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Dendritic Excitability Modulates Dendritic Information Processing in a Purkinje Cell Model

机译:树突状兴奋性调节浦肯野细胞模型中的树突状信息处理。

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摘要

Using an electrophysiological compartmental model of a Purkinje cell we quantified the contribution of individual active dendritic currents to processing of synaptic activity from granule cells. We used mutual information as a measure to quantify the information from the total excitatory input current (IGlu) encoded in each dendritic current. In this context, each active current was considered an information channel. Our analyses showed that most of the information was encoded by the calcium (ICaP) and calcium activated potassium (IKc) currents. Mutual information between IGlu and ICaP and IKc was sensitive to different levels of excitatory and inhibitory synaptic activity that, at the same time, resulted in the same firing rate at the soma. Since dendritic excitability could be a mechanism to regulate information processing in neurons we quantified the changes in mutual information between IGlu and all Purkinje cell currents as a function of the density of dendritic Ca (gCaP) and Kca (gKc) conductances. We extended our analysis to determine the window of temporal integration of IGlu by ICaP and IKc as a function of channel density and synaptic activity. The window of information integration has a stronger dependence on increasing values of gKc than on gCaP, but at high levels of synaptic stimulation information integration is reduced to a few milliseconds. Overall, our results show that different dendritic conductances differentially encode synaptic activity and that dendritic excitability and the level of synaptic activity regulate the flow of information in dendrites.
机译:使用浦肯野细胞的电生理隔室模型,我们量化了单个主动树突状电流对颗粒细胞突触活性处理的贡献。我们使用互信息作为度量,从每个树突电流中编码的总兴奋性输入电流(IGlu)中量化信息。在这种情况下,每个有功电流都被视为一个信息通道。我们的分析表明,大多数信息是由钙(ICaP)和钙激活钾(IKc)电流编码的。 IGlu与ICaP和IKc之间的相互信息对不同水平的兴奋性和抑制性突触活性敏感,同时,它们在体细胞中的激发速率相同。由于树突状兴奋性可能是调节神经元信息处理的一种机制,因此我们根据树突状Ca(gCaP)和Kca(gKc)电导的密度对IGlu和所有浦肯野细胞电流之间相互信息的变化进行了量化。我们扩展了我们的分析,以确定ICaP和IKc对IGlu进行时间整合的窗口,作为通道密度和突触活性的函数。信息整合的窗口对gKc的增加的依赖性比对gCaP的依赖性更大,但是在突触刺激的高水平下,信息整合会减少到几毫秒。总体而言,我们的结果表明,不同的树突状电导不同地编码突触活性,并且树突状兴奋性和突触活性水平调节树突状组织中的信息流。

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