首页> 外文期刊>Journal of Micromechanics and Microengineering >Compact silicon-based optrode with integrated laser diode chips, SU-8 waveguides and platinum electrodes for optogenetic applications
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Compact silicon-based optrode with integrated laser diode chips, SU-8 waveguides and platinum electrodes for optogenetic applications

机译:基于紧凑型硅基Optrode,具有集成的激光二极管芯片,SU-8波导和用于光学应用的铂电极

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摘要

We report on a compact optrode, i.e. a MEMS-based, invasive, bidirectional neural interface allowing to control neural activity using light while neural signals are recorded nearby. The optrode consists of a silicon (Si) base carrying two pairs of bare laser diodes (LDs) emitting at 650 nm and of two 8 mm-long, 250 mu m-wide and down to 50 mu m-thick shanks extending from the base. Each LD is efficiently coupled to one of four 15 or 20 mu m-wide and 13 mu m-high SU-8 waveguides (WGs) running in pairs along the shanks. In addition, each shank comprises four 20 mu m-diameter platinum electrodes for neural recording near the WG end facets. After encapsulation of the LDs with a Si cover chip blocking stray light and protecting the LDs from the harsh environment to which the probe is destined, the compact base measures only 4 x 4 x 0.43 mm(3). The time averaged radiant emittance at the WG end facet is 96.9 mW mm(-2) for an LD current of 35 mA at a duty cycle of 5%. The absolute electrode impedance at 1 kHz is 1.54 +/- 0.06 M Omega. Using infrared thermography, the temperature increase of the probe during LD operation was determined to be about 1 K under neuroscientifically relevant operating conditions.
机译:我们在紧凑的Optrode上报告,即基于MEMS的侵入性的双向神经界面,其允许使用光控制神经活动,而在附近进行神经信号。 Optroide由载有两对裸激光二极管(LDS)的硅(Si)基座,在650nm处发射,两台8毫米长,250 mm宽,下降到从底座延伸的50 mu m厚的柄部。每个LD有效地耦合到四个15或20μm宽和13μm高SU-8波导(WGS)中的一个沿着柄部成对运行。另外,每个柄部包括四个20μm直径的铂电极,用于在WG端面附近的神经记录。在用Si盖芯片阻塞杂散光线封装LDS后,通过探针注定的苛刻环境保护LDS,紧凑型基座仅4×4×0.43mm(3)。 WG端面的时间平均辐射发射率为96.9mm mm(-2),对于55%的占空比为35 mA的LD电流。 1 kHz的绝对电极阻抗是1.54 +/- 0.06米ω。使用红外热成像,在神经透视相关的操作条件下测定LD操作期间探针的温度升高约为1k。

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