EP0268366A2

Methods of and apparatus for generating low frequency electrical stimulus signals.

Abstract

A method of generating a low frequency electrical stimulus signal is arranged to provide an electrical stimulus to a biological or living body. Either current control or boltage control, or both current and voltage control is performed in accordance with second volume levels supplied from a sound source (16) to modulate the electrical stimulus signal. The frequency of the electrical stimulus signal is selected to be a low frequency, typically below about 60 Hz. Apparatus for applying the electrical stimulus to the biological body comprises a control section (30) and a current/voltage controlling section (40;50). In the control section (30), a sound volume level derived from a sound source (16) is sampled at a rate at which the biological body can sense it in substantially real time. The respective samples sound levels are converted into low frequencies and are output, together with predetermined control information. In the current/voltage controlling section (40;50), current and voltage stimulus signals are frequency-modulated separately based upon the respective frequencies. The control section (30) and the current/voltage controlling section (40;50) are included in a stimulus signal generating section (10).

EP0268366A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 2 October 2007, 19 years ago.

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40 claims: 9 independent, 31 dependent

  1. 1
    A method of generating a low frequency electrical stimulus signal, characterized in that, to generate the electrical stimulus signal to give electrical stimulus to a biological body, either current control or voltage control or both current and voltage control is performed in accordance with sound volume levels supplied from a sound source (16) to modulate said electrical stimulus signal, and said electrical stimulus signal is arranged to be at a low frequency.
  2. 5
    A method according to any one of the preceding claims, characterized in that said sound volume levels are samples at a predetermined rate at which the biological body senses them in substantially real time, the respective sound volume levels obtained by said sampling operation are converted into pulse number control values, and in accordance with said pulse number control values, pulse number modulation to the current or voltage is carried out.
  3. 8
    Low frequency electrical stimulus signal generating apparatus for applying an electrical stimulus to a biological body, the apparatus comprising:a control section (30) wherein a sound volume level derived from a sound source (16) is samples at a rate at which the biological body can sense it in substantially real time, the respective sampled sound levels are converted into frequencies corresponding to low frequencies and output, as well as predetermined control information;and a current and/or voltage controlling section (40,50) whererin current and/or voltage stimulus signals are frequency-modulated separately based upon said frequencies, said control section (30) and current and/or voltage controlling section (40,50) being included in a stimulus signal generating section (10).
  4. 16
    A method of generating a low frequency electrical stimulus signal for applying the signal to a biological body, characterized in that, in response to a waveform of sound information derived from a sound source (16), at least one of current control and voltage control is performed to rhythm-modulate said electrical stimulus signal, and said electrical stimulus signal is arranged to be a low frequency.
  5. 19
    Low frequency electrical stimulus signal generating apparatus comprising:an input section (20) for setting conditions and for adjusting the same;and a stimulus signal generating section (10), said stimulus signal genertaing section including: a waveform control section (80) for outputting a rhythm-modulated waveform signal by deriving low frequency sound information from a sound source (16);a current control section (40) for generating a current stimulus signal based upon the rhythm-modulated waveform signal;a voltage control section (50) for generating a voltage stimulus signal based upon the rhythm-modulated waveform signal;a control system selecting section (60) for outputting at least one of the current stimulus signal and the voltage stimulus signal as the electrical stimulus signal;and a control section (30) for controlling operation of the aforementioned sections (40,50,60,80) and selection based upon a signal derived from the input section (20).
  6. 23
    Low frequency electrical stimulus signal generating apparatus comprising a stimulus signal generating section (10) which includes:a control section (30) in which sound volume levels supplied from a sound source (16) are samples at a rate at which a biological body senses it in substantially real time, each of the sampled volume levels is converted into a corresponding amplitude control value and the resultant value is output, and predetermined control information is output;and a current/voltage control section (40,50) for performing amplitude modulation in response to the amplitude control value within a range of 0 to 100% of an initial set amplitude value of current and/or voltage stimulus signals.
  7. 28
    Apparatus according any one of claims 23 to 27, characterized in that the sampling operation is performed within a time period from 0.01 to 0.5 seconds.
  8. 31
    A method of generating a low frequency electrical stimulus signal, characterized in that, to generate an electrical stimulus signal to be provided to a biological body, control information previously stored in a control section (30) is read out without using acoustic information from a sound source (16) so as to control current and voltage stimulus signals, and said current and voltage stimulus signals are alternately output as the electrical stimulus.
  9. 36
    Low frequency electrical stimulus signal generating apparatus comprising an input section (20) for setting and adjusting conditions, and a stimulus signal generating section (10), said stimulus signal generating section (10) including:a control section (30) for previously storing control information which is readily accessible;a current control section (40) for generating a current stimulus signal controlled by said control information;a voltage control section (50) for generating a voltage stimulus signal controlled by said control information;and a control system selecting section (60) for alternately switching said current stimulus signal and said voltage stimulus signal based upon said control signal so as to output the switched signal as the electrical stimulus signal.