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Spatially dispersed synapses yield sharply‐tuned place cell responses through dendritic spike initiation

机译:空间分散的突触通过树突尖峰发起产生急剧调整的地方响应

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Key points The generation of dendritic spikes and the consequent sharp tuning of neuronal responses are together attainable even when iso‐feature synapses are randomly dispersed across the dendritic arbor. Disparate combinations of channel conductances with distinct configurations of randomly dispersed place field synapses concomitantly yield similar sharp tuning profiles and similar functional maps of several intrinsic properties. Targeted synaptic plasticity converts silent cells to place cells for specific place fields in models with disparate channel combinations that receive dispersed synaptic inputs from multiple place field locations. Dispersed localization of iso‐feature synapses is a strong candidate for achieving sharp feature selectivity in neurons across sensory‐perceptual systems, with several degrees of freedom in relation to synaptic locations. Quantitative evidence for the possibility that degeneracy (i.e. the ability of disparate structural components to yield similar functional outcomes) could act as a broad framework that effectively accomplishes the twin goals of input‐feature encoding and homeostasis of intrinsic properties without cross interferences. Abstract A prominent hypothesis spanning several sensory‐perceptual systems implicates spatially clustered synapses in the generation of dendritic spikes that mediate sharply‐tuned neuronal responses to input features. In this conductance‐based morphologically‐precise computational study, we tested this hypothesis by systematically analysing the impact of distinct synaptic and channel localization profiles on sharpness of spatial tuning in hippocampal pyramidal neurons. We found that the generation of dendritic spikes, the emergence of an excitatory ramp in somatic voltage responses, the expression of several intrinsic somatodendritic functional maps and sharp tuning of place‐cell responses were all attainable even when iso‐feature synapses are randomly dispersed across the dendritic arbor of models with disparate channel combinations. Strikingly, the generation and propagation of dendritic spikes, reliant on dendritic sodium channels and N ‐methyl‐ d ‐asparate receptors, mediated the sharpness of spatial tuning achieved with dispersed synaptic localization. To ensure that our results were not artefacts of narrow parametric choices, we confirmed these conclusions with independent multiparametric stochastic search algorithms spanning thousands of unique models for each synaptic localization scenario.?Next, employing virtual knockout models, we demonstrated a vital role for dendritically expressed voltage‐gated ion channels, especially the transient potassium channels, in maintaining sharpness of place‐cell tuning. Importantly, we established that synaptic potentiation targeted to afferents from one specific place field was sufficient to impart place field selectivity even when intrinsically disparate neurons received randomly dispersed afferents from multiple place field locations. Our results provide quantitative evidence for disparate combinations of channel and synaptic localization profiles to concomitantly yield similar tuning and similar intrinsic properties.
机译:关键点即使在树突轴上随机分散在树突轴上随机分散,即使在树枝状轴上随机分散,即使在树突轴上随机分散的情况也可以在一起的产生和随后的神经元响应的急剧调整。具有不同配置的随机分散的地方突触的不同配置的沟道导电的各种组合同时产生了类似的尖锐调谐曲线和几种内在特性的类似功能图。有针对性的突触塑性转换静音细胞以​​将特定地点的小区放置在具有不同的信道组合的模型中,从多个地方场地接收分散的突触输入。 ISO-特征突触的分散定位是在感知系统中实现神经元中的尖锐特征选择性的强烈候选者,其与突触位置有几个自由度。定量证据是退化的可能性(即,不同的结构组件产生类似的功能结果的能力)可以作为一种广泛的框架,有效地完成输入特征编码和内在特性的稳态的双重目标而没有交叉干扰。摘要跨越几个感官感知系统的突出假设暗示了在生成的树突状尖峰中介绍了对输入特征的急剧调整的神经元响应的天性聚类突触。在这种基于电导的形态学 - 精确的计算研究中,我们通过系统地分析了不同突触和信道定位型材对海马金字塔神经元的空间调谐锐度的影响来测试了这一假设。我们发现树突尖峰的产生,兴奋性斜坡的出现,即使在ISO-特征突触随机分散在一起时,也可以达到几个内在的躯体反应的表达和急剧调整。模型的Dendritic arbor与不同的信道组合。引人注目的是,树突状尖峰的产生和繁殖,依赖于树突钠通道和N-甲基-d - 甲基受体,介导用分散的突触定位实现的空间调谐的锐度。为了确保我们的结果不是狭窄的参数选择的人工制作,我们确认了与每个突触本地化方案的独立多级随机搜索算法的结论,为每个突触本地化方案跨越了数千个独特的模型.?EXT,采用虚拟淘汰模型,我们对树枝状表达的表现致力于重要作用电压门控离子通道,尤其是瞬时钾通道,保持所在电池调谐的清晰度。重要的是,我们建立了靶向与一个特定地方场的引交的突触潜力足以赋予地方场合选择性,即使当本质上存在神经元从多个地方场位置接受随机分散的交流。我们的结果为频道和突触定位型材的不同组合提供了定量证据,以伴随着类似的调谐和类似的内在特性。

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