红外线神经调制 - 综述。

Michelle Y Sander, Xuedong Zhu
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引用次数: 0

摘要

红外线(IR)神经调控(INM)是一种新兴的光基神经调控方法,它可以通过脉冲红外光的瞬时和局部沉积可逆地控制神经元和肌肉活动,而无需对靶细胞进行任何化学或基因预处理。虽然 INM 在外周和中枢神经系统中的有效性和短期安全性已得到广泛证实,但对其详细的细胞和生物过程以及潜在的生物物理机制的研究仍在进行中。在这篇综述中,我们将讨论 INM 领域目前的研究进展,重点是最近发现的红外神经抑制(INI)。本文总结了与红外神经刺激(INS)相关的主要生物物理机制。由于 INM 效应主要归因于水和组织对脉冲红外光的吸收所诱发的时空热瞬态,因此讨论了 INM 研究中采用的温度监测技术和模拟模型。将阐明该领域潜在的转化应用、当前的局限性和挑战,为未来的 INM 研究和进步提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Infrared neuromodulation-a review.

Infrared (IR) neuromodulation (INM) is an emerging light-based neuromodulation approach that can reversibly control neuronal and muscular activities through the transient and localized deposition of pulsed IR light without requiring any chemical or genetic pre-treatment of the target cells. Though the efficacy and short-term safety of INM have been widely demonstrated in both peripheral and central nervous systems, the investigations of the detailed cellular and biological processes and the underlying biophysical mechanisms are still ongoing. In this review, we discuss the current research progress in the INM field with a focus on the more recently discovered IR nerve inhibition. Major biophysical mechanisms associated with IR nerve stimulation are summarized. As the INM effects are primarily attributed to the spatiotemporal thermal transients induced by water and tissue absorption of pulsed IR light, temperature monitoring techniques and simulation models adopted in INM studies are discussed. Potential translational applications, current limitations, and challenges of the field are elucidated to provide guidance for future INM research and advancement.

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