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A Wireless Optogenetic Headstage with Multichannel Electrophysiological Recording Capability

机译:具有多通道电生理记录功能的无线光遗传学舞台

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摘要

We present a small and lightweight fully wireless optogenetic headstage capable of optical neural stimulation and electrophysiological recording. The headstage is suitable for conducting experiments with small transgenic rodents, and features two implantable fiber-coupled light-emitting diode (LED) and two electrophysiological recording channels. This system is powered by a small lithium-ion battery and is entirely built using low-cost commercial off-the-shelf components for better flexibility, reduced development time and lower cost. Light stimulation uses customizable stimulation patterns of varying frequency and duty cycle. The optical power that is sourced from the LED is delivered to target light-sensitive neurons using implantable optical fibers, which provide a measured optical power density of 70 mW/mm2 at the tip. The headstage is using a novel foldable rigid-flex printed circuit board design, which results into a lightweight and compact device. Recording experiments performed in the cerebral cortex of transgenic ChR2 mice under anesthetized conditions show that the proposed headstage can trigger neuronal activity using optical stimulation, while recording microvolt amplitude electrophysiological signals.
机译:我们提出了一种小型轻巧的全无线光遗传学头显,能够进行光神经刺激和电生理记录。头测仪适合用小型转基因啮齿动物进行实验,并具有两个可植入的纤维耦合发光二极管(LED)和两个电生理记录通道。该系统由一个小型锂离子电池供电,并且完全使用低成本的商用现货组件构建而成,从而具有更好的灵活性,减少了开发时间并降低了成本。光刺激使用频率和占空比不同的可定制刺激模式。使用可植入光纤将来自LED的光功率传递到目标光敏神经元,该光纤在尖端提供70 mW / mm 2 的测得光功率密度。前端采用新颖的可折叠刚柔印刷电路板设计,可实现轻巧紧凑的设备。在麻醉条件下在转基因ChR2小鼠的大脑皮层中进行的记录实验表明,提出的头皮可以使用光刺激触发神经元活动,同时记录微伏振幅的电生理信号。

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