首页> 外文会议>International conference on photonics and imaging in biology and medicine >Precisely Repeating Spike Temporal Sequences in Spontaneous Activity of Cultured Hippocampal Neuronal Networks on Multi-electrode Arrays
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Precisely Repeating Spike Temporal Sequences in Spontaneous Activity of Cultured Hippocampal Neuronal Networks on Multi-electrode Arrays

机译:在多电极阵列上培养的海马神经元网络的自发活动中精确重复的穗时间序列。

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Neurons can respond to stimuli with temporally precise firing events and use precisely temporal spike patterns to encode information. However, whether or not such precise temporal spike sequences occur in the spontaneous firing activity of neuronal networks in vitro is not well understood. Advances in multi-electrode recording techniques allow study of the dynamics of neuronal populations' activity and its role in information coding. In this report, the hippocampal neurons from rats were cultured on a multi-microelectrode arrays dish and their spontaneous activities were recorded. The plotting of interspike interval versus time was used to investigate the characteristics of temporal coding in spontaneous spike trains. The results show that several unique temporal patterns of spike sequences appear twice with detail repeated to within a millisecond in the same spike train, without any specific experimental perturbation. Groups of such repeating sequences occur together, comprising apparent information units. The study demonstrates that intricate patterns of precisely temporal structures are one of the main forms of temporal coding, and may encode information even during spontaneous activity. This finding may further the understanding of the complex neuronal coding in spontaneous activity in vitro or in vivo.
机译:神经元可以通过时间上精确的触发事件对刺激做出反应,并使用时间上的精确尖峰模式来编码信息。然而,在体外神经元网络的自发激发活动中是否出现这种精确的时间尖峰序列尚不清楚。多电极记录技术的进步允许研究神经元群体活动的动力学及其在信息编码中的作用。在此报告中,将大鼠的海马神经元培养在多微电极阵列培养皿上,并记录了它们的自发活动。尖峰间隔与时间的关系图用于研究自发尖峰序列中时间编码的特征。结果表明,在相同的峰值序列中,几个独特的峰值序列的时间模式出现了两次,细节重复到一毫秒之内,而没有任何特定的实验扰动。这些重复序列的组一起出现,包括明显的信息单元。该研究表明,精确的时间结构的复杂模式是时间编码的主要形式之一,即使在自发活动期间也可能对信息进行编码。该发现可以进一步了解体外或体内自发活动中复杂神经元编码。

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