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A new MEMS neural probe integrated with embedded microfluidic channel for drug delivery and electrode array for recording neural signal

机译:一种新的MEMS神经探针,与嵌入式微流体通道集成,用于药物递送和电极阵列,用于记录神经信号

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We present a multi-functional silicon neural probe that consists of a microfluidic channel for selective delivery of a precise quantity of a chemical and multiple recording electrodes to simultaneously monitor the effects of drug delivery. A 30-μm wide, 10-μm high microfluidic channel is embedded in the probe substrate by anodic bonding, thermal reflowing and polishing a glass wafer to seal the channel. 10-μm-by-10-μm four multiple recording sites are located near the outlet port to record neural spike signals in response to the delivered drug. The fabricated 150-μm-thick probe exhibits a flow rate of 0.2 μl/min at the input air pressure of 200 kPa and an average impedance value of 3.0 MΩ at 1 kHz. In addition, the functionality of this probe is demonstrated through an in vivo experiment where neural spike signals at the hippocampus of an anesthetized mouse are successfully detected and recorded.
机译:我们介绍了一种多功能硅神经探针,其包括微流体通道,用于选择性地递送精确量的化学和多个记录电极,同时监测药物递送的影响。通过阳极键合,热量粘合和抛光玻璃晶片以密封通道,将30μm宽的10μm高微流体通道嵌入探针基板中。 10-μm-×10-μm四个多个记录部位位于出口附近,以响应递送的药物记录神经尖峰信号。制造的150μm厚的探针在200kPa的输入空气压力下显示出0.2μl/ min的流速,并且在1kHz下的平均阻抗值为3.0mΩ。此外,通过体内实验证明了该探针的功能,其中成功检测并记录了麻醉小鼠的海马的神经尖峰信号。

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