Involuntary response stimulator and therapy
11406823 · 2022-08-09
Assignee
Inventors
Cpc classification
A61B5/4082
HUMAN NECESSITIES
A61N1/36014
HUMAN NECESSITIES
International classification
Abstract
An apparatus for simulating hand tremors caused by Essential Tremor and Parkinson's disease which may also be used as part of a therapeutic program in association with surgically implanted stem cells introduced into a patient's substantia nigra.
Claims
1. A method of providing a physical therapy session to a patient who has had undifferentiated or differentiated stem cells surgically introduced into a patient's substantia nigra, said method comprising: providing a therapeutic apparatus, said therapeutic apparatus comprising: a waveform generator operable to output a waveform; an electric driver connected to said waveform generator, wherein said electric driver is operable to receive said waveform, and wherein said electric driver outputs a drive signal, wherein said drive signal varies in response to changes in said waveform; an actuator comprising a connection point, wherein said actuator is connected to said electric driver, wherein said actuator is operable to receive said drive signal, and wherein said actuator is operable to displace said connection point along an axis in response to said drive signal; a cuff configured to encircle a portion of a patient's hand or a patient's arm, wherein operation of said actuator displaces said cuff along said axis; and a connecting mechanism attached to said connection point and to said cuff, wherein a scan of said patient monitors a patient's dopamine level when said patient's hand or said patient's arm is placed inside of said cuff and said apparatus in in operation, wherein an output of said patient's dopamine level is input to a control system, wherein said control system is connected to said waveform generator, and wherein said control system is operable to modify an amplitude and a frequency of said waveform to maximize said dopamine level of said patient during use of said apparatus; securing a wrist or arm of said patient into said cuff; activating said therapeutic apparatus such that said cuff exerts a reciprocating opposing force to said patient's hand; instructing said patient to attempt a repetitive hand-eye coordinated task with said hand secured in said cuff; monitoring said patient's dopamine levels using said scan while said patient attempts said repetitive hand-eye coordinated task; and modifying said waveform using said control system in response to said output from the scan to maximize said patient's dopamine levels during said physical therapy session.
2. The method of claim 1, wherein said therapeutic apparatus further comprises: a second electric driver connected to said waveform generator, wherein said second electric driver is operable to receive said waveform, and wherein said second electric driver outputs a second drive signal, wherein said second drive signal varies in response to changes in said waveform; a second actuator driver, wherein said second actuator is operable to receive said second drive signal, and wherein comprising a second connection point, wherein said second actuator is connected to said second electric said second actuator is operable to displace said second connection point along said axis in response to said second drive signal; and a second connecting mechanism attached to said second connection point and to said cuff, wherein operation of said second actuator displaces said cuff along said axis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The foregoing and other objects, features, and advantages of the invention are apparent from the following detailed description taken in conjunction with the accompanying drawings in which like parts are given like reference numerals and, wherein:
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(9) The images in the drawings are simplified for illustrative purposes and are not depicted to scale. Within the descriptions of the figures, similar elements are provided similar names and reference numerals as those of the previous figure(s). The specific numerals assigned to the elements are provided solely to aid in the description and are not meant to imply any limitations (structural or functional) on the invention.
(10) The appended drawings illustrate exemplary configurations of the invention and, as such, should not be considered as limiting the scope of the invention that may admit to other equally effective configurations. It is contemplated that features of one configuration may be beneficially incorporated in other configurations without further recitation.
DETAILED DESCRIPTION
(11) The embodiments of the disclosure will be best understood by reference to the drawings, wherein like parts are designated by like numerals throughout. It will be readily understood that the components, as generally described and illustrated in the Figures herein, could be arranged and designed in a wide variety of different configurations or be entirely separate. Thus, the following more detailed description of the embodiments of the system and method of the disclosure, as represented in the Figures is not intended to limit the scope of the disclosure, as claimed, but is merely representative of possible embodiments of the disclosure.
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(13) Connectors 152 and 153 are located on, and attached to, opposite sides of cuff 150. Connector 152 is connected to actuator 110 at connection point 158 by a pair of semi-rigid connecting mechanisms 140. Connector 153 is likewise connected to actuator 120 at connection point 159 by a similar pair of semi-rigid connecting mechanisms 140. In an embodiment, semi-rigid connecting mechanisms 140 comprise a metallic chain link 141 encased in elastic tube 142 (where elastic tube 142 can be made of plastic, rubber, or similar material). In alternative embodiments, semi-rigid connecting mechanisms 140 may comprise metallic link chain, partially elastic plastic/rubber tube, sliding rail, or similar connecting mechanisms.
(14) In an embodiment, a pair of drivers 170 and 175 apply power to actuators 110 and 120. In an embodiment, drivers 170 and 175 may be opto-isolators, transistors protected by a fly back diode, or relays. Actuators 110 and 120 are driven in opposition (for example by a “push-pull” circuit) to cause motion in cuff 150. Drivers 170 and 175 are connected to a waveform generator 185 which creates a repetitive (either cyclic or pseudo-random) signal (see
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(16) The opto-isolated circuit shown in
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(18) During an exemplary therapy session, the patient 410 is given a simple repetitive task requiring fine motor skill and hand eye coordination such as writing their name. In an embodiment, the signal generator 185 generates a pattern which is pseudo randomized with the goal of maximizing the release of dopamine (see, e.g., waveform C on
(19) It is speculated that a further improvement could include a real-time scan (e.g., Dopascan or DaTscan) used to estimate dopamine release to form a feedback mechanism to adjust the controllable waveform generator to maximize the release of Dopamine.
(20) A further improvement to this proposed therapy would include the step of surgical implantation of stem cells in the substantia nigra. The patient would then be given therapy from the device 100 to help insure that those cells differentiate and successfully wire into local nigra circuitry. It is necessary for the survival of a newly inserted neuron that it become connected and active in local neural circuitry. It is speculated that the therapy would help insure those local connections would form and fire in synchronization, thereby helping the new dopamine producing neurons survive.
(21) It is speculated that a further improvement could include a real-time scan to estimate neural firing activity in the substantia nigra, where the results of said scan form a feedback mechanism to adjust the controllable waveform generator to maximize the firing of those neurons to help insure that the newly formed neurons integrate into local dopamine releasing circuitry.
(22) In addition, Parkinson's disease has numerous symptoms including tremors in the hand, while the Essential Tremor is a disease that is mainly associated with the tremors that it causes. There are many differences between the two diseases. For instance, Essential Tremor is mainly a genetic disorder, while the cause of Parkinson's is unknown. Because of the differences in symptoms of said diseases, the treatments for these diseases are very different. The disclosed invention also simulates the two different types of handwritings that can be found in Parkinson's patients and Essential Tremor patients. This is accomplished by setting the controllable waveform to either 9-10 Hz or 5-6 Hz, which cause the machine to simulate physiological tremor and PD tremor, respectively.
(23) These two modes can be changed so that when a person attempts to write their name on a piece of paper, the difference between the two handwritings is readily distinguishable between Parkinson's and Essential Tremor. Being able to recognize the specific qualities of a person's tremor through their handwriting could help medical practitioners to more readily identify and diagnose those different neurological diseases.
(24) Further, the person learning about the diseases will be able to experience firsthand how it would feel to have one side effect of this terrible disease. In focus group testing, those who experiencing simulated tremors caused by the machine, reported a 78% increased connection (empathy) with a Parkinson's sufferer.
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