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Identification of neuronal network properties from the spectral analysis of calcium imaging signals in neuronal cultures

机译:从神经元培养物中钙成像信号的光谱分析中识别神经元网络特性

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摘要

Neuronal networks in vitro are prominent systems to study the development of connections in living neuronal networks and the interplay between connectivity, activity and function. These cultured networks show a rich spontaneous activity that evolves concurrently with the connectivity of the underlying network. In this work we monitor the development of neuronal cultures, and record their activity using calcium fluorescence imaging. We use spectral analysis to characterize global dynamical and structural traits of the neuronal cultures. We first observe that the power spectrum can be used as a signature of the state of the network, for instance when inhibition is active or silent, as well as a measure of the network's connectivity strength. Second, the power spectrum identifies prominent developmental changes in the network such as GABAA switch. And third, the analysis of the spatial distribution of the spectral density, in experiments with a controlled disintegration of the network through CNQX, an AMPA-glutamate receptor antagonist in excitatory neurons, reveals the existence of communities of strongly connected, highly active neurons that display synchronous oscillations. Our work illustrates the interest of spectral analysis for the study of in vitro networks, and its potential use as a network-state indicator, for instance to compare healthy and diseased neuronal networks.
机译:体外神经元网络是研究活神经元网络中连接的发展以及连接性,活动性和功能性之间相互作用的重要系统。这些经过培养的网络显示出丰富的自发活动,该活动与基础网络的连接性同时发展。在这项工作中,我们监测神经元文化的发展,并使用钙荧光成像记录其活动。我们使用频谱分析来表征神经元文化的整体动力学和结构特征。我们首先观察到功率谱可以用作网络状态的标志,例如当抑制处于活动状态或静默状态时,以及网络连接强度的度量。其次,功率谱确定了网络中的显着发展变化,例如GABAA开关。第三,在通过兴奋性神经元中的AMPA-谷氨酸受体拮抗剂CNQX对网络进行受控分解的实验中,对光谱密度的空间分布进行了分析,结果揭示了存在紧密连接的,高度活跃的神经元群落的存在。同步振荡。我们的工作说明了频谱分析对于体外网络研究的兴趣,以及其作为网络状态指标的潜在用途,例如用于比较健康和患病的神经元网络。

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