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A pilot study: Infrared laser stimulation of the rat vagus nerves

机译:初步研究:红外激光刺激大鼠迷走神经

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The vagus nerve originating from the brainstem in the central nervous system is a long cranial nerve that reaches theneck, thorax, abdomen, and colon. It plays a role in autonomic nervous, cardiovascular, gastrointestinal, and immunesystems. Electrical stimulation of the vagus nerve has become a standard method for the treatment of neuropathic painand epileptic conditions over the years. Infrared laser nerve stimulation (ILNS) is an evolving technique that usesinfrared laser energy to stimulate cells with electrochemical capacity without the need for external agents or physicalcontact. This pilot study explores infrared laser stimulation of the rat vagus nerve, in-vivo. An infrared pigtailed singlemodediode laser operating at 1505 nm in continuous-wave (CW) mode was used in this study for noncontact CW-ILNS.Successful CW-ILNS of the rat vagus nerve was observed after the CN reached a threshold temperature of ~44 °C withresponse times as short as 10 s. With more improvement in instrumentation, better optimization of stimulationparameters, and a higher sample size, CW-ILNS may show some potential in vagus nerve stimulation for preclinical
机译:源自中枢神经系统脑干的迷走神经是一条长颅神经,到达 颈部,胸部,腹部和结肠。它在自主神经,心血管,胃肠道和免疫系统中发挥作用 系统。迷走神经的电刺激已成为治疗神经性疼痛的标准方法 和多年来的癫痫病。红外激光神经刺激(ILNS)是一项不断发展的技术,它使用 红外激光能量刺激具有电化学能力的细胞,而无需外部试剂或物理 接触。这项初步研究探索了体内对大鼠迷走神经的红外激光刺激。红外尾纤单模 在本研究中,以1505 nm连续波(CW)模式工作的二极管激光器用于非接触式CW-ILNS。 当CN达到阈值温度为〜44°C时,观察到成功的大鼠迷走神经CW-ILNS。 响应时间短至10 s。随着仪器的更多改进,更好的刺激优化 参数和较高的样本量,CW-ILNS可能在迷走神经刺激方面表现出一定的临床前潜力

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