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处理 fMRI 相关焦虑和大脑与身体之间的信息流动揭示了以 0.15/0.16 Hz 为优势的振荡。

Processing of fMRI-related anxiety and information flow between brain and body revealed a preponderance of oscillations at 0.15/0.16 Hz.

机构信息

Institute of Neural Engineering, Graz University of Technology, Graz, Austria.

Nalecz Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, Ks. Trojdena 4 St., 02-109, Warsaw, Poland.

出版信息

Sci Rep. 2022 Jun 1;12(1):9117. doi: 10.1038/s41598-022-13229-7.

Abstract

Slow oscillations of different center frequencies and their coupling play an important role in brain-body interactions. The crucial question analyzed by us is, whether the low frequency (LF) band (0.05-0.15 Hz) or the intermediate frequency (IMF) band (0.1-0.2 Hz) is more eminent in respect of the information flow between body (heart rate and respiration) and BOLD signals in cortex and brainstem. A recently published study with the LF band in fMRI-naïve subjects revealed an intensive information flow from the cortex to the brainstem and a weaker flow from the brainstem to the cortex. The comparison of both bands revealed a significant information flow from the middle frontal gyrus (MFG) to the precentral gyrus (PCG) and from brainstem to PCG only in the IMF band. This pattern of directed coupling between slow oscillations in the cortex and brainstem not only supports the existence of a pacemaker-like structure in brainstem, but provides first evidence that oscillations centered at 0.15/0.16 Hz can also emerge in brain networks. BOLD oscillations in resting states are dominating at ~ 0.08 Hz and respiratory rates at ~ 0.32 Hz. Therefore, the frequency component at ~ 0.16 Hz (doubling-halving 0.08 Hz or 0.32 Hz) is of special interest, because phase coupled oscillations can reduce the energy demand.

摘要

不同中心频率的慢波振荡及其耦合在脑-体相互作用中起着重要作用。我们分析的关键问题是,低频(LF)带(0.05-0.15 Hz)还是中频(IMF)带(0.1-0.2 Hz)在身体(心率和呼吸)与皮层和脑干中的 BOLD 信号之间的信息流方面更为突出。最近一项针对 fMRI 新手的研究表明,LF 带在皮层到脑干之间存在强烈的信息流,而在脑干到皮层之间的信息流较弱。对这两个波段的比较显示,在 IMF 波段中,从中额前回(MFG)到中央前回(PCG)以及从脑干到 PCG 存在显著的信息流,而在 LF 波段中则没有。这种皮层和脑干慢波之间的定向耦合模式不仅支持脑干中存在类似起搏器的结构,而且首次提供了证据表明,以 0.15/0.16 Hz 为中心的振荡也可以出现在脑网络中。静息状态下的 BOLD 振荡主要集中在0.08 Hz,呼吸频率在0.32 Hz。因此,特别有趣的是频率分量在~0.16 Hz(0.08 Hz 或 0.32 Hz 的加倍减半),因为相位耦合振荡可以降低能量需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a474/9160010/8bbfad84fa64/41598_2022_13229_Fig1_HTML.jpg

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