Cellular Neurophysiology Laboratory, Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.
J Neurosci. 2014 Jan 22;34(4):1195-211. doi: 10.1523/JNEUROSCI.3203-13.2014.
How does the presence of plastic active dendrites in a pyramidal neuron alter its spike initiation dynamics? To answer this question, we measured the spike-triggered average (STA) from experimentally constrained, conductance-based hippocampal neuronal models of various morphological complexities. We transformed the STA computed from these models to the spectral and the spectrotemporal domains and found that the spike initiation dynamics exhibited temporally localized selectivity to a characteristic frequency. In the presence of the hyperpolarization-activated cyclic nucleotide-gated (HCN) channels, the STA characteristic frequency strongly correlated with the subthreshold resonance frequency in the theta frequency range. Increases in HCN channel density or in input variance increased the STA characteristic frequency and its selectivity strength. In the absence of HCN channels, the STA exhibited weak delta frequency selectivity and the characteristic frequency was related to the repolarization dynamics of the action potentials and the recovery kinetics of sodium channels from inactivation. Comparison of STA obtained with inputs at various dendritic locations revealed that nonspiking and spiking dendrites increased and reduced the spectrotemporal integration window of the STA with increasing distance from the soma as direct consequences of passive filtering and dendritic spike initiation, respectively. Finally, the presence of HCN channels set the STA characteristic frequency in the theta range across the somatodendritic arbor and specific STA measurements were strongly related to equivalent transfer-impedance-related measurements. Our results identify explicit roles for plastic active dendrites in neural coding and strongly recommend a dynamically reconfigurable multi-STA model to characterize location-dependent input feature selectivity in pyramidal neurons.
塑料活性树突在锥体神经元中的存在如何改变其尖峰起始动力学?为了回答这个问题,我们测量了各种形态复杂度的基于实验约束的海马神经元模型的尖峰触发平均(STA)。我们将从这些模型计算出的 STA 转换到光谱和spectrotemporal 域,并发现尖峰起始动力学表现出对特征频率的时间局部选择性。在超极化激活环核苷酸门控(HCN)通道存在的情况下,STA 特征频率与 theta 频率范围内的亚阈共振频率强烈相关。HCN 通道密度或输入方差的增加增加了 STA 特征频率及其选择性强度。在没有 HCN 通道的情况下,STA 表现出较弱的 delta 频率选择性,特征频率与动作电位的复极化动力学和钠离子通道从失活中的恢复动力学有关。在各种树突位置获得的 STA 的比较表明,非尖峰和尖峰树突分别作为被动滤波和树突尖峰起始的直接后果,增加和减少了 STA 的 spectrotemporal 积分窗口,随着与胞体的距离增加。最后,HCN 通道的存在在整个树突体树突中设置了 STA 的 theta 范围中的特征频率,并且特定的 STA 测量与等效传递阻抗相关的测量密切相关。我们的结果确定了塑料活性树突在神经编码中的明确作用,并强烈推荐使用动态可重构的多 STA 模型来表征锥体神经元中位置相关的输入特征选择性。