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Estimation of synaptic conductances and their variances from intracellular recordings of neocortical neurons in vivo

机译:体内新皮质神经元细胞内记录突触导电的估计及其差异

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During intense network activity, neocortical neurons are in a "high-conductance" state. To estimate the respective contributions of excitatory and inhibitory conductances in generating such states, we combined computational models with intracellular recordings obtained in cat parietal cortex in vivo. Fitting a fluctuating-conductance model to the recordings revealed that inhibitory conductances are dominant (several times larger than excitation). Conductance variance (i.e., the "noise") was also larger for inhibition, indicating that inhibitory dynamics have a pronounced impact on membrane potential fluctuations. We conclude that the synaptic bombardment of neocortical neurons in vivo is not excitatory, but mostly determined by inhibitory conductances.
机译:在激烈的网络活动期间,新皮肤神经元处于“高导率”状态。为了估算兴奋性和抑制性导电在产生这些状态时的各自贡献,我们将计算模型与体内猫顶皮层中获得的细胞内记录组合。将波动导电模型拟合到录音显示抑制导电是显性的(比励磁大数倍)。导电方差(即,“噪声”)对于抑制也较大,表明抑制动力学对膜电位波动具有明显的影响。我们得出结论,体内新生素神经元的突触轰击不是兴奋性,但主要通过抑制导电来确定。

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