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A Model of the Effects of Applied Electric Fields on Neuronal Synchronization

机译:外加电场对神经元影响的模型 同步化

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摘要

We examine the effects of applied electric fields on neuronal synchronization. Two-compartment model neurons were synaptically coupled and embedded within a resistive array, thus allowing the neurons to interact both chemically and electrically. In addition, an external electric field was imposed on the array. The effects of this field were found to be nontrivial, giving rise to domains of synchrony and asynchrony as a function of the heterogeneity among the neurons. A simple phase oscillator reduction was successful in qualitatively reproducing these domains. The findings form several readily testable experimental predictions, and the model can be extended to a larger scale in which the effects of electric fields on seizure activity may be simulated.
机译:我们检查了施加电场对神经元同步的影响。两室模型神经元被突触耦合并嵌入到电阻阵列中,从而使神经元能够进行化学和电学相互作用。另外,在阵列上施加了外部电场。发现该场的影响是不平凡的,其根据神经元之间的异质性产生同步和异步域。一个简单的相位振荡器减小就可以成功地定性地再现这些域。这些发现形成了几个易于检验的实验预测,并且该模型可以扩展到更大的规模,其中可以模拟电场对癫痫发作活动的影响。

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