Analysis of neural response for excitation-inhibition balanced networks with reversal potentials for large numbers of inputs

A. Burkitt
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Abstract

The observed variability in the spike rate of cortical neurons has been hypothesized to result from a balance in the excitatory and inhibitory synaptic inputs that the neurons receive. The coefficient of variation of the spike rate is calculated in the limit of a large number of inputs using the integrated-input technique, which is extended here to include the effect of reversal potentials. The output spike rate is found to increase monotonically over two orders of magnitude, thereby solving the dynamic range (or gain control) problem. The coefficient of variation is approximately 1.0 for low input rates and increases to around 1.6 at high input rates, well within the range observed in the response of cortical neurons.
具有反转电位的大输入量兴奋-抑制平衡网络的神经反应分析
观察到的皮层神经元尖峰率的变化被假设为神经元接收的兴奋性和抑制性突触输入的平衡。使用积分输入技术在大量输入的极限下计算尖峰率的变异系数,在这里扩展到包括反转电位的影响。发现输出尖峰率在两个数量级上单调增加,从而解决了动态范围(或增益控制)问题。在低输入率下,变异系数约为1.0,在高输入率下增加到1.6左右,完全在皮层神经元反应中观察到的范围内。
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