Neuroelectrophysiological alteration associated with cognitive flexibility after 24 h sleep deprivation in adolescents

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Xirui Zhang , Shuqing Feng , Xiaochen Yang , Yunwen Peng , Mei Du , Rui Zhang , Jiashan Sima , Feng Zou , Xin Wu , Yufeng Wang , Xiaomeng Gao , Yanyan Luo , Meng Zhang
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Abstract

The cognitive neural mechanisms by which sleep deprivation affects cognitive flexibility are poorly understood. Therefore, the study investigated the neuroelectrophysiological basis of the effect of 24 h sleep deprivation on cognitive flexibility in adolescents. 72 participants (36 females, mean age ± SD=20.46 ± 2.385 years old) participated in the study and were randomly assigned to the sleep deprivation group and control group. They were instructed to complete a task switch paradigm, during which participants’ behavioral and electroencephalographic data were recorded. Behaviorally, there were significant between-group differences in accuracy. The results of event-related potential showed that the P2, N2 and P3 components had significant group effects or interaction effects. At the time–frequency level, there were statistically significant differences between the delta and theta bands. These results suggested that 24 h sleep deprivation affected problem-solving effectiveness rather than efficiency, mainly because it systematically impaired cognitive processing associated with cognitive flexibility.

青少年睡眠不足 24 小时后与认知灵活性相关的神经电生理变化。
人们对睡眠不足影响认知灵活性的认知神经机制知之甚少。因此,本研究调查了 24 小时睡眠剥夺对青少年认知灵活性影响的神经电生理基础。72名参与者(36名女性,平均年龄(± SD)=20.46±2.385岁)被随机分配到睡眠剥夺组和对照组。研究人员指导他们完成任务转换范式,并记录他们的行为和脑电数据。从行为上看,组间的准确性存在显著差异。事件相关电位结果显示,P2、N2 和 P3 成分具有显著的组间效应或交互效应。在时频水平上,δ波段和θ波段之间的差异具有统计学意义。这些结果表明,24 小时睡眠不足影响的是解决问题的效果而不是效率,主要是因为它系统性地损害了与认知灵活性相关的认知处理过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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