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Responses of cultured neuronal network to different electrical stimuli patterns

机译:培养的神经网络对不同电刺激模式的反应

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摘要

Learning a new behavioral task is an exploration process that involves the formation and modulation of sets of associations between stimuli and network's responses. The dissociated rat hippocampal neurons were cultured on a multi-electrode array (MEA) substrate. So the electrophysiological activity can be extracellularly recorded, the response of network dynamics induced by electrical pulse stimulation can be analyzed using the recorded data. The test stimuli patterns were different interval twice stimuli. Each stimulus is voltage-controlled pulses (100μs at +0.6V, followed by 100μs at -0.6V). With the intervals between two stimuli decreasing such as a series of 100ms, 50ms, 20ms and 10ms, the response duration of cultured neuronal network increased. The firing rate of neuronal network was affected by the stimuli patterns: compare with the spontaneous firings of neurons, after the quick electrical stimulation (10ms interval stimuli pattern), the firing rate of neuronal network increases. On the contrary, the slow electrical stimulation (100ms interval stimuli pattern) depresses the firing rate of neuronal network.
机译:学习新的行为任务是一个探索过程,涉及刺激和网络响应之间的关联集的形成和调制。解离的大鼠海马神经元在多电极阵列(MEA)基板上培养。因此,可以在细胞外记录电生理活动,可以使用记录的数据分析电脉冲刺激引起的网络动力学响应。测试的刺激模式是两次间隔不同的刺激。每个刺激都是压控脉冲(+ 0.6V时为100μs,-0.6V时为100μs)。随着两个刺激之间的间隔减小,例如一系列100ms,50ms,20ms和10ms,培养的神经元网络的响应持续时间增加。神经元网络的放电速率受刺激模式的影响:与神经元的自发放电相比,在快速电刺激(间隔为10ms的刺激模式)后,神经元网络的放电速率增加。相反,缓慢的电刺激(间隔为100毫秒的刺激模式)会降低神经网络的放电速度。

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