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Toward on-chip functional neuronal networks: Computational study on the effect of synaptic connectivity on neural activity

机译:朝上片上功能神经元网络:对突触连接对神经活动作用影响的计算研究

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This paper presents a new unified computational-experimental approach to study the role of the synaptic activity on the activity of neurons in the small neuronal networks (NNs). In a neuronal tissue/organ, this question is investigated with higher complexities by recording action potentials from population of neurons in order to find the relationship between connectivity and the recorded activities. In this approach, we study the dynamics of very small cortical neuronal networks, which can be experimentally synthesized on chip with constrained connectivity. Multi-compartmental Hodgkin-Huxley model is used in NEURON software to reproduce cells by extracting the experimental data from the synthesized NNs. We thereafter demonstrate how the type of synaptic activity affects the network response to specific spike train using the simulation results.
机译:本文提出了一种新的统一计算 - 实验方法,用于研究突触活动对小神经网络(NNS)中神经元的活性的作用。 在神经元组织/器官中,通过从神经元群体记录动作电位以找到连接性与记录的活动之间的关系,以更高的复杂性研究该问题。 在这种方法中,我们研究了非常小的皮质神经元网络的动态,可以在具有约束连接的芯片上进行实验地合成。 多隔间Hodgkin-Huxley模型用于Neuron软件以通过从合成的NNS提取实验数据来再现细胞。 此后,我们展示了如何使用模拟结果对特定尖峰列车的网络响应影响网络响应。

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