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首页> 外文期刊>Journal of Neurophysiology >Massively parallel recording of unit and local field potentials with silicon-based electrodes.
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Massively parallel recording of unit and local field potentials with silicon-based electrodes.

机译:使用硅基电极大规模并行记录单位和局部电场电势。

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摘要

Parallel recording of neuronal activity in the behaving animal is a prerequisite for our understanding of neuronal representation and storage of information. Here we describe the development of micro-machined silicon microelectrode arrays for unit and local field recordings. The two-dimensional probes with 96 or 64 recording sites provided high-density recording of unit and field activity with minimal tissue displacement or damage. The on-chip active circuit eliminated movement and other artifacts and greatly reduced the weight of the headgear. The precise geometry of the recording tips allowed for the estimation of the spatial location of the recorded neurons and for high-resolution estimation of extracellular current source density. Action potentials could be simultaneously recorded from the soma and dendrites of the same neurons. Silicon technology is a promising approach for high-density, high-resolution sampling of neuronal activity in both basic research and prosthetic devices.
机译:在行为动物中并行记录神经元活动是我们了解神经元表示和信息存储的前提。在这里,我们描述了用于单位和局部场记录的微加工硅微电极阵列的发展。具有96个或64个记录位点的二维探针提供了单位和野外活动的高密度记录,而组织移位或损坏最小。片上有源电路消除了运动和其他伪影,大大减轻了头盔的重量。记录尖端的精确几何形状允许估计记录的神经元的空间位置,并可以高分辨率估计细胞外电流源的密度。可以同时从相同神经元的体细胞和树突中记录动作电位。硅技术是一种用于基础研究和修复设备中神经元活动的高密度,高分辨率采样的有前途的方法。

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