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A Review and Perspective for the Development of Triboelectric Nanogenerator (TENG)-Based Self-Powered Neuroprosthetics

机译:基于摩擦纳米料(TENG)的自我动力神经调节剂的发展述评与透视

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摘要

Neuroprosthetics have become a powerful toolkit for clinical interventions of various diseases that affect the central nervous or peripheral nervous systems, such as deep brain stimulation (DBS), functional electrical stimulation (FES), and vagus nerve stimulation (VNS), by electrically stimulating different neuronal structures. To prolong the lifetime of implanted devices, researchers have developed power sources with different approaches. Among them, the triboelectric nanogenerator (TENG) is the only one to achieve direct nerve stimulations, showing great potential in the realization of a self-powered neuroprosthetic system in the future. In this review, the current development and progress of the TENG-based stimulation of various kinds of nervous systems are systematically summarized. Then, based on the requirements of the neuroprosthetic system in a real application and the development of current techniques, a perspective of a more sophisticated neuroprosthetic system is proposed, which includes components of a thin-film TENG device with a biocompatible package, an amplification circuit to enhance the output, and a self-powered high-frequency switch to generate high-frequency current pulses for nerve stimulations. Then, we review and evaluate the recent development and progress of each part.
机译:神经调节剂已成为一种强大的工具包,用于各种疾病的临床干预,这些疾病影响中枢神经或外周神经系统,例如深脑刺激(DBS),功能电刺激(FES)和迷走神经刺激(VNS),通过电刺激不同神经元结构。为了延长植入装置的寿命,研究人员已经开发出具有不同方法的电源。其中,摩擦电纳米能器(滕)是唯一一个实现直接神经刺激的人,在未来实现自我动力的神经神经神经系统系统方面存在巨大潜力。在本次审查中,系统总结了各种神经系统的趋势刺激的目前的开发和进展。然后,基于在真实应用中的神经调节系统的要求和当前技术的发展,提出了一种更复杂的神经高原系统的观点,包括具有生物相容性封装的薄膜腾液的部件,放大电路为了增强输出,以及自动高频开关以产生用于神经刺激的高频电流脉冲。然后,我们审查和评估每个部分的最新发展和进度。

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