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P2波幅降低反映了12小时低稳态睡眠压力诱导的大脑执行功能受损:一项事件相关电位研究的证据。

Decreased P2 Waveform Reflects Impaired Brain Executive Function Induced by 12 h of Low Homeostatic Sleep Pressure: Evidence From an Event-Related Potential Study.

作者信息

Zeng Lingjing, Wu Haijing, Li Jialu, Wang Haiteng, Xie Songyue, Yang Tianyi, Peng Ziyi, Zhang Liwei, Shao Yongcong, Lv Jing

机构信息

School of Psychology, Beijing Sport University, Beijing, China.

Sichuan Cancer Hospital and Institute, Sichuan Cancer Center, School of Medicine, University of Electronic Science and Technology of China, Chengdu, China.

出版信息

Front Neurosci. 2021 Mar 24;15:599919. doi: 10.3389/fnins.2021.599919. eCollection 2021.

Abstract

Homeostatic sleep pressure can cause cognitive impairment, in which executive function is the most affected. Previous studies have mainly focused on high homeostatic sleep pressure (long-term sleep deprivation); thus, there is still little related neuro-psycho-physiological evidence based on low homeostatic sleep pressure (12 h of continuous wakefulness) that affects executive function. This study aimed to investigate the impact of lower homeostatic sleep pressure on executive function. Our study included 14 healthy young male participants tested using the Go/NoGo task in normal resting wakefulness (10:00 am) and after low homeostatic sleep pressure (10:00 pm). Behavioral data (response time and accuracy) were collected, and electroencephalogram (EEG) data were recorded simultaneously, using repeated measures analysis of variance for data analysis. Compared with resting wakefulness, the participants' response time to the Go stimulus was shortened after low homeostatic sleep pressure, and the correct response rate was reduced. Furthermore, the peak amplitude of Go-P2 decreased significantly, and the peak latency did not change significantly. For NoGo stimulation, the peak amplitude of NoGo-P2 decreased significantly ( < 0.05), and the peak latency was significantly extended ( < 0.05). Thus, the P2 wave is likely related to the attention and visual processing and reflects the early judgment of the perceptual process. Therefore, the peak amplitude of Go-P2 and NoGo-P2 decreased, whereas the peak latency of NoGo-P2 increased, indicating that executive function is impaired after low homeostatic sleep pressure. This study has shown that the P2 wave is a sensitive indicator that reflects the effects of low homeostatic sleep pressure on executive function, and that it is also an important window to observe the effect of homeostatic sleep pressure and circadian rhythm on cognitive function.

摘要

内稳态睡眠压力可导致认知障碍,其中执行功能受影响最为严重。以往研究主要聚焦于高内稳态睡眠压力(长期睡眠剥夺);因此,基于低内稳态睡眠压力(连续清醒12小时)影响执行功能的相关神经心理生理学证据仍然很少。本研究旨在探讨较低的内稳态睡眠压力对执行功能的影响。我们的研究纳入了14名健康年轻男性参与者,在正常静息清醒状态(上午10:00)和低内稳态睡眠压力后(晚上10:00)使用Go/NoGo任务进行测试。收集行为数据(反应时间和准确性),并同时记录脑电图(EEG)数据,采用重复测量方差分析进行数据分析。与静息清醒状态相比,低内稳态睡眠压力后参与者对Go刺激的反应时间缩短,正确反应率降低。此外,Go-P2的峰值幅度显著降低,峰值潜伏期无显著变化。对于NoGo刺激,NoGo-P2的峰值幅度显著降低(<0.05),峰值潜伏期显著延长(<0.05)。因此,P2波可能与注意力和视觉处理有关,反映了感知过程的早期判断。所以,Go-P2和NoGo-P2的峰值幅度降低,而NoGo-P2的峰值潜伏期增加,表明低内稳态睡眠压力后执行功能受损。本研究表明,P2波是反映低内稳态睡眠压力对执行功能影响的敏感指标,也是观察内稳态睡眠压力和昼夜节律对认知功能影响的重要窗口。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea0f/8024631/0406c79a3b21/fnins-15-599919-g001.jpg

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