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Determination of the fraction of active inputs required by a neuron to fire

机译:确定神经元触发的主动输入所占的比例

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What fraction of the inputs to a neuron in the primary visual cortex (V1) need to be active for that neuron to reach its firing threshold? The paper describes a numerical method for estimating the selectivity of visual neurons, in terms of the required fraction of active excitatory inputs, from standard data produced by intracellular electro-physiological recordings. The method also provides an estimate of the relative strength of the feedforward inhibition in a push–pull model of the inputs to V1 simple cells. The method is tested on two V1 cells described in Carandini and Ferster [Carandini, M., Ferster, D., 2000. Membrane potential and firing rate in cat primary visual cortex. J. Neurosci. 20, 470–484]. The results indicate that the maximum strength of feedforward inhibition is around 30% of the maximum strength of feedforward excitation. The two V1 neurons investigated fire if more than around 40% of their excitatory LGN inputs are active.
机译:要使该神经元达到触发阈值,主视觉皮层(V1)中神经元的输入的哪一部分应处于活动状态?本文描述了一种数值方法,用于根据细胞内电生理记录产生的标准数据,根据所需的主动兴奋性输入分数,估算视觉神经元的选择性。该方法还提供了对V1简单单元格输入的推挽模型中前馈抑制的相对强度的估计。该方法在Carandini和Ferster [Carandini,M.,Ferster,D.,2000。猫原发性视觉皮层中的膜电位和放电速率)中描述的两个V1细胞上进行了测试。 J.神经科学。 20,470–484]。结果表明,前馈抑制的最大强度约为前馈激发的最大强度的30%。如果超过40%的兴奋性LGN输入处于活动状态,则两个V1神经元将着火。

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