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体内小鼠皮质锥体神经元轴突中的尖峰传递失败。

Spike transmission failures in axons from mouse cortical pyramidal neurons in vivo.

作者信息

Ofer Netanel, Cornejo Victor Hugo, Yuste Rafael

机构信息

Neurotechnology Center, Dept. Biological Sciences, Columbia University, New York, NY 10027, USA.

出版信息

bioRxiv. 2024 Jan 30:2024.01.29.577733. doi: 10.1101/2024.01.29.577733.

Abstract

The propagation of action potentials along axons is traditionally considered to be reliable, as a consequence of the high safety factor of action potential propagation. However, numerical simulations have suggested that, at high frequencies, spikes could fail to invade distal axonal branches. Given the complex morphologies of axonal trees, with extensive branching and long-distance projections, spike propagation failures could be functionally important. To explore this experimentally , we used an axonal-targeted calcium indicator to image action potentials at axonal terminal branches in superficial layers from mouse somatosensory cortical pyramidal neurons. We activated axons with an extracellular electrode, varying stimulation frequencies, and computationally extracted axonal morphologies and associated calcium responses. We find that axonal boutons have higher calcium accumulations than their parent axons, as was reported . But, contrary to previous results, our data reveal spike failures in a significant subset of branches, as a function of branching geometry and spike frequency. The filtering is correlated with the geometric ratio of the branch diameters, as expected by cable theory. These findings suggest that axonal morphologies contribute to signal processing in the cortex.

摘要

传统上认为,由于动作电位传播的高安全系数,动作电位沿轴突的传播是可靠的。然而,数值模拟表明,在高频情况下,锋电位可能无法侵入轴突远端分支。鉴于轴突树的形态复杂,具有广泛的分支和长距离投射,锋电位传播失败可能在功能上具有重要意义。为了对此进行实验探究,我们使用了一种轴突靶向钙指示剂来成像小鼠体感皮层锥体神经元表层轴突终末分支处的动作电位。我们用细胞外电极激活轴突,改变刺激频率,并通过计算提取轴突形态和相关的钙反应。我们发现,正如所报道的那样,轴突终扣的钙积累比其母轴突更高。但是,与之前的结果相反,我们的数据显示,在很大一部分分支中存在锋电位失败现象,这是分支几何形状和锋电位频率的函数。正如电缆理论所预期的那样,这种滤波与分支直径的几何比率相关。这些发现表明,轴突形态有助于皮层中的信号处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eb3/10862735/b63ca523ea8e/nihpp-2024.01.29.577733v1-f0001.jpg

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