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首页> 外文期刊>NeuroImage >Monochromatic Ultra-Slow (-0.1 Hz) Oscillations in the human electroencephalogram and their relation to hemodynamics
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Monochromatic Ultra-Slow (-0.1 Hz) Oscillations in the human electroencephalogram and their relation to hemodynamics

机译:脑电图中的单色超慢(-0.1 Hz)振荡及其与血流动力学的关系

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摘要

Previous studies demonstrated the presence of Monochromatic Ultra-Slow Oscillations (MUSO) in human EEC In the present study we explored the biological origin of MUSO by simultaneous recordings of EEG, Near-Infrared Spectroscopy (MRS), arterial blood pressure, respiration and Laser Doppler flowmetry. We used a head-up tilt test in order to check whether MUSO might relate to Mayer waves in arterial blood pressure, known to be enhanced by the tilting procedure. MUSO were detected in 8 out of 10 subjects during rest and showed a striking monochromatic spectrum (0.07-0.14 Hz). The spatial topography of MUSO was complex, showing multiple foci variable across subjects. While the head-up tilt test increased the relative power of Mayer waves, it had no effect on MUSO. On the other hand, the relative spectral power of 0.1 Hz oscillations in EEG, NIRS and blood pressure signals were positively correlated across subjects in the tilted condition. Eight subjects showed a coherence between MUSO and NIRS/arterial blood pressure. Moreover, MUSO at different electrode sites demonstrated coherence not reducible to volume conduction, thus indicating that MUSO are unlikely to be generated by one source. We related our experimental findings to known biological phenomena being generated at about 0.1 Hz, i.e.: arterial blood pressure, cerebral and skin vasomotion, respiration and neuronal activity. While no definite conclusion can yet be drawn as to an exact physiological mechanism of MUSO, we suggest that these oscillations might be of a rather extraneuronal origin reflecting cerebral vasomotion.
机译:先前的研究表明人类EEC中存在单色超慢振荡(MUSO)。在本研究中,我们通过同时记录EEG,近红外光谱(MRS),动脉血压,呼吸和激光多普勒探查了MUSO的生物学起源。流量计。为了检查MUSO是否与可能因倾斜程序而增强的Mayer动脉血压有关,我们使用了抬头倾斜测试。在休息期间,在10名受试者中有8名检测到MUSO,并显示出惊人的单色光谱(0.07-0.14 Hz)。 MUSO的空间地形很复杂,显示了跨受试者的多个病灶变量。抬头倾斜测试虽然增加了Mayer波的相对功率,但对MUSO没有影响。另一方面,在倾斜状态下,整个受试者的EEG,NIRS和血压信号中0.1 Hz振荡的相对频谱功率呈正相关。八名受试者表现出MUSO与NIRS /动脉血压之间的一致性。此外,在不同电极位置的MUSO表现出无法降低体积传导的相干性,因此表明MUSO不太可能由一种来源生成。我们将实验结果与大约0.1 Hz处产生的已知生物学现象相关联,即:动脉血压,大脑和皮肤的血管运动,呼吸作用和神经元活动。尽管尚无关于MUSO确切生理机制的确切结论,但我们建议这些振荡可能是神经外神经元起源,反映了脑血管运动。

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