神经调节
光遗传学
神经科学
光子上转换
无线
计算机科学
纳米材料
纳米技术
材料科学
电信
生物
光电子学
刺激
发光
作者
Galong Li,Dongyan Li,Bin Lan,Yihuan Chen,Wenli Zhang,Baojuan Li,Yang Liu,Haiming Fan,Hongbin Lu
标识
DOI:10.1088/1361-6560/ad5ef0
摘要
Abstract Functional nanomaterials have emerged as versatile nanotransducers for wireless neural modulation because of their minimal invasion and high spatiotemporal resolution. The nanotransducers can convert external excitation sources (e.g. NIR light, x-rays, and magnetic fields) to visible light (or local heat) to activate optogenetic opsins and thermosensitive ion channels for neuromodulation. The present review provides insights into the fundamentals of the mostly used functional nanomaterials in wireless neuromodulation including upconversion nanoparticles, nanoscintillators, and magnetic nanoparticles. We further discussed the recent developments in design strategies of functional nanomaterials with enhanced energy conversion performance that have greatly expanded the field of neuromodulation. We summarized the applications of functional nanomaterials-mediated wireless neuromodulation techniques, including exciting/silencing neurons, modulating brain activity, controlling motor behaviors, and regulating peripheral organ function in mice. Finally, we discussed some key considerations in functional nanotransducer-mediated wireless neuromodulation along with the current challenges and future directions.
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