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First biocompatibility margins for optical stimulation at the eardrum via 532-nm laser pulses in a mouse model

机译:小鼠模型中通过532 nm激光脉冲在耳膜上进行光刺激的第一个生物相容性裕度

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摘要

Hearing impairment affects million people worldwide. Conservative therapies, such as hearing aids, bone conduction systems, and middle ear implants, do not always sufficiently compensate for this deficit. The optical stimulation is currently under investigation as an alternative stimulation strategy for the activation of the hearing system. To assess the biocompatibility margins of this emerging technology, we established a method applicable in whole-mount preparations of murine tympanic membranes (TM). We irradiated the TM of anesthetized mice with 532-nm laser pulses at an average power of 50, 89, 99, and 125 mW at two different locations of the TM and monitored the hearing function with auditory brainstem responses. Laser-power-dependent negative side effects to the TM were observed at power levels exceeding 89 mW. Although we did not find any significant negative effects of optical stimulation on the hearing function in these mice, based on the histology results further studies are necessary for optimization of the used parameters.
机译:听力障碍影响着全球数百万人。保守疗法,例如助听器,骨传导系统和中耳植入物,并不总是能充分弥补这一不足。目前正在研究光学刺激作为激活听力系统的替代刺激策略。为了评估这项新兴技术的生物相容性裕度,我们建立了适用于整装小鼠鼓膜(TM)的方法。我们在TM的两个不同位置分别以532 nm激光脉冲以50、89、99和125 mW的平均功率照射麻醉小鼠的TM,并通过听觉脑干反应监测听力功能。在功率水平超过89mW时,观察到TM的激光功率相关的负面影响。尽管我们没有发现光刺激对这些小鼠的听力功能有任何显着的负面影响,但根据组织学结果,需要进一步研究以优化所用参数。

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