Night shifts in interns: Effects of daytime napping on autonomic activity and cognitive function

午睡 认知 听力学 数字符号替换试验 睡眠剥夺对认知功能的影响 警惕(心理学) 基本认知任务 手指敲击 自主功能 心理学 医学 物理医学与康复 心率 心率变异性 内科学 神经科学 血压 安慰剂 替代医学 病理
作者
Jieyi Fan,Liang Wang,Xiaotian Yang,Xiangbo Zhang,Ziyao Song,Sifan Wu,Linru Zou,Xi Li,Xiaohu Zhao,Chenfei Li,Yikai Pan,Yateng Tie,Yongchun Wang,Zhengxue Luo,Xiang Sun
出处
期刊:Frontiers in Public Health [Frontiers Media SA]
卷期号:10 被引量:1
标识
DOI:10.3389/fpubh.2022.922716
摘要

Night shifts have adverse cognitive outcomes that might be attenuated by daytime napping. The neurovisceral integration model suggests that resting vagally mediated heart rate variability (vmHRV) is linked with cognitive function. This study investigated the relationship between resting vmHRV and cognitive function after different nap durations in interns after shift work.A total of 105 interns were randomly allocated to one of three groups (non-nap, n = 35; 15-min nap, n = 35; 45-min nap, n = 35) to perform cognitive tests and resting vmHRV at 12:00, 15:00 and 18:00. Information processing (digit symbol substitution test; DSST), motor speed (finger tapping test; FTT), response selection (choice reaction time; CRT), and attention shifts (shifting attention test; SAT) were assessed. Resting vmHRV was assessed at baseline and during each cognitive task across groups.Compared with the non-nap control, the 15-min and 45-min naps improved all outcome measures (including subjective sleepiness and cognitive performance) at 15:00, with some benefits maintained at 18:00. The 15-min nap produced significantly greater benefits on the FTT at 15:00 after napping than did the 45-min nap. Resting vmHRV was significantly correlated with DSST and SAT performance. In addition, FTT performance was the only significant predictor of DSST performance across different nap durations.Our results demonstrate links between daytime napping (in particular, a 15-min nap) and improved cognitive control in relation to autonomic activity after shift work in interns. These results indicated that autonomic activity when awake plays a crucial role in DSST and SAT performance and facilitated the understanding of differences in neurocognitive mechanisms underlying information processing after different nap durations.
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