Spasticity reducing closed-loop force-feedback control for post-stroke gait training
A robotic module which can be attached to an exercise apparatus provides enhanced physical therapy for victims of stroke or other maladies or accidents by simulating normal or arbitrarily modified profiles of angular position of an extremity such as a foot in accordance with a position of that extremity along a locus of repetitive motion. A closed-loop control system which is included in the module provides regulation which reduces or avoids spastic responses often found in poststroke patients during gait rehabilitation.
1. Apparatus comprising in combination
a mechanism for moving an extremity of a limb along a substantially elliptical locus,
a sensor for determining locations of a portion of said mechanism along said substantially elliptical locus,
an actuator responsive to said sensor for guiding an angular position of said extremity that simulates a repetitive motion of said limb corresponding to respective positions of said extremity along said substantially elliptical locus whereby said angular position of said extremity and said position of said extremity along said elliptical locus are decoupled and said angular position freely established for each position on said substantially elliptical locus, and
a closed-loop control system which regulates an attenuation level of responsiveness of said actuator to said sensor in accordance with a change of force of said extremity against said portion of said mechanism.
2. The apparatus as recited in claim 1 , wherein said closed-loop control system modifies said angular position of said extremity as guided by said actuator.
3. The apparatus as recited in claim 1 , further comprising one or more force transducers for determining a force experienced by said mechanism from said extremity.
4. The apparatus as recited in claim 3 , wherein an output of said one or more force transducers serves as an input to said closed-loop control system.
5. The apparatus as recited in claim 1 wherein said angular position of said extremity and position of said extremity along said elliptical path are substantially matched in phase to a natural repetitive action of a human body.
6. The apparatus as recited in claim 1 wherein said angular position of said extremity and position of said extremity along said elliptical path are substantially matched in profile to a natural repetitive action of a human body.
7. A robotic module for attachment to an exercise apparatus, said module comprising
a sensor for determining locations of a extremity of a person along a substantially elliptical locus of repetitive motion of a limb,
an actuator responsive to said sensor for guiding a an angular position of said extremity that simulates a repetitive motion of said extremity corresponding to respective positions of said extremity along said substantially elliptical locus whereby said angular position of said extremity and said position of said extremity along said elliptical locus are decoupled and said angular position freely established for each position on said substantially elliptical locus, and
a closed-loop control system which regulates an attenuation level of responsiveness of said actuator to said sensor in accordance with a change of force of said extremity against said portion of said mechanism.
8. The robotic module as recited in claim 7 wherein said angular position of said extremity and position of said extremity along said elliptical path are substantially matched in profile to a natural repetitive action of a human body.
9. The robotic module as recited in claim 7 wherein said angular position of said extremity and position of said extremity along said elliptical path are substantially matched in phase to a natural repetitive action of a human body.
10. The robotic module as recited in claim 7 , wherein said closed-loop control system modifies said angular position of said extremity as guided by said actuator.
11. The robotic module as recited in claim 7 , further comprising one or more force transducers for determining a force experienced by said mechanism from said extremity.
12. The robotic module as recited in claim 11 , wherein an output of said one or more force transducers serves as an input to said closed-loop control system.
13. A method of providing physical therapy using an exercise apparatus, said method comprising steps of
guiding an extremity of a human body along a locus of substantially elliptical repetitive motion with said exercise apparatus, and
guiding angular position of said extremity in accordance with a position of said extremity along said locus of substantially elliptical repetitive motion such that relative motions of a limb and said extremity are correlated in phase or profile to simulate a natural repetitive action of said human body, wherein said guiding angular position step is regulated by a closed-loop control system.