首页> 美国卫生研究院文献>The Journal of Neuroscience >Submillisecond Precision of the Input-Output Transformation Function Mediated by Fast Sodium Dendritic Spikes in Basal Dendrites of CA1 Pyramidal Neurons
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Submillisecond Precision of the Input-Output Transformation Function Mediated by Fast Sodium Dendritic Spikes in Basal Dendrites of CA1 Pyramidal Neurons

机译:快速钠树枝状突触介导的CA1锥体神经元基础树突中输入输出转换函数的亚毫秒精度。

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摘要

The ability of cortical neurons to perform temporally accurate computations has been shown to be important for encoding of information in the cortex; however, cortical neurons are expected to be imprecise temporal encoders because of the stochastic nature of synaptic transmission and ion channel gating, dendritic filtering, and background synaptic noise. Here we show for the first time that fast local spikes in basal dendrites can serve to improve the temporal precision of neuronal output. Integration of coactivated, spatially distributed synaptic inputs produces temporally imprecise output action potentials within a time window of several milliseconds. In contrast, integration of closely spaced basal inputs initiates local dendritic spikes that amplify and sharpen the summed somatic potential. In turn, these fast basal spikes allow precise timing of output action potentials with submillisecond temporal jitter over a wide range of activation intensities and background synaptic noise. Our findings indicate that fast spikes initiated in individual basal dendrites can serve as precise “timers” of output action potentials in various network activity states and thus may contribute to temporal coding in the cortex.
机译:皮质神经元执行时间精确计算的能力已被证明对于皮质信息的编码很重要;然而,由于突触传递和离子通道门控,树突过滤和背景突触噪声的随机性,预计皮层神经元是不精确的时间编码器。在这里,我们首次显示了基础树突中的快速局部尖峰可以用来提高神经元输出的时间精度。共同激活的,空间分布的突触输入的集成会在几毫秒的时间窗口内产生时间上不精确的输出动作电位。相反,紧密间隔的基础输入的整合会引发局部树突状刺突,从而放大并锐化总的体电位。继而,这些快速的基础尖峰允许在很宽的激活强度和背景突触噪声范围内以亚毫秒级的时间抖动对输出动作电位进行精确计时。我们的发现表明,单个基底树突中起始的快速尖峰可以充当各种网络活动状态下输出动作电位的精确“计时器”,因此可能有助于皮质中的时间编码。

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