EP3801743B1

Methods and apparatus for providing sub-muscular control

Abstract

This record has no abstract on file.

EP3801743B1, drawing sheet 1
Sheet 1 of 11

Term

12.6 yearsleft in the term

Expires 19 April 2039.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

8 claims: 2 independent, 6 dependent

  1. 1
    A computerized system (200), comprising:a plurality of neuromuscular sensors (210, 504) configured to record a plurality of neuromuscular signals from a user (506), wherein the plurality of neuromuscular sensors are arranged on one or more wearable devices (502);and at least one computer processor (212) programmed to: derive, from the plurality of neuromuscular signals, information for a first sub-muscular control channel of a plurality of sub-muscular control channels and information for a second sub-muscular control channel of the plurality of sub-muscular control channels;wherein each of the plurality of sub-muscular control channels is configured to process information associated with activation of a corresponding sub-muscular structure, each sub-muscular structure comprising a motor unit, said motor unit comprising a spinal motor neuron and associated muscle fibers innervated by said spinal motor neuron;generate, based on the derived information for the first sub-muscular control channel, a first control signal;generate, based on the derived information for the second sub-muscular control channel, a second control signal;and provide the first and second control signals to a control interface to control an operation of a device;wherein the first sub-muscular control channel is configured to process information arising from activation of a first sub-muscular structure;and wherein the second sub-muscular control channel is configured to process information arising from activation of a second sub-muscular structure;characterized in that the first sub-muscular structure and the second sub-muscular structure are selected automatically by the at least one computer processor (212) of the computerized system (200) in a preceding selection process, based on a plurality of neuromuscular signals recorded from the plurality of neuromuscular sensors (210, 504) as the user (506) performs one or more movements or gestures during the selection process, using criteria that maximize or increase distance between activation characteristics or signatures of the activated first and second sub-muscular structures.
  2. 8
    A computer-implemented method of controlling a device, the method comprising:receiving a plurality of neuromuscular signals recorded from a plurality of neuromuscular sensors (210, 504) arranged on one or more wearable devices (502) worn by a user (506);deriving, from the plurality of neuromuscular signals, information for a first sub-muscular control channel of a plurality of sub-muscular control channels, and information for a second sub-muscular control channel of the plurality of sub-muscular control channels;wherein each of the plurality of sub-muscular control channels is configured to process information associated with activation of a corresponding sub-muscular structure, each sub-muscular structure comprising a motor unit, said motor unit comprising a spinal motor neuron and associated muscle fibers innervated by said spinal motor neuron;generating a first control signal based on the derived information for the first sub-muscular control channel;generating a second control signal based on the derived information for the second sub-muscular control channel;and providing the first and second control signals to a control interface to control an operation of a device;wherein the first sub-muscular control channel is configured to process information arising from activation of a first sub-muscular structure;and wherein the second sub-muscular control channel is configured to process information arising from activation of a second sub-muscular structure;characterized by automatically selecting the first sub-muscular structure and the second sub-muscular structure in a preceding selection process, based on a plurality of neuromuscular signals recorded from the plurality of neuromuscular sensors (210, 504) as the user (506) performs one or more movements or gestures during the selection process, using criteria that maximize or increase distance between activation characteristics or signatures of the activated first and second sub-muscular structures.