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Triboelectric neurostimulator for physiological modulation of leg muscle

Title
Triboelectric neurostimulator for physiological modulation of leg muscle
Author(s)
Kang, MinseokShin, HeejaeCho, YoungjunPark, JaeuNagwade PritishLee, SangHoon
Issued Date
2022-12
Citation
Nano Energy, v.103,Part b
Type
Article
Author Keywords
Amplitude modulationFrequency modulationNeurostimulatorPeripheral nerveTriboelectric nanogenerator (TENG)
Keywords
SKELETAL-MUSCLEELECTRICAL-STIMULATIONNERVEPROLIFERATIONNANOGENERATORFATIGUE
ISSN
2211-2855
Abstract
Neurostimulation using triboelectric nanogenerators (TENGs) has been actively researched. However, only limited neural responses have been demonstrated since the previous TENGs could not change stimululs parameters owing to limited operation design and conditions. To overcome these challenges, we report a rotation-based triboelectric neurostimulator (RoTENS) that allows the continuous modulation of stimulus parameters depending on rotation while generating a constant charge output. The RoTENS adjusts the stimulus parameters by controlling the rotational speed and non-contact method. The electrode materials and patterns were optimized, and the characterization of RoTENS was investigated. Furthermore, the neurophysiological validation of hindlimb modulation in rats was demonstrated. By directly stimulating the sciatic nerve branches using RoTENS, dorsiflexion (max. 13.12°) and plantar flexion (maximum 29.34°), which are major movements of the hindlimb for gait, were induced. Varying the frequency (10–50 Hz) allows the muscle to smoothly shift its physiological state from twitching to fused tetanus. The natural relaxation of the muscle is induced by changing the current amplitude via the height of the rotator (0–6 mm). These results indicate that RoTENS is sufficient to induce the desired physiological response while creating wide-ranging frequencies and amplitudes. We expect that RoTENS will open up new opportunities and possibilities for the use of TENG as neurostimulators. © 2022 The Authors
URI
http://hdl.handle.net/20.500.11750/17183
DOI
10.1016/j.nanoen.2022.107861
Publisher
Elsevier Ltd
Related Researcher
  • 이상훈 Lee, Sanghoon
  • Research Interests Neural interface; Peripheral neuromodulation; Neuroprosthetics; Bioelectronics;
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Department of Robotics and Mechatronics Engineering Neuro-Interfaced Robotics Lab 1. Journal Articles

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