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Heart rate variability rebound following exposure to persistent and repetitive sleep restriction

机译:暴露于持续和重复的睡眠限制后心率变异性反弹

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摘要

While it is well established that slow-wave sleep electroencephalography (EEG) rebounds following sleep deprivation, very little research has investigated autonomic nervous system recovery. We examined heart rate variability (HRV) and cardiovagal baroreflex sensitivity (BRS) during four blocks of repetitive sleep restriction and sequential nights of recovery sleep. Twenty-one healthy participants completed the 22-day in-hospital protocol. Following three nights of 8-hr sleep, they were assigned to a repetitive sleep restriction condition. Participants had two additional 8-hr recovery sleep periods at the end of the protocol. Sleep EEG, HRV, and BRS were compared for the baseline, the four blocks of sleep restriction, and the second (R2) and third (R3) nocturnal recovery sleep periods following the last sleep restriction block. Within the first hour of each sleep period, vagal activation, as indexed by increase in high frequency (HF; HRV spectrum analysis), showed a rapid increase, reaching its 24-hr peak. HF was more pronounced (rebound) in R2 than during baseline ( < 0.001). The BRS increased within the first hour of sleep and was higher across all sleep restriction blocks and recovery nights ( = 0.039). Rebound rapid eye movement sleep was observed during both R2 and R3 ( = 0.004), whereas slow-wave sleep did not differ between baseline and recovery nights ( > 0.05). Our results indicate that the restoration of autonomic homeostasis requires a time course that includes at least three nights, following an exposure to multiple nights of sleep curtailed to about half the normal nightly amount.
机译:虽然已经确定慢波睡眠脑电图(EEG)在睡眠剥夺后会反弹,但很少有研究调查自主神经系统的恢复。我们检查了四个重复性睡眠限制和恢复性睡眠的连续夜晚期间的心率变异性(HRV)和心室压力反射敏感性(BRS)。 21名健康参与者完成了为期22天的住院治疗方案。经过8个晚上的三小时睡眠,他们被分配到重复的睡眠限制条件。方案结束时,参与者还有两个额外的8小时恢复睡眠时间。比较了基线的睡眠EEG,HRV和BRS的睡眠限制,四个睡眠限制块以及最后一个睡眠限制块之后的第二个(R2)和第三个(R3)夜间恢复睡眠时间。在每个睡眠期的第一个小时内,迷走神经激活(以高频增加(HF; HRV频谱分析)为指标)显示出快速增加,达到其24小时峰值。与基线期间相比,R2中的HF更明显(反弹)(<0.001)。 BRS在睡眠的第一个小时内增加,并且在所有睡眠限制和恢复夜晚中都更高(= 0.039)。在R2和R3期间均观察到反弹的快速眼动睡眠(= 0.004),而基线和恢复夜之间的慢波睡眠没有差异(> 0.05)。我们的结果表明,恢复自主神经稳态需要一个时间过程,其中至少要包括三个晚上,之后要经历多个晚上的睡眠,睡眠时间减少到每晚正常数量的一半左右。

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