IP Library Granted Patent US 9,381,350
Granted Patent B2
US 9,381,350 · App. 14/665,220 · Granted Jul 5, 2016

Method and system for treatment of mobility dysfunction

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Quick Facts
Patent No.
US 9,381,350
App. No.
14/665,220
Granted
Jul 5, 2016
Kind
B2
Abstract

Effective systems and methods for improving neural communication impairment of a vertebrate being and affecting motor activity of a peripheral body part including a first signal providing component configured to provide pulsed peripheral stimulation signals at the peripheral body part, a second signal providing component configured to provide a pulsed motor cortex stimulation signal to a motor cortex area, a substantially DC signal providing component configured to provide direct current spinal stimulation signal at a neural spinal junction and a controller component configured to control timing of the pulsed peripheral stimulation signals and the pulsed motor cortex stimulation signal.

Claims (9)

1. In a system for stimulating a peripheral body part associated with a neutral pathway of a vertebrate being, the system including a motor stimulator component configured to induce a pulsed motor stimulation signal on a neural pathway, an apparatus comprising:

a peripheral signal providing component configured to provide pulsed peripheral stimulation signals at a peripheral body part for inducing pulsed peripheral signals on the neural pathway;

a DC signal providing component configured to provide a constant-level direct current spinal stimulation signal to a neural spinal junction on the neural pathway; and

a synchronizer having an I/O component for communication with the motor stimulator component, wherein the synchronizer is configured to provide trigger signals to the motor stimulator component and to the peripheral signal providing component, and is configured to provide the constant-level direct current spinal stimulation signal to the neural spinal junction, and is configured to enable the induced pulsed peripheral stimulation signals and the induced pulsed motor stimulation signal to arrive simultaneously at the neural spinal junction while the constant-level direct current spinal stimulation signal is present at the neural spinal junction.

2. The apparatus of claim 1 wherein the synchronizer includes a controller component configured to control timing of the pulsed peripheral stimulation signals, the pulsed motor stimulation signal, and the constant-level direct current spinal stimulation signal.

3. The apparatus of claim 2 wherein timing of the pulsed peripheral stimulation signals and the pulsed motor stimulation signal are selected such that an induced backward motor signal from the peripheral body part and an induced pulsed motor signal from the motor cortex area are substantially simultaneously present at the neural spinal junction when the neural spinal junction is being stimulated by the direct current spinal stimulation signal.

4. The apparatus of claim 1 wherein the DC signal providing component is configured to provide a constant-level cathodal direct current spinal stimulation through an electrode.

5. The apparatus of claim 1 wherein at least one of the peripheral signal providing component, the motor stimulator component and the DC signal providing component is a magnetic field producing component.

6. The apparatus of claim 4 wherein the motor stimulator component is a magnetic field producing component configured to stimulate a motor cortex.