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Topological Mapping of Neurons using Activities Detected in MEA Recording Signals

机译:在MEA记录信号中检测到的活动的神经元的拓扑映射

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The topological mapping of Multielectrode Array (MEA) in vitro cultured neurons is useful in neuroscience. In this context, it is proposed a framework for the visualization and grouping of the neurons, through their electrophysiogical activities, identifying spikes and bursts, in the MEA signal recordings. The developed framework is applied to the recording signals of the Experiment 371, of dissociated in vitro neuron culture conducted at the Laboratory of Neuroengineering and Bionanotechnology Group, University of Genoa, Italy. The main motivation of this work, is the use of an estimated map of population of neurons, in an arbitrary moment of the culture to study their dynamics. It is emphasized that the visualization of the map of neurons on MEA without the need of microscopy can be a great advantage, since a photography on the culture can be not available at a specific moment of signal recording. A mathematical model of neurons proposed by Izhikevich to simulate the action potentials of in vitro cultures is used to validate the proposal.
机译:多电极阵列(MEA)体外培养神经元的拓扑映射可用于神经科学。在这种情况下,提出了一种用于在MEA信号记录中通过电体学术活动,识别尖峰和突发的神经元的可视化和分组神经元的框架。发达的框架应用于实验371的记录信号,其在意大利热那终和生物衰老实验室进行的体外神经元培养物中解离体外神经元培养物。这项工作的主要动力,是在文化的任意时刻,使用估计神经元的估计地图,以研究他们的动态。强调,在没有显微镜的情况下,在MEA上的神经元地图的可视化可能是一个很大的优势,因为在培养物上的摄影可以在信号记录的特定时刻可用。利用Izhikevich提出的神经元的数学模型来模拟体外培养物的动作电位来验证该提案。

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