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静息态大脑内源性前额叶 HbO2 与中央 EEGβ功率振荡的耦合。

Coupling between intrinsic prefrontal HbO2 and central EEG beta power oscillations in the resting brain.

机构信息

Institute for Knowledge Discovery, Laboratory of Brain-Computer Interfaces, Graz University of Technology, Graz, Austria.

出版信息

PLoS One. 2012;7(8):e43640. doi: 10.1371/journal.pone.0043640. Epub 2012 Aug 24.

Abstract

There is increasing interest in the intrinsic activity in the resting brain, especially that of ultraslow and slow oscillations. Using near-infrared spectroscopy (NIRS), electroencephalography (EEG), blood pressure (BP), respiration and heart rate recordings during 5 minutes of rest, combined with cross spectral and sliding cross correlation calculations, we identified a short-lasting coupling (duration [Formula: see text] s) between prefrontal oxyhemoglobin (HbO2) in the frequency band between 0.07 and 0.13 Hz and central EEG alpha and/or beta power oscillations in 8 of the 9 subjects investigated. The HbO2 peaks preceded the EEG band power peaks by 3.7 s in 6 subjects, with moderate or no coupling between BP and HbO2 oscillations. HbO2 and EEG band power oscillations were approximately in phase with BP oscillations in the 2 subjects with an extremely high coupling (squared coherence [Formula: see text]) between BP and HbO2 oscillation. No coupling was identified in one subject. These results indicate that slow precentral (de)oxyhemoglobin concentration oscillations during awake rest can be temporarily coupled with EEG fluctuations in sensorimotor areas and modulate the excitability level in the brains' motor areas, respectively. Therefore, this provides support for the idea that resting state networks fluctuate with frequencies of between 0.01 and 0.1 Hz (Mantini et.al. PNAS 2007).

摘要

人们对静息状态大脑的固有活动越来越感兴趣,尤其是极慢和慢振荡。我们使用近红外光谱(NIRS)、脑电图(EEG)、血压(BP)、呼吸和心率记录,在 5 分钟的休息时间内,结合交叉谱和滑动互相关计算,在 9 名被试中的 8 名中确定了短暂的耦合(持续时间[公式:见文本]s),在前额叶区去氧血红蛋白(HbO2)在 0.07 到 0.13 Hz 的频率带与中央 EEG 阿尔法和/或贝塔功率振荡之间。在 6 名被试中,HbO2 峰值比 EEG 波段功率峰值提前 3.7s,BP 和 HbO2 振荡之间的耦合适度或没有。在 2 名耦合极强(BP 和 HbO2 振荡的平方相干性[公式:见文本])的被试中,HbO2 和 EEG 波段功率振荡与 BP 振荡大致同相。在一名被试中未识别到耦合。这些结果表明,在清醒休息期间,缓慢的中央前(去)氧血红蛋白浓度振荡可以暂时与感觉运动区的 EEG 波动耦合,并分别调节大脑运动区的兴奋性水平。因此,这为静息状态网络以 0.01 到 0.1 Hz 的频率波动的观点提供了支持(Mantini 等人,PNAS 2007)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f931/3427164/6471c34edf86/pone.0043640.g001.jpg

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