Visual display device for a force and/or motion measurement system
US-D755067-S · May 3, 2016 · US
US9622686B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-9622686-B1 |
| Application number | US-201615095040-A |
| Country | US |
| Kind code | B1 |
| Filing date | Apr 9, 2016 |
| Priority date | Apr 9, 2016 |
| Publication date | Apr 18, 2017 |
| Grant date | Apr 18, 2017 |
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A gait perturbation system and a method for testing and/or training using the gait perturbation system is disclosed herein. The gait perturbation system includes a gait perturbation device and a data processing device. The gait perturbation device includes one or more displaceable components configured to be displaced at a plurality of different speeds, and having one or more respective surfaces for receiving one or more respective limbs of a person; and one or more speed adjustment mechanisms coupled to the one or more displaceable components to adjust the speed set point at which the one or more displaceable components are displaced. The data processing device is configured to generate a signal for introducing a perturbation to the one or more displaceable components, and to control the speed set point of the one or more displaceable components such that the one or more displaceable components perturb a gait of the person.
Opening claim text (preview).
The invention claimed is: 1. A gait perturbation system comprising, in combination: a gait perturbation device configured to receive a person thereon, the gait perturbation device including: one or more displaceable components configured to be displaced at a plurality of different speeds, the one or more displaceable components having one or more respective surfaces for receiving one or more respective limbs of the person; and one or more speed adjustment mechanisms coupled to the one or more displaceable components, the one or more speed adjustment mechanisms configured to adjust the speed set point at which the one or more displaceable components are displaced, the one or more speed adjustment mechanisms being primary means for displacing the one or more displaceable components; and a data processing device operatively coupled to the one or more speed adjustment mechanisms, the data processing device configured to generate a first base velocity signal for controlling the speed of the one or more displaceable components during a time period beginning with a starting time and concluding with an ending time and generate a second velocity signal for introducing a perturbation to the one or more displaceable components during the time period beginning with the starting time and concluding with the ending time, the second velocity signal generated by the data processing device being in the form of a stochastic signal, the data processing device further configured to combine the first base velocity signal with the second stochastic velocity signal to form a composite velocity signal during the time period beginning with the starting time and concluding with the ending time, and to control the speed set point of the one or more displaceable components using the composite velocity signal such that the one or more displaceable components perturb a gait of the person. 2. The gait perturbation system according to claim 1 , wherein the gait perturbation device comprises a treadmill, and the one or more displaceable components comprise one or more belts of the treadmill; and wherein the one or more speed adjustment mechanisms are configured to adjust the speed set point at which the one or more belts of the treadmill are rotated. 3. The gait perturbation system according to claim 2 , wherein the treadmill comprises an instrumented treadmill, the instrumented treadmill including at least one force transducer, the at least one force transducer configured to sense one or more measured quantities and output one or more signals that are representative of one or more loads being applied to the one or more respective surfaces of the one or more belts of the treadmill by the person. 4. The gait perturbation system according to claim 2 , wherein the one or more speed adjustment mechanisms comprise one or more servo controllers configured to adjust the speed set point at which the one or more belts of the treadmill are rotated. 5. The gait perturbation system according to claim 1 , wherein the second stochastic velocity signal comprises one of: (i) a uniform stochastic signal and (ii) a normal stochastic signal. 6. The gait perturbation system according to claim 1 , further comprising at least one input device, the at least one input device configured to enable a user to manually input at least one of: (i) an amplitude of the second stochastic velocity signal, (ii) a frequency of the second stochastic velocity signal, and (iii) a signal type of the second stochastic velocity signal, the signal type of the second stochastic velocity signal being selected from the group consisting of a uniform stochastic signal and a random stochastic signal. 7. The gait perturbation system according to claim 6 , wherein the data processing device is configured to generate the second stochastic velocity signal based upon at least one of: (i) the amplitude of the second stochastic velocity signal input by the user, (ii) the frequency of the second stochastic velocity signal input by the user, and (iii) the signal type of the second stochastic velocity signal input by the user. 8. The gait perturbation system according to claim 7 , wherein the data processing device is configured to generate the second stochastic velocity signal based upon the amplitude of the second stochastic velocity signal input by the user, and at least one of: (i) the frequency of the second stochastic velocity signal input by the user, and (ii) the signal type of the second stochastic velocity signal input by the user. 9. The gait perturbation system according to claim 8 , wherein the second stochastic velocity signal comprises a uniform stochastic signal, the data processing device configured to compute the uniform stochastic signal as a function of a randomly generated uniform signal and the amplitude input by the user. 10. The gait perturbation system according to claim 8 , wherein the second stochastic velocity signal comprises a normal stochastic signal, the data processing device configured to compute the normal stochastic signal as a function of a normalized randomly generated uniform signal and the amplitude input by the user. 11. The gait perturbation system according to claim 1 , further comprising secondary means for displacing the one or more displaceable components of the gait perturbation device in a direction different from a primary direction of displacement of the one or more displaceable components, the secondary means for displacing the one or more displaceable components of the gait perturbation device being operatively coupled to the data processing device; and wherein the data processing device is configured to generate a translation perturbation signal and to output the translation perturbation signal to the secondary means for displacing the one or more displaceable components of the gait perturbation device so that the one or more displaceable components of the gait perturbation device are displaced in a direction different from a primary direction of displacement of the one or more displaceable components. 12. A gait perturbation system comprising, in combination: a gait perturbation device configured to receive a person thereon, the gait perturbation device including: one or more displaceable components configured to be displaced at a plurality of different speeds, the one or more displaceable components having one or more respective surfaces for receiving one or more respective limbs of the person; and one or more speed adjustment mechanisms coupled to the one or more displaceable components, the one or more speed adjustment mechanisms configured to adjust the speed set point at which the one or more displaceable components are displaced; and a data processing device operatively coupled to the one or more speed adjustment mechanisms, the data processing device configured to generate a stochastic signal for introducing a perturbation to the one or more displaceable components, the stochastic signal oscillating above and below a base velocity signal, and the data processing device further configured to control the speed set point of the one or more displaceable components using the stochastic signal such that the one or more displaceable components perturb a gait of the person. 13. The gait perturbation system according to claim 12 , wherein the gait perturbation device comprises a treadmill, and the one or more displaceable components comprise one or more belts of the treadmill; and wherein the one or more speed adjustment mechanisms are configured to adjust the speed set point at which the one or more belts of the treadmill are rotated. 14. The gait perturbation system according to
Gait analysis · CPC title
Inertial sensors, e.g. accelerometers, gyroscopes, tilt switches · CPC title
Sensors arranged on the body of the user · CPC title
Electric or electronic controls for exercising apparatus of groups A63B21/00 - A63B23/00, e.g. controlling load · CPC title
Force · CPC title
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