EP2736592B1

Remote control of power or polarity selection for a neural stimulator

Abstract

This record has no abstract on file.

EP2736592B1, drawing sheet 1
Sheet 1 of 22

Term

5.8 yearsleft in the term

Expires 30 July 2032.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

17 claims: 2 independent, 15 dependent

  1. 1
    An implantable passive neural stimulator (114) comprising:- one or more electrodes (254) configured to apply one or more electrical pulses to excitable tissue;- at least one antenna (238), wherein the antenna is configured to: ∘ receive, from a separate antenna (110) through electrical radiative coupling through an electric field, one or more input signals containing polarity assignment information and electrical energy, the separate antenna being physically separate from the implantable neural stimulator and the polarity assignment information designating polarities for the electrodes;and - one or more circuits (250) connected to the at least one antenna and configured to: ∘ control an electrode interface (252) such that the electrodes have the polarities designated by the polarity assignment information;∘ create one or more electrical pulses suitable for stimulation of excitable tissue using the electrical energy contained in the one or more input signals;∘ supply the one or more electrical pulses to the one or more electrodes through the electrode interface such that the one or more electrodes apply the one or more electrical pulses to excitable tissue according to the polarities designated by the polarity assignment information, wherein the at least one antenna is configured to transmit, to the separate antenna through electrical radiative coupling, one or more stimulus feedback signals, characterized in that : the one or more circuits are configured to generate a stimulus feedback signal, the stimulus feedback signal indicating parameters associated with the one or more electrical pulses applied to the excitable tissue by the one or more electrodes, the parameters include a current and voltage being delivered to the excitable tissue, the one or more circuits include a current sensor configured to sense an amount of current being delivered to the tissue and a voltage sensor configured to sense a voltage being delivered to the excitable tissue, and the current sensor and the voltage sensor are coupled to an analog controlled carrier modulator, the modulator being configured to communicate the sensed current and voltage to the separate antenna.
  2. 15
    A system comprising a radio-frequency (RF) pulse generator module (106) and a implantable passive neural stimulator (114), the pulse generator comprising:- an antenna module configured to: ∘ send one or more input signals to at least one antenna (238) in the implantable neural stimulator through electrical radiative coupling via an electric field, the one or more input signal containing electrical energy and polarity assignment information that designates polarity assignments of one or more electrodes in the implantable neural stimulator, the implantable neural stimulator being configured to: ▪ control an electrode interface (252) such that the electrodes have the polarities designated by the polarity assignment information, ▪ create one or more electrical pulses suitable for stimulation of neural tissue using the electrical energy contained in the one or more input signals, and ▪ supply the one or more electrical pulses to the one or more electrodes through the electrode interface such that the one or more electrodes apply the one or more electrical pulses to neural tissue with the polarities designated by the polarity assignment information, and ▪ receive one or more signals from the at least one antenna in the implantable neural stimulator through electrical radiative coupling;- one or more circuits (250) coupled to the antenna module and configured to: ∘ generate the one or more input signals and send the one or more input signals to the antenna module;∘ extract a stimulus feedback signal from one or more signals received by the antenna module, the stimulus feedback signal being sent by the implantable neural stimulator and indicating parameters of the one or more electrical pulses;and ∘ adjust parameters of the input signal based on the stimulus feedback signal, characterized in that : the parameters are parameters of the one or more electrical pulses applied to the neural tissue by the one or more electrodes, the parameters including a current and voltage being delivered to the neural tissue, the one or more circuits include a current sensor configured to sense an amount of current being delivered to the tissue and a voltage sensor configured to sense a voltage being delivered to the excitable tissue, and the current sensor and the voltage sensor are coupled to an analog controlled carrier modulator, the modulator being configured to communicate the sensed current and voltage to the separate antenna.