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Artikel: Memristive circuit-based model of central pattern generator to reproduce spinal neuronal activity in walking pattern.

Masaev, Dinar N / Suleimanova, Alina A / Prudnikov, Nikita V / Serenko, Mariia V / Emelyanov, Andrey V / Demin, Vyacheslav A / Lavrov, Igor A / Talanov, Max O / Erokhin, Victor V

Frontiers in neuroscience

2023  Band 17, Seite(n) 1124950

Abstract: Existing methods of neurorehabilitation include invasive or non-invasive stimulators that are usually simple digital generators with manually set parameters like pulse width, period, burst duration, and frequency of stimulation series. An obvious lack of ...

Abstract Existing methods of neurorehabilitation include invasive or non-invasive stimulators that are usually simple digital generators with manually set parameters like pulse width, period, burst duration, and frequency of stimulation series. An obvious lack of adaptation capability of stimulators, as well as poor biocompatibility and high power consumption of prosthetic devices, highlights the need for medical usage of neuromorphic systems including memristive devices. The latter are electrical devices providing a wide range of complex synaptic functionality within a single element. In this study, we propose the memristive schematic capable of self-learning according to bio-plausible spike-timing-dependant plasticity to organize the electrical activity of the walking pattern generated by the central pattern generator.
Sprache Englisch
Erscheinungsdatum 2023-02-28
Erscheinungsland Switzerland
Dokumenttyp Journal Article
ZDB-ID 2411902-7
ISSN 1662-453X ; 1662-4548
ISSN (online) 1662-453X
ISSN 1662-4548
DOI 10.3389/fnins.2023.1124950
Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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