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Research on neural information detecting system measuring neuroelectricity in hippocampus in vivo and dopamine in vitro based on microelectrode array

机译:基于微电极阵列的体内和多巴胺中海马神经电性检测系统的神经信息检测系统研究

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Concurrently detecting the electrical activity of neurons and neurotransmitter release signals, will have a great significance in understanding the working mechanism of the brain. This paper describes a neural information detecting system based on microelectrode array(MEA) measuring neuroelectricity in hippocampus in vivo and dopamine(DA) in vitro. The detecting system contains of electrophysiological headstage, electrochemical headstage, microprocessor, electrophysiological signal amplifier, data acquisition module and neural signal analysis software. In electrophysiological test, the neural information detecting system was applied to detect neuroelectricity in hippocampus of SD rat with 16-channel microelectrode array in vivo. Active potentials were captured. The amplitude of the recorded neural spikes reached 182.90 μV, and signal to noise ratio was 7:1. For measure dopamine as neurotransmitter, there was a good linear relationship between response current and concentration of dopamine from 10nM to 18.88μ with correlation coefficient of 0.9974. Electrophysiological experiment and electrochemical experiment demonstrate the capability of the neural information detecting system to capture dual mode neural signal, which provides a convenient way to study dual mode operating mechanism of neural system.
机译:同时检测神经元和神经递质释放信号的电活动,在理解大脑的工作机制方面将具有重要意义。本文介绍了基于微电极阵列(MEA)的神经信息检测系统,其在体外体内和多巴胺(DA)中的海马中的神经电性。检测系统包含电生理脑台,电化学脑台,微处理器,电生理信号放大器,数据采集模块和神经信号分析软件。在电生理测试中,应用神经信息检测系统以在体内用16通道微电极阵列检测SD大鼠海马的神经电性。积极潜力被捕获。记录的神经尖峰的幅度达到182.90μV,信噪比为7:1。对于衡量多巴胺作为神经递质,响应电流与多巴胺浓度之间的良好线性关系,从10nm到18.88μm,相关系数为0.9974。电生理实验和电化学实验证明了神经信息检测系统捕获双模神经信号的能力,这提供了一种研究神经系统的双模操作机制的便捷方式。

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