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局部场电位锐波对触觉输入的皮质神经元编码的多样化影响。

Local field potential sharp waves with diversified impact on cortical neuronal encoding of haptic input.

机构信息

Department of Experimental Medical Science, Neural Basis of Sensorimotor Control, Lund University, Lund, Sweden.

出版信息

Sci Rep. 2024 Jul 2;14(1):15243. doi: 10.1038/s41598-024-65200-3.

Abstract

Cortical sensory processing is greatly impacted by internally generated activity. But controlling for that activity is difficult since the thalamocortical network is a high-dimensional system with rapid state changes. Therefore, to unwind the cortical computational architecture there is a need for physiological 'landmarks' that can be used as frames of reference for computational state. Here we use a waveshape transform method to identify conspicuous local field potential sharp waves (LFP-SPWs) in the somatosensory cortex (S1). LFP-SPW events triggered short-lasting but massive neuronal activation in all recorded neurons with a subset of neurons initiating their activation up to 20 ms before the LFP-SPW onset. In contrast, LFP-SPWs differentially impacted the neuronal spike responses to ensuing tactile inputs, depressing the tactile responses in some neurons and enhancing them in others. When LFP-SPWs coactivated with more distant cortical surface (ECoG)-SPWs, suggesting an involvement of these SPWs in global cortical signaling, the impact of the LFP-SPW on the neuronal tactile response could change substantially, including inverting its impact to the opposite. These cortical SPWs shared many signal fingerprint characteristics as reported for hippocampal SPWs and may be a biomarker for a particular type of state change that is possibly shared byboth hippocampus and neocortex.

摘要

皮层感觉处理受到内部产生的活动的极大影响。但是,由于丘脑皮层网络是一个具有快速状态变化的高维系统,因此很难控制该活动。因此,为了揭示皮层的计算结构,需要有生理“标记”,可以用作计算状态的参考框架。在这里,我们使用波型变换方法在躯体感觉皮层 (S1) 中识别明显的局部场电位尖波 (LFP-SPW)。LFP-SPW 事件在所有记录的神经元中引发短暂但大规模的神经元激活,其中一部分神经元在 LFP-SPW 起始之前最多提前 20 毫秒开始激活。相比之下,LFP-SPW 对随后的触觉输入的神经元尖峰反应有不同的影响,抑制了一些神经元的触觉反应,增强了其他神经元的触觉反应。当 LFP-SPW 与更远的皮层表面 (ECoG)-SPW 共同激活时,这表明这些 SPW 参与了全局皮层信号传递,LFP-SPW 对神经元触觉反应的影响可能会发生很大变化,包括其影响反转到相反的情况。这些皮层 SPW 具有与海马体 SPW 报告的许多信号指纹特征相似,可能是特定类型的状态变化的生物标志物,这种状态变化可能同时发生在海马体和新皮层中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/738a/11219916/3f4e162c1c8d/41598_2024_65200_Fig1_HTML.jpg

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