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Infrared Laser Stimulation of Cochlear Nerve through a Tympanic Membrane

机译:通过鼓膜膜红外激光刺激耳蜗神经

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Infrared lasers are a novel method for providing neural stimulation. The laser causes an instantiable temperature rise because of optical absorption by water, and opens the heat-sensitive ion channel. Unlike electric stimulation, an infrared laser stimulates nerves without contacting the tissue. Our goal was to develop a novel auditory prosthesis by applying infrared laser stimulation in a hearing aid. This study investigated whether an infrared laser projected through the tympanic membrane could stimulate the cochlear nerves in the ear canal. Mongolian gerbils (Meriones unguiculatus) were studied. A pulsed infrared laser (0.5-12.8 mJ/cm~2) and a clicking sound (10-90 dB pe. SPL) were presented to the subjects. The cochlear microphonics (CMs) and compound action potentials (CAPs) were recorded when the clicking sound was presented, while trans-tympanic membrane laser stimulation induced only CAPs. In subsequent experiments, continuous pulsed laser irradiation for 60 minutes did not cause any observable damage on cochlear response and a tympanic membrane. Therefore, trans-tympanic membrane laser stimulation bypasses the need for hair cell depolarization and creates cochlear nerves responses directly, suggesting that a novel hearing aid using an infrared laser could compensate for sensorial hearing loss.
机译:红外激光器是一种提供神经刺激的新方法。由于水的光学吸收,激光器导致可行的温度升高,并打开热敏离子通道。与电刺激不同,红外激光刺激神经而不接触组织。我们的目标是通过在助听器中应用红外激光刺激来开发一种新颖的听觉假体。本研究调查了通过鼓膜突出的红外激光是否可以刺激耳道中的耳蜗神经。研究了蒙古·阿伯利斯(MeriOnes Unguiculatus)。脉冲红外激光器(0.5-12.8 mJ / cm〜2)和点击声音(10-90 dB pe。spl)呈现给受试者。当呈现点击声音时,记录了耳蜗瞳孔仪(CMS)和复合作用电位(盖子),而跨鼓风膜激光刺激仅诱导盖子。在随后的实验中,连续脉冲激光照射60分钟不会对耳蜗反应和鼓膜造成任何可观察的损伤。因此,跨鼓风膜激光刺激绕过毛细胞去极化的需要并直接产生耳蜗神经反应,表明使用红外激光器的新型助听器可以补偿感官听力损失。

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