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首页> 外文期刊>Journal of the South Carolina Academy of Science >Predicting phase resetting due to multiple stimuli
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Predicting phase resetting due to multiple stimuli

机译:预测由于多种刺激导致的相位重置

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摘要

We generalized the phase resetting curve (PRC) to a more realistic case of neural oscillators receiving two or more inputs per cycle. The PRC tabulates the transient change in the firing period of a neuron due to an external perturbation, such as a presynaptic stimulus. We used a conductance-based model neuron to estimate experimentally the two-stimulus PRC and compared the results against our mathematical prediction based on the assumption of instantaneous recurrent stimulation. Within the limits of the recurrent stimulation assumptions, we found that the newly introduced prediction for the two-stimulus PRC matched experimental measurements. Our new results open the possibility of a more realistic approach to predicting phase-locked modes in neural networks, such as the synchronous activity of large networks during epileptic seizures.
机译:我们将相位重置曲线(PRC)推广到神经振荡器的更实际情况,即每个周期接收两个或更多输入。 PRC列出了由于外部扰动(例如突触前刺激)而导致的神经元放电周期的瞬时变化。我们使用了基于电导的模型神经元,通过实验估算了两种刺激的PRC,并将结果与​​基于瞬时反复刺激假设的数学预测进行了比较。在反复刺激假设的范围内,我们发现新引入的对两刺激PRC的预测与实验测量值匹配。我们的新结果为预测神经网络中的锁相模式(例如在癫痫发作期间大型网络的同步活动)提供了更现实的方法可能性。

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