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使用 fMRI 研究视觉皮层中的滞后结构与视觉流之间的可能联系。

Possible links between the lag structure in visual cortex and visual streams using fMRI.

机构信息

Department of Electrical and Computer Engineering, Sungkyunkwan University, Suwon, 16419, Korea.

Center for Neuroscience Imaging Research, Institute for Basic Science (IBS), Suwon, 16419, Korea.

出版信息

Sci Rep. 2019 Mar 12;9(1):4283. doi: 10.1038/s41598-019-40728-x.

Abstract

Conventional functional connectivity analysis using functional magnetic resonance imaging (fMRI) measures the correlation of temporally synchronized brain activities between brain regions. Lag structure analysis relaxes the synchronicity constraint of fMRI signals, and thus, this approach might be better at explaining functional connectivity. However, the sources of the lag structure in fMRI are primarily unknown. Here, we applied lag structure analysis to the human visual cortex to identify the possible sources of lag structure. A total of 1,250 fMRI data from two independent databases were considered. We explored the temporal lag patterns between the central and peripheral visual fields in early visual cortex and those in two visual pathways of dorsal and ventral streams. We also compared the lag patterns with effective connectivity obtained with dynamic causal modeling. We found that the lag structure in early visual cortex flows from the central to peripheral visual fields and the order of the lag structure flow was consistent with the order of signal flows in visual pathways. The effective connectivity computed by dynamic causal modeling exhibited similar patterns with the lag structure results. This study suggests that signal flows in visual streams are possible sources of the lag structure in human visual cortex.

摘要

传统的功能磁共振成像(fMRI)功能连接分析测量脑区之间时间同步的脑活动相关性。时滞结构分析放宽了 fMRI 信号的同步约束,因此,这种方法可能更能解释功能连接。然而,fMRI 中时滞结构的来源主要是未知的。在这里,我们将时滞结构分析应用于人类视觉皮层,以确定时滞结构的可能来源。共考虑了来自两个独立数据库的 1250 个 fMRI 数据。我们探索了早期视觉皮层中中央和外周视觉场之间以及背侧和腹侧流两个视觉通路之间的时间滞后模式。我们还将滞后模式与动态因果建模获得的有效连接进行了比较。我们发现,早期视觉皮层中的滞后结构从中央流向外周视觉场,滞后结构的顺序与视觉通路上信号流的顺序一致。动态因果建模计算的有效连接表现出与滞后结构结果相似的模式。这项研究表明,视觉流中的信号流可能是人类视觉皮层滞后结构的来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad80/6414616/b282bdd9f7c5/41598_2019_40728_Fig1_HTML.jpg

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