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Slow spontaneous hemodynamic oscillations during sleep measured with near-infrared spectroscopy

机译:用近红外光谱法测量睡眠中缓慢的自发性血流动力学振荡

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Spontaneous cerebral hemodynamic oscillations below 100 mHz reflect the level of cerebral activity, modulate hemodynamic responses to tasks and stimuli, and may aid in detecting various pathologies of the brain. Near-infrared spectroscopy (NIRS) is ideally suited for both measuring spontaneous hemodynamic oscillations and monitoring sleep, but little research has been performed to combine these two applications. We analyzed 30 all-night NIRS-electroencephalography (EEG) sleep recordings to investigate spontaneous hemodynamic activity relative to sleep stages determined by polysomnography. Signal power of hemodynamic oscillations in the low-frequency (LF, 40-150 mHz) and very-low-frequency (VLF, 3-40 mHz) bands decreased in slow-wave sleep (SWS) compared to light sleep (LS) and rapid-eye-movement (REM) sleep. No statistically significant (p < 0.05) differences in oscillation power between LS and REM were observed. However, the period of VLF oscillations around 8 mHz increased in REM sleep in line with earlier studies with other modalities. These results increase our knowledge of the physiology of sleep, complement EEG data, and demonstrate the applicability of NIRS to studying spontaneous hemodynamic fluctuations during sleep
机译:低于100 mHz的自发性脑血流动力学振荡反映了脑部活动的水平,调节了对任务和刺激的血流动力学响应,并可能有助于检测脑部各种病理。近红外光谱(NIRS)非常适合测量自发性血流动力学振荡和监测睡眠,但是很少有研究将这两种应用结合起来。我们分析了30个通宵的NIRS脑电图(EEG)睡眠记录,以调查与多导睡眠图测定的睡眠阶段相关的自发性血液动力学活动。与轻度睡眠(LS)和低速睡眠(LS)相比,慢波睡眠(SWS)的低频(LF,40-150 mHz)和甚低频(VLF,3-40 mHz)波段的血液动力振荡的信号功率降低快速眼动(REM)睡眠。 LS和REM之间没有观察到统计学上显着(p <0.05)的振荡功率差异。但是,REM睡眠中VLF振荡的周期在8 mHz附近增加,这与其他方法的早期研究一致。这些结果增加了我们对睡眠生理的认识,补充了脑电图数据,并证明了NIRS在研究睡眠期间自发性血流动力学波动中的适用性

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