平面基底上神经网络的活动同步

A. Samarin, Y. Igarashi, I. B. Kulagina, S. Korogod
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引用次数: 0

摘要

采用集成多电极阵列在平面基质上培养的动物胚胎神经元具有自发的动作电位爆发,在发育过程中动作电位的同步性越来越强。我们在模拟神经元网络中研究了这种同步现象,这解释了生物原型的几何形状和膜特性的发育变化。单个神经元生长的神经突起区被分成大小和方向随机的树突和轴突两个部分。在轴突和树突扇区相交的细胞之间建立突触,并按相交面积的比例设置突触的权重。将该网络导入NEURON模拟器。细胞的膜特性和细胞内钙动力学与新皮质锥体神经元相似。在连接之前,单元生成异步爆发。在相互连接的细胞域中发展的同步,其模式与连接模式明显相关。
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Activity synchronization in neural networks developing on planar substrates
Neurons taken from animal embryo and grown on plane substrate with integrated multi-electrode array possess spontaneous bursts of action potentials, which become increasingly synchronous in the course of development. We studied such synchronization phenomena in a network of simulated neurons, which accounted for developmental changes in geometry and membrane properties of biological prototypes. Growing neuritic fields of individual neurons were partitioned into dendritic and axonal sectors of random size and orientation. Synapses were established between the cells with intersecting axonal and dendritic sectors and the synaptic weight was set in proportion to the intersection area. The network was imported into NEURON simulator. The membrane properties and the intracellular calcium dynamics of the cells were set similar to those described for the neocortical pyramidal neurons. Before being connected the cells generated asynchronous bursts. The synchronization developed in the domains of interconnected cells had the patterns apparently linked to the connectivity patterns.
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