Sleep deprivation attenuates neural responses to outcomes from risky decision-making.

Psychophysiology Pub Date : 2024-04-01 Epub Date: 2023-10-31 DOI:10.1111/psyp.14465
Tianxin Mao, Zhuo Fang, Ya Chai, Yao Deng, Joy Rao, Peng Quan, Namni Goel, Mathias Basner, Bowen Guo, David F Dinges, Jianghong Liu, John A Detre, Hengyi Rao
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Abstract

Sleep loss impacts a broad range of brain and cognitive functions. However, how sleep deprivation affects risky decision-making remains inconclusive. This study used functional MRI to examine the impact of one night of total sleep deprivation (TSD) on risky decision-making behavior and the underlying brain responses in healthy adults. In this study, we analyzed data from N = 56 participants in a strictly controlled 5-day and 4-night in-laboratory study using a modified Balloon Analogue Risk Task. Participants completed two scan sessions in counter-balanced order, including one scan during rested wakefulness (RW) and another scan after one night of TSD. Results showed no differences in participants' risk-taking propensity and risk-induced activation between RW and TSD. However, participants showed significantly reduced neural activity in the anterior cingulate cortex and bilateral insula for loss outcomes, and in bilateral putamen for win outcomes during TSD compared with RW. Moreover, risk-induced activation in the insula negatively correlated with participants' risk-taking propensity during RW, while no such correlations were observed after TSD. These findings suggest that sleep loss may impact risky decision-making by attenuating neural responses to decision outcomes and impairing brain-behavior associations.

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睡眠不足会减弱神经对风险决策结果的反应。
睡眠不足会影响广泛的大脑和认知功能。然而,睡眠不足如何影响风险决策仍然没有定论。这项研究使用功能性MRI检查了一晚完全睡眠剥夺(TSD)对健康成年人危险决策行为和潜在大脑反应的影响。在这项研究中,我们分析了来自 = 56名参与者参与了一项严格控制的5天4夜的实验室研究,该研究使用了改良的气球模拟风险任务。参与者按反平衡顺序完成了两次扫描,包括一次在休息清醒(RW)期间进行的扫描和一晚TSD后进行的另一次扫描。结果显示,RW和TSD在参与者的冒险倾向和风险诱导激活方面没有差异。然而,与RW相比,参与者在TSD期间前扣带皮层和双侧岛叶的神经活动显著减少,而在双侧壳核的神经活动则显著减少。此外,风险诱导的岛叶激活与参与者在RW期间的冒险倾向呈负相关,而在TSD后未观察到这种相关性。这些发现表明,睡眠不足可能会削弱神经对决策结果的反应,损害大脑行为关联,从而影响风险决策。
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