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Anticipated synchronization in neuronal systems subject to noise

机译:受噪声受神经元系统中的预期同步

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We report the observation of synchrony in two unidirectionally coupled (master-slave) model neurons (implemented by electronic circuits) in a noisy environment. Both neurons are subjected to the same random stimulus, and there is a recurrent inhibitory delayed connection in the slave neuron. We observe that synchrony occurs shifted in time, such that the slave neuron anticipates, i.e., forecasts, the response of the master neuron. By incorporating the effects of unidirectional coupling, delayed feedback and common noise into models of two spiking neurons, we are able to simulate successfully the experimental observations.
机译:我们在嘈杂的环境中报道了两个单向耦合(主从)模型神经元(由电子电路实施)的同步的观察。这两个神经元都经受相同的随机刺激,并且在奴隶神经元中存在复发性抑制延迟连接。我们观察到,同步发生在时间换档,使得从属神经元预期,即预测,母体神经元的响应。通过将单向耦合,延迟反馈和常见噪声的效果结合到两个尖峰神经元的模型中,我们能够成功模拟实验观察。

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