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探索睡眠剥夺对身体机能的影响:一项在高强度耐力运动背景下的脑电图研究

Exploring the Effects of Sleep Deprivation on Physical Performance: An EEG Study in the Context of High-Intensity Endurance.

作者信息

Zhao Shanguang, Alhumaid Majed M, Li Hai, Wei Xin, Chen Steve Shyh-Ching, Jiang Hongke, Gong Yuwu, Gu Yun, Qin Haiquan

机构信息

Department of Physical Education, Shanghai Maritime University, Shanghai, China.

Expert Workstation in Sichuan Province, Chengdu Jincheng College, Chengdu, China.

出版信息

Sports Med Open. 2025 Jan 23;11(1):4. doi: 10.1186/s40798-024-00807-4.

Abstract

BACKGROUND

While the effects of sleep deprivation on cognitive function are well-documented, its impact on high-intensity endurance performance and underlying neural mechanisms remains underexplored, especially in the context of search and rescue operations where both physical and mental performance are essential. This study examines the neurophysiological basis of sleep deprivation on high-intensity endurance using electroencephalography (EEG). In this crossover study, twenty firefighters were subjected to both sleep deprivation (SD) and normal sleep conditions, with each participant performing endurance treadmill exercise the following morning after each condition. EEG signals were recorded before and after high-intensity endurance exercise, and power spectrum analysis and functional connectivity analysis were performed on sleep related frequency bands rhythm: δ (0.5-4 Hz) and θ (4-8 Hz). The EEG power spectral and functional connectivity were measured by repeated measure analysis of variance.

RESULTS

The SD condition had an average sleep duration of 3.78 ± 0.69 h, while the duration for normal sleep was 7.63 ± 0.52 h. After high-intensity endurance exercise, the SD condition had a higher maximum heart rate (p < 0.05) and shorter exercise time (p < 0.05) than normal sleep. Compared with before exercise, the δ band in the left parietal lobe P7 channel increased significantly (p < 0.01), and the θ band in the central Cz channel and the left and right parietal lobe P7 and P8 channel increased significantly (p < 0.01 & p < 0 0.05) in SD and normal sleep conditions after exercise. After exercise, compared with normal sleep, the δ band power in occipital O1 and Oz channels and parietal P7 and TP7 channels in SD significantly decreased (p < 0.05 & p < 0.01); the power of the θ band decreased significantly in the occipital O1 channel, central CZ channel and the left and right parietal P7 and P8 channel (p < 0.05 & p < 0.01). Whole connectivity showed a significant increase (p = 0.001) in the δ band for the SD condition at post-exhaustion. Local connectivity analysis identified a localized network in the δ band with reduced (p < 0.001) post-exhaustion in the SD condition displaying inter-hemispheric differences in certain connections (FP1-CP4, T7-C4, T7-TP8, and O1-FT8) and intra-hemispheric (C3-CPz and Pz-P4) variations.

CONCLUSIONS

Sleep deprivation significantly reduced maximum endurance performance, indicating decreased neural activity in the central and parietal brain regions. Alterations in δ and θ frequency band power, along with disrupted connectivity, may highlight the neurophysiological basis underlying this decline.

摘要

背景

虽然睡眠剥夺对认知功能的影响已有充分记录,但其对高强度耐力表现及潜在神经机制的影响仍未得到充分研究,尤其是在搜救行动中,身体和心理表现都至关重要的情况下。本研究使用脑电图(EEG)来探究睡眠剥夺对高强度耐力的神经生理学基础。在这项交叉研究中,20名消防员分别经历了睡眠剥夺(SD)和正常睡眠条件,每个参与者在每种条件后的次日早晨进行耐力跑步机运动。在高强度耐力运动前后记录EEG信号,并对与睡眠相关的频段节律:δ(0.5 - 4Hz)和θ(4 - 8Hz)进行功率谱分析和功能连接分析。通过重复测量方差分析来测量EEG功率谱和功能连接性。

结果

睡眠剥夺条件下的平均睡眠时间为3.78±0.69小时,而正常睡眠的时长为7.63±0.52小时。在进行高强度耐力运动后,睡眠剥夺组的最高心率更高(p < 0.05),运动时间更短(p < 0.05)。与运动前相比,运动后睡眠剥夺组和正常睡眠组中,左顶叶P7通道的δ频段显著增加(p < 0.01),中央Cz通道以及左右顶叶P7和P8通道的θ频段显著增加(p < 0.01和p < 0.05)。运动后,与正常睡眠相比,睡眠剥夺组枕叶O1和Oz通道以及顶叶P7和TP7通道的δ频段功率显著降低(p < 0.05和p < 0.01);枕叶O1通道、中央CZ通道以及左右顶叶P7和P8通道的θ频段功率显著降低(p < 0.05和p < 0.01)。整体连接性显示,在力竭后睡眠剥夺组的δ频段有显著增加(p = 0.001)。局部连接性分析确定了一个δ频段的局部网络,在睡眠剥夺组力竭后其连接性降低(p < 0.001),在某些连接(FP1 - CP4、T7 - C4、T7 - TP8和O1 - FT8)以及半球内(C3 - CPz和Pz - P4)显示出半球间差异。

结论

睡眠剥夺显著降低了最大耐力表现,表明中枢和顶叶脑区的神经活动减少。δ和θ频段功率的改变以及连接性的破坏,可能突出了这种下降背后的神经生理学基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/699d/11757651/66777045572a/40798_2024_807_Fig1_HTML.jpg

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