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低频和高频颅内神经信号在人类联合皮层中匹配。

Low and high frequency intracranial neural signals match in the human associative cortex.

机构信息

Université de Lorraine, CNRS, CRAN, Nancy, France.

Psychological Sciences Research Institute (IPSY), Université Catholique de Louvain (UCLouvain), Louvain-la-Neuve, Belgium.

出版信息

Elife. 2022 Sep 8;11:e76544. doi: 10.7554/eLife.76544.

Abstract

In vivo intracranial recordings of neural activity offer a unique opportunity to understand human brain function. Intracranial electrophysiological (iEEG) activity related to sensory, cognitive or motor events manifests mostly in two types of signals: event-related local field potentials in lower frequency bands (<30 Hz, LF) and broadband activity in the higher end of the frequency spectrum (>30 Hz, High frequency, HF). While most current studies rely exclusively on HF, thought to be more focal and closely related to spiking activity, the relationship between HF and LF signals is unclear, especially in human associative cortex. Here, we provide a large-scale in-depth investigation of the spatial and functional relationship between these 2 signals based on intracranial recordings from 121 individual brains (8000 recording sites). We measure category-selective responses to complex ecologically salient visual stimuli - human faces - across a wide cortical territory in the ventral occipito-temporal cortex (VOTC), with a frequency-tagging method providing high signal-to-noise ratio (SNR) and the same objective quantification of signal and noise for the two frequency ranges. While LF face-selective activity has higher SNR across the VOTC, leading to a larger number of significant electrode contacts especially in the anterior temporal lobe, LF and HF display highly similar spatial, functional, and timing properties. Specifically, and contrary to a widespread assumption, our results point to nearly identical spatial distribution and local spatial extent of LF and HF activity at equal SNR. These observations go a long way towards clarifying the relationship between the two main iEEG signals and reestablish the informative value of LF iEEG to understand human brain function.

摘要

在体颅内神经活动记录为理解人类大脑功能提供了独特的机会。与感觉、认知或运动事件相关的颅内电生理 (iEEG) 活动主要表现为两种类型的信号:低频带 (<30 Hz,LF) 的事件相关局部场电位和高频谱 (>30 Hz,高频,HF) 的宽带活动。虽然大多数当前的研究仅依赖于 HF,认为它更集中并且与尖峰活动密切相关,但 HF 和 LF 信号之间的关系尚不清楚,尤其是在人类联合皮层中。在这里,我们基于 121 个个体大脑 (8000 个记录位点) 的颅内记录,对这两种信号的空间和功能关系进行了大规模深入调查。我们使用频率标记方法测量了对复杂生态显著视觉刺激 - 人脸 - 的分类选择性反应,该方法提供了高信噪比 (SNR),并且对两个频率范围的信号和噪声进行了相同的客观量化。虽然 LF 面孔选择性活动在 VOTC 中具有更高的 SNR,从而导致在前颞叶中有更多的显著电极接触,但 LF 和 HF 显示出高度相似的空间、功能和时间特性。具体来说,与广泛的假设相反,我们的结果表明,在相等的 SNR 下,LF 和 HF 活动的空间分布和局部空间范围几乎相同。这些观察结果在很大程度上澄清了这两种主要 iEEG 信号之间的关系,并重新确立了 LF iEEG 理解人类大脑功能的信息价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5e4/9457683/2f71468de3fb/elife-76544-fig1.jpg

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