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尖锐波涟漪双脉冲在体内诱导钙蛋白阳性中间神经元产生复杂的树突棘。

Sharp-wave ripple doublets induce complex dendritic spikes in parvalbumin interneurons in vivo.

机构信息

Laboratory of 3D Functional Network and Dendritic Imaging, Institute of Experimental Medicine, Budapest, Hungary.

Two-Photon Measurement Technology Group, The Faculty of Information Technology, Pázmány Péter University, Budapest, Hungary.

出版信息

Nat Commun. 2022 Nov 7;13(1):6715. doi: 10.1038/s41467-022-34520-1.

Abstract

Neuronal plasticity has been shown to be causally linked to coincidence detection through dendritic spikes (dSpikes). We demonstrate the existence of SPW-R-associated, branch-specific, local dSpikes and their computational role in basal dendrites of hippocampal PV+ interneurons in awake animals. To measure the entire dendritic arbor of long thin dendrites during SPW-Rs, we used fast 3D acousto-optical imaging through an eccentric deep-brain adapter and ipsilateral local field potential recording. The regenerative calcium spike started at variable, NMDA-AMPA-dependent, hot spots and propagated in both direction with a high amplitude beyond a critical distance threshold (150 µm) involving voltage-gated calcium channels. A supralinear dendritic summation emerged during SPW-R doublets when two successive SPW-R events coincide within a short temporal window (150 ms), e.g., during more complex association tasks, and generated large dSpikes with an about 2.5-3-fold amplitude increase which propagated down to the soma. Our results suggest that these doublet-associated dSpikes can work as a dendritic-level temporal and spatial coincidence detector during SPW-R-related network computation in awake mice.

摘要

神经元可塑性已被证明与树突棘(dSpikes)的巧合检测有关。我们在清醒动物的海马 CA1 区 PV+中间神经元的基底树突中证明了 SPW-R 相关的、分支特异性的局部 dSpikes 的存在及其在计算中的作用。为了在 SPW-R 期间测量长而细的树突整个树突分支,我们使用偏心深部脑适配器的快速 3D 声光成像和同侧局部场电位记录。再生钙尖出现在可变的、NMDA-AMPA 依赖性的热点处,并在超过临界距离阈值(约 150µm)时以高幅度在两个方向上传播,涉及电压门控钙通道。当两个连续的 SPW-R 事件在短时间窗口(约 150ms)内重合时,例如在更复杂的关联任务期间,SPW-R 双脉冲期间会出现超线性的树突总和,并产生具有约 2.5-3 倍幅度增加的大 dSpikes,向下传播到胞体。我们的结果表明,这些双脉冲相关的 dSpikes 可以在清醒小鼠的 SPW-R 相关网络计算中作为树突水平的时空巧合检测器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f50/9640570/122c201cfb10/41467_2022_34520_Fig1_HTML.jpg

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