coupled to the transducer and the variable viscosity fluid, to apply an electric or magnetic field in response to the load factor sensed by the transducer.
- 7. A device in accordance with claim 5, further comprising:
an orifice through which the variable viscosity fluid flows during use.
- 8. A device in accordance with claim 1, wherein:
the first member includes an upper member having an attachment section configured to be coupled to a socket, and extending downwardly therefrom; and the second member includes a lower foot member having a heel section disposed at a natural location of a heel of a user, and a toe section disposed at a natural location of a toe of the user.
- 9. A device in accordance with claim 1, wherein:
the first member includes an upper forefoot member having an attachment section configured to be coupled to a socket, and extending downwardly therefrom; and the second member includes a lower heel member having a heel section disposed at a natural location of a heel of a user, and an attachment section attached to the upper forefoot member.
- 10. A device in accordance with claim 1, wherein:
the first member includes:
an upper forefoot member having an attachment section configured to be coupled to a socket, and extending downwardly therefrom; and a lower heel member having a heel section disposed at a natural location of a heel of a user, and an attachment section attached to the upper forefoot member; and the second member includes a forefoot reinforcement member, disposed above the upper forefoot member.
- 11. A device in accordance with claim 1, wherein:
the first member includes:
an upper forefoot member having an attachment section configured to be coupled to a socket, and extending downwardly therefrom; and a lower heel member having a heel section disposed at a natural location of a heel of a user, and an attachment section attached to the upper forefoot member; and the second member includes a heel reinforcement member, disposed above the lower heel member.
- 12. A device in accordance with claim 1, wherein:
the first member includes an adaptor, configured to be coupled to a socket; and the second member includes at least an upper member having an attachment section attached to the adaptor and configured to be coupled to the socket by the adaptor, and extending downwardly therefrom.
- 13. A prosthetic foot device with variable stiffness response, the device comprising:
a) first and second foot members, configured to be coupled to an amputee, at least one of the first and second foot members being deflectable in response to a load and resilient to store energy when deflected; and b) a variable viscosity fluid, disposed between the first and second foot members, to variably transfer energy between the first and second foot members during use, the variable viscosity fluid being capable of increasing viscosity with an increase in a load factor to transfer more load between the first and second foot members during the increase in the load factor, and being capable of decreasing viscosity during a decrease in the load factor to transfer less load between the first and second foot members during the decrease in the load factor.
- 14. A device in accordance with claim 13, wherein the load factor includes at least one load factor selected from the group consisting of: a load, a load rate, a strain, a strain rate, a pressure, or a deflection.
- 15. A device in accordance with claim 13, wherein the variable viscosity fluid includes a shear stiffening material that increases in viscosity with an increase in the load factor applied to the shear stiffening material.
- 16. A device in accordance with claim 13, wherein the variable viscosity fluid includes at least one fluid selected from the group consisting of: a magneto rheologic fluid responsive to a magnetic field, or an electro rheologic fluid responsive to an electric field
- 17. A device in accordance with claim 16, further comprising:
a transducer, coupled to the prosthetic foot device, to sense a load factor; a power source, coupled to the transducer; control electronics, coupled to the transducer and the variable viscosity fluid, to apply an electric or magnetic field in response to the load factor sensed by the transducer.
- 18. A device in accordance with claim 13, wherein:
the first foot member includes an upper member having an attachment section configured to be coupled to a socket, and extending downwardly therefrom; and the second foot member includes a lower foot member having a heel section disposed at a natural location of a heel of a user, and a toe section disposed at a natural location of a toe of the user.
- 19. A device in accordance with claim 13, wherein:
the first foot member includes an upper forefoot member having an attachment section configured to be coupled to a socket, and extending downwardly therefrom; and the second foot member includes a lower heel member having a heel section disposed at a natural location of a heel of a user, and an attachment section attached to the upper forefoot member.
- 20. A device in accordance with claim 13, wherein:
the first foot member includes:
an upper forefoot member having an attachment section configured to be coupled to a socket, and extending downwardly therefrom; and a lower heel member having a heel section disposed at a natural location of a heel of a user, and an attachment section attached to the upper forefoot member; and the second foot member includes a forefoot reinforcement member, disposed above the upper forefoot member.
- 21. A device in accordance with claim 13, wherein:
the first foot member includes:
an upper forefoot member having an attachment section configured to be coupled to a socket, and extending downwardly therefrom; and a lower heel member having a heel section disposed at a natural location of a heel of a user, and an attachment section attached to the upper forefoot member; and the second foot member includes a heel reinforcement member, disposed above the lower heel member.
- 22. A device in accordance with claim 13, wherein:
the first foot member includes an adaptor, configured to be coupled to a socket; and the second foot member includes at least a member having an attachment section attached to the adaptor and configured to be coupled to the socket by the adaptor, and extending downwardly therefrom.
- 23. A method for varying a stiffness response of a prosthetic foot device, comprising the steps of:
a) coupling the prosthetic foot device to an amputee, the prosthetic foot device including i) first and second foot members, at least one of the first and second foot members being coupled to the amputee, and at least one of the first and second foot members contacting ground during use, and ii) a variable viscosity fluid disposed between the first and second foot members, the first and second foot members being configured to selectively transfer load between the first and second foot members; and b) varying the viscosity of the fluid in response to a load factor so that the load transferred between the first and second foot members varies, including increasing viscosity during an increase in the load factor to transfer more load between the first and second foot members during the increase in load factor, and decreasing viscosity during a decrease in load factor to transfer less load between the first and second foot members during the decrease in the load factor.
Parent Case Info
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 09/607,494, filed Jun. 30, 2000.
Continuations (1)
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Number |
Date |
Country |
Parent |
10137933 |
May 2002 |
US |
Child |
10738645 |
Dec 2003 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09607494 |
Jun 2000 |
US |
Child |
10137933 |
May 2002 |
US |