Nerve stimulation device for current steering
A nerve stimulation system including at least one nerve interface device is disclosed. The device includes a cuff portion having an assembled position in which the cuff portion forms at least part of a passageway for receiving a nerve along a longitudinal axis passing through the passageway; and first and second rings of electrodes mounted on the cuff portion, each ring of electrodes including a plurality of electrodes, and wherein each electrode in the first ring has a corresponding longitudinally-aligned electrode in the second ring so as to form a plurality of pairs of electrodes spaced apart from each other along the longitudinal axis. The system includes a stimulation device in communication with the pairs of electrodes to generate different electrical signals for the pairs of electrodes and a control system that causes the different signals to causes different physiological responses.
1. A nerve stimulation system comprising:
at least one nerve interface device comprising:
at least one cuff portion having an assembled position in which the at least one cuff portion forms at least part of a passageway for receiving a nerve along a longitudinal axis passing through the passageway, and
a first ring of electrodes and a second ring of electrodes mounted on the at least one cuff portion, each of the first ring of electrodes and the second ring of electrodes comprising a plurality of electrodes, and wherein each electrode in the first ring of electrodes has a corresponding longitudinally-aligned electrode in the second ring of electrodes so as to form a plurality of pairs of electrodes spaced apart from each other along the longitudinal axis,
wherein the plurality of pairs of electrodes includes at least a first pair of electrodes and a second pair of electrodes, the first pair of electrodes mounted on the at least one cuff portion at a different circumferential position than the second pair of electrodes;
a stimulation device in electrical communication with the first pair of electrodes and the second pair of electrodes and configured to generate a first electrical signal and a second electrical signal, the first electrical signal being different from the second electrical signal with respect to at least one signal parameter selected from a group consisting of frequency, current amplitude, pulse duration, waveform shape, charge amplitude, and pulse width; and
a control system configured to cause the stimulation device to deliver the first electrical signal to the first pair of electrodes for causing a first physiological response and to deliver the second electrical signal to the second pair of electrodes for causing a second physiological response that is different from the first physiological response.
2. The nerve stimulation system of claim 1 , wherein the plurality of pairs of electrodes comprise a first subset of pairs of electrodes and a second subset of pairs of electrode, wherein one or both of the electrodes in each pair of electrodes in the first subset of pairs of electrodes has a first geometry and wherein one or both of the electrodes in each pair of electrodes in the second subset of pairs of electrodes has a second geometry different from the first geometry, further wherein the first geometry comprises a length of between 0.1 mm and 2 mm, and wherein the second geometry comprises a length of between 1 mm and 5 mm, and further wherein the length of the first geometry and the length of the second geometry extend in a direction parallel to the longitudinal axis.
3. The nerve stimulation system of claim 2 , wherein the control system is configured to cause the stimulation device to deliver the first electrical signal to a pair of electrodes in the first subset of pairs of electrodes for stimulating a myelinated fiber, and further wherein the control system is configured to cause the stimulation device to deliver the second electrical signal to a pair of electrodes in the second subset of pairs of electrodes for stimulating an unmyelinated fiber.