Claims
- 1. An apparatus for providing a wearer with information indicative of spatial orientation of a body part of said wearer, said apparatus comprising:
a motion sensing system to be worn by a wearer, said motion sensing system generating a motion signal indicative of motion experienced by said body part of said wearer; a signal processor in communication with said motion sensing system for generating an estimate of said spatial orientation of said body part on the basis of said motion signal; an encoder in communication with said signal processor, said encoder configured to generate said feedback signal on the basis of said estimate of said spatial orientation; and a stimulator responsive to said feedback signal from said encoder, said stimulator configured to provide a signal to a nervous system of said wearer in response to said feedback signal;
- 2. The apparatus of claim 1, wherein said stimulator comprises a tactor set in communication with said encoder, said tactor set including a tactor adapted to be worn against skin of said wearer and to vibrate, in response to a control signal from said encoder, in a pattern indicative of said spatial orientation.
- 3. The apparatus of claim 2, wherein said encoder is configured to pulse said tactor at a pulse repetition frequency indicative of said spatial orientation.
- 4. The apparatus of claim 2, wherein said encoder is configured to excite a selected tactor from said tactor set, said selected tactor being selected on the basis of said spatial orientation.
- 5. The apparatus of claim 2, wherein said encoder is configured to sequentially excite a plurality of subsets of said tactor set according to an excitation sequence, said plurality of subsets and said excitation sequence being selected on the basis of said spatial orientation.
- 6. The apparatus of claim 1, wherein said stimulator comprises an electrode in communication with said encoder, said electrode being adapted to be inserted proximate to a nerve in said wearer.
- 7. The apparatus of claim 6, wherein said encoder is configured to apply a sequence of pulses to said electrode at a pulse repetition frequency indicative of said spatial orientation.
- 8. The apparatus of claim 6, wherein said encoder is configured to energize said electrode with an energizing amplitude selected on the basis of said spatial orientation.
- 9. The apparatus of claim 6, wherein said encoder is configured to modulate an amplitude of a signal applied to said electrode on the basis of said spatial orientation.
- 10. The apparatus of claim 6, wherein said encoder is configured to modulate a frequency of a signal applied to said electrode on the basis of said spatial orientation.
- 11. The apparatus of claim 6, wherein said encoder is configured to introduce noise into said electrode, said noise being selected to enhance sensitivity of said nerve to a signal indicative of spatial orientation.
- 12. The apparatus of claim 6, further comprising a measurement electrode in communication with said for detecting an endogenous signal in said nerve and said encoder generates a feedback signal on the basis of said endogenous signal and said estimate of said spatial orientation.
- 13. The apparatus of claim 1, wherein said stimulator comprises an electrode in communication with said encoder, said electrode being adapted to be placed to provide galvanic stimulation of a nerve in said wearer.
- 14. The apparatus of claim 1, wherein said stimulator comprises an acoustic transducer for providing an acoustic signal to the wearer, said acoustic signal providing information indicative of spatial orientation.
- 15. The apparatus of claim 1, wherein said stimulator comprises a visual display unit for providing an visual signal to the wearer, said visual signal providing information indicative of spatial orientation.
- 16. The apparatus of claim 1, further comprising:
an additional motion sensing system to be worn on an additional body part of said wearer, said additional motion sensing system generating an additional motion signal indicative of acceleration experienced by said additional body part of said wearer; and an additional signal processor in communication with said additional motion sensing system and said encoder, said additional signal processor configured to generate an estimate of said spatial orientation of said additional body part on the basis of said additional motion signal and to provide said estimate to said encoder.
- 17. The apparatus of claim 1, wherein said motion sensing system comprises at least one rotation sensor and said motion signal includes information indicative of rotational motion experienced by said wearer.
- 18. The apparatus of claim 17, wherein said rotation sensor comprises a micro-mechanical device having a proof mass that undergoes a periodic motion susceptible to disturbance by a rotational motion.
- 19. The apparatus of claim 18, wherein said micro-mechanical device includes a tuning fork having a tine integrated with said proof mass, and a capacitor coupled to said proof mass, said capacitor having a capacitance that depends on a position of said proof mass relative to said capacitor.
- 20. The apparatus of claim 1, wherein said motion sensing system comprises at least one translation sensor and said motion signal includes information indicative of linear acceleration experienced by said wearer.
- 21. The apparatus of claim 20, wherein said translation sensor comprises a micro-mechanical device having a proof mass, said proof mass having a position susceptible to displacement from an equilibrium position by a linear acceleration.
- 22. The apparatus of claim 21, wherein said micro-mechanical device includes a cantilevered beam having a proof mass integrated onto a distal end, said proof mass being coupled to a capacitor, said capacitor having a capacitance that depends on a position of said proof mass relative to said capacitor.
- 23. The apparatus of claim 1, wherein said signal processing system comprises a low-pass filter to filter a first inertial guidance signal and a high-pass filter to filter a second inertial guidance signal, said low-pass filter and said high-pass filter having complementary filter transfer functions.
- 24. The apparatus of claim 1, wherein said signal processing system is configured to distinguish linear acceleration due to gravity from linear acceleration resulting in translation.
- 25. The apparatus of claim 24, wherein said signal processing system is configured to determine a current direction of a gravity vector on the basis of an information provided by said motion sensing system and to remove the effect of said gravity vector from a translation sensor output.
- 26. The apparatus of claim 1, further comprising:
a receiver to detect an additional signal, said receiver being in communication with said encoder.
- 27. The apparatus of claim 26 wherein said receiver comprises a GPS receiver.
- 28. The apparatus of claim 26 wherein said receiver is adapted to detect a signal indicative of a quantity selected from a group consisiting of a joint angle measurement, a tactile pressure, a location of said wearer, and a location of a body part of said wearer.
- 29. The apparatus of claim 26 wherein said receiver is a wireless receiver.
- 30. A method for providing a wearer with information indicative of spatial orientation of a body part of said wearer, said method comprising:
providing a motion sensing system to be worn by a wearer, said motion sensing system generating a motion signal indicative of motion experienced by said body part of said wearer; generating an estimate of said spatial orientation of said body part on the basis of said motion signal; generating a feedback signal on the basis of said estimate of said spatial orientation; and energizing a stimulator responsive to said feedback signal from said encoder, said stimulator configured to provide a signal to said nervous system in response to said feedback signal.
- 31. A balance prosthesis comprising:
a motion sensing system to be worn by a wearer, said motion sensing system generating a signal indicative of spatial orientation of said wearer; and a stimulator worn by said wearer, said stimulator configured to communicate to said wearer information indicative of said spatial orientation.
RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Application 60/183008, filed on Feb. 16, 2000, the contents of which are herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60183008 |
Feb 2000 |
US |