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Blind Localization of Heating in Neural Tissues Induced by a Train of the Infrared Pulse Laser

机译:一系列红外脉冲激光在神经组织中引起的加热盲区

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摘要

Recently, infrared lasers (wavelengths larger than 1100 nm) have been applied to stimulate neural tissues. Infrared neural stimulation (INS) has some advantages over conventional electric stimulation, including contact-free delivery, spatial precision, and lack of stimulation artifacts. In this study and based on a photothermal mechanism, we applied the heat diffusion equation to study temperature variation of a biological phantom during INS. In addition, the impact of laser parameters on spatially localized heating induced by 2 different infrared wavelengths were studied.
机译:最近,红外激光(波长大于1100 nm)已应用于刺激神经组织。红外神经刺激(INS)与常规的电刺激相比具有一些优势,包括无接触传递,空间精确度和刺激伪影的缺乏。在这项研究中,基于光热机制,我们应用了热扩散方程来研究INS期间生物体模的温度变化。此外,研究了激光参数对2种不同红外波长引起的空间局部加热的影响。

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