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A wireless implantable switched-capacitor based optogenetic stimulating system

机译:基于无线植入式开关电容器的光遗传刺激系统

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This paper presents a power-efficient implantable optogenetic interface using a wireless switched-capacitor based stimulating (SCS) system. The SCS efficiently charges storage capacitors directly from an inductive link and periodically discharges them into an array of micro-LEDs, providing high instantaneous power without affecting wireless link and system supply voltage. A custom-designed computer interface in LabVIEW environment wirelessly controls stimulation parameters through the inductive link, and an optrode array enables simultaneous neural recording along with optical stimulation. The 4-channel SCS system prototype has been implemented in a 0.35-μm CMOS process and combined with the optrode array. In vivo experiments involving light-induced local field potentials verified the efficacy of the SCS system. An implantable version of the SCS system with flexible hermetic sealing is under development for chronic experiments.
机译:本文提出了一种使用基于无线开关电容器的刺激(SCS)系统的省电可植入光遗传学接口。 SCS直接从电感链路有效地对存储电容器进行充电,并定期将其放电到微型LED阵列中,从而提供高瞬时功率,而不会影响无线链路和系统电源电压。 LabVIEW环境中的定制设计计算机界面通过感应链接无线控制刺激参数,并且光极阵列可同时进行神经记录和光学刺激。 4通道SCS系统原型已在0.35μmCMOS工艺中实现,并与光电二极管阵列结合在一起。涉及光诱导的局部场电势的体内实验验证了SCS系统的功效。具有慢性气密性的SCS系统的可植入版本正在开发中。

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