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Activity patterns of cultured neural networks on micro electrode arrays

机译:微电极阵列上培养神经网络的活动模式

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A hybrid neuro-electronic interface is a cell-cultured micro electrode array, acting as a neural information transducer for stimulation and/or recording of neural activity in the brain or the spinal cord (ventral motor region or dorsal sensory region). It consists of an array of micro electrodes on a planar substrate, the electrodes being covered by a network of cultured neurons. The cultured neuron network layer acts as a natural host for in vivo neural connections. Besides this function, live neural networks can become spontaneously active and have the capability of information processing, as 'minibrains'. One may envisage future applications of these intermediary networks as 'front-end' signal' processors. The paper presents results on spatio-temporal activity patterns and their characterization in neural networks, cultured from dissociated rat visual cortex. Cultures lasted 43 days in vitro on multi electrode plates with 60 electrode sites and started activity after about seven days. Firing rates increase with time thereafter. Typical 'pacemaker'-and-burst firing patterns are seen, the time characteristics of which change over days, typically.
机译:混合神经电子界面是一种细胞培养的微电极阵列,其作用为用于刺激和/或记录大脑或脊髓(腹侧电动机区域或背部感觉区域)的神经活动的刺激和/或记录的神经信息换能器。它由平面基板上的微电极阵列组成,电极被培养的神经元网络覆盖。培养的神经元网络层充当体内神经连接的天然主体。除了这个功能外,现场神经网络可能会自发主动,并具有信息处理的能力,作为“致命”。可以设想这些中间网络的未来应用作为“前端”信号'处理器。本文提出了从解离大鼠视觉皮层培养的神经网络中的时空活动模式以及它们的表征。培养物在多电极板上持续43天,具有60个电极位点,并在大约七天后开始活性。此后的射击率随着时间的推移而增加。可以看到典型的“起搏器的起搏器和突发射击图案,通常会发生变化的时间特征。

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