Neurostimulator
Methods and devices of stimulating nerves are disclosed. In one embodiment adapted for stimulating excitable tissue, the invention includes drive circuitry ( 12 ), an acoustic transducer ( 14 ) and a pair of electrodes ( 28 ).
1. A receiver-stimulator device comprising:
a plurality of acoustic transducers, each comprising an implanted piezoelectric chip, that receive acoustic energy from an acoustic source and generate acoustic energy to generate an electric current;
a demodulator connected to each transducer receive the electrical signals and rectify the signals to a biologically stimulating electrical output; and at least two tissue contacting stimulation electrodes coupled to each demodulator which receive the stimulating electrical output and deliver said output to tissue; and
wherein the contributions of the plurality of acoustic transducers are placed in series such the electric output of each transducer is additive.
2. The device of claim 1 , wherein the plurality of transducers are positioned such that a resulting transducer array is substantially symmetrical and annular.
3. The device of claim 1 , wherein the electrodes are nerve cuff electrodes disposed around a nerve.
4. The device of claim 3 , wherein the nerve cuff electrodes stimulate a specific nerve fiber.
5. The device of claim 3 , wherein the transducers are ultrasound transducers of sub-millimeter size disposed around the circumference of the nerve cuff and each ultrasound transducer is electrically addressed.