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Effects of Morphology Constraint on Electrophysiological Properties of Cortical Neurons

机译:形态学约束对皮层神经元电生理特性的影响

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摘要

There is growing interest in engineering nerve cells in vitro to control architecture and connectivity of cultured neuronal networks or to build neuronal networks with predictable computational function. Pattern technologies, such as micro-contact printing, have been developed to design ordered neuronal networks. However, electrophysiological characteristics of the single patterned neuron haven’t been reported. Here, micro-contact printing, using polyolefine polymer (POP) stamps with high resolution, was employed to grow cortical neurons in a designed structure. The results demonstrated that the morphology of patterned neurons was well constrained, and the number of dendrites was decreased to be about 2. Our electrophysiological results showed that alterations of dendritic morphology affected firing patterns of neurons and neural excitability. When stimulated by current, though both patterned and un-patterned neurons presented regular spiking, the dynamics and strength of the response were different. The un-patterned neurons exhibited a monotonically increasing firing frequency in response to injected current, while the patterned neurons first exhibited frequency increase and then a slow decrease. Our findings indicate that the decrease in dendritic complexity of cortical neurons will influence their electrophysiological characteristics and alter their information processing activity, which could be considered when designing neuronal circuitries.
机译:人们对在体外工程化神经细胞以控制培养的神经元网络的结构和连通性或构建具有可预测的计算功能的神经元网络越来越感兴趣。已经开发出诸如微接触印刷的图案技术来设计有序的神经元网络。但是,尚未报道单个模式神经元的电生理特性。在这里,使用高分辨率的聚烯烃聚合物(POP)印章进行微接触印刷,以使皮质神经元生长成设计的结构。结果表明,模式神经元的形态受到很好的约束,树突的数量减少到大约2个。我们的电生理结果表明,树突形态的变化会影响神经元的放电模式和神经兴奋性。当受到电流刺激时,尽管有模式的和无模式的神经元都呈现规律的尖峰,但响应的动力学和强度却不同。未图案化的神经元响应于注入电流表现出单调增加的激发频率,而图案化的神经元首先表现出频率增加,然后缓慢降低。我们的发现表明,皮质神经元树突复杂性的降低将影响其电生理特性并改变其信息处理活性,这在设计神经元回路时可以考虑。

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