<p>Implantable optoelectronic devices provide the opportunity for application of safe and minimally invasive actions on the peripheral nervous system, providing both stimulating and regenerative effects. However, the operation of such devices requires an external source of light pulses. This paper presents a&#xa0;solution to this problem through the development of a&#xa0;wearable autonomous red light generation system. The device allows activation at a&#xa0;specified point in time to be programmed with recording of operating parameters and indication of battery charge. Its compact dimensions (36 × 29 × 11 mm) and functional features such as the generation of light pulses with specified parameters, switching on and off at particular times, and battery charge indication allow it to be used in in vivo laboratory studies testing implantable stimulators.</p>

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A portable autonomous red light generation system for activation of peripheral nerves by optoelectronic stimulation

  • M. V. Tokarev,
  • E. A. Iusupovskaia,
  • N. R. Isaev,
  • A. G. Markov,
  • D. V. Telyshev

摘要

Implantable optoelectronic devices provide the opportunity for application of safe and minimally invasive actions on the peripheral nervous system, providing both stimulating and regenerative effects. However, the operation of such devices requires an external source of light pulses. This paper presents a solution to this problem through the development of a wearable autonomous red light generation system. The device allows activation at a specified point in time to be programmed with recording of operating parameters and indication of battery charge. Its compact dimensions (36 × 29 × 11 mm) and functional features such as the generation of light pulses with specified parameters, switching on and off at particular times, and battery charge indication allow it to be used in in vivo laboratory studies testing implantable stimulators.