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健康年轻男性神经奖赏功能的昼夜差异

Time of Day Differences in Neural Reward Functioning in Healthy Young Men.

作者信息

Byrne Jamie E M, Hughes Matthew E, Rossell Susan L, Johnson Sheri L, Murray Greg

机构信息

Centre for Mental Health, Faculty Health, Arts and Design, Swinburne University, Hawthorn, Victoria 3122, Australia.

The Australian National Imaging Facility, and.

出版信息

J Neurosci. 2017 Sep 13;37(37):8895-8900. doi: 10.1523/JNEUROSCI.0918-17.2017. Epub 2017 Aug 21.

Abstract

Reward function appears to be modulated by the circadian system, but little is known about the neural basis of this interaction. Previous research suggests that the neural reward response may be different in the afternoon; however, the direction of this effect is contentious. Reward response may follow the diurnal rhythm in self-reported positive affect, peaking in the early afternoon. An alternative is that daily reward response represents a type of prediction error, with neural reward activation relatively high at times of day when rewards are unexpected (i.e., early and late in the day). The present study measured neural reward activation in the context of a validated reward task at 10.00 h, 14.00 h, and 19.00 h in healthy human males. A region of interest BOLD fMRI protocol was used to investigate the diurnal waveform of activation in reward-related brain regions. Multilevel modeling found, as expected, a highly significant quadratic time-of-day effect focusing on the left putamen ( < 0.001). Consistent with the "prediction error" hypothesis, activation was significantly higher at 10.00 h and 19.00 h compared with 14.00 h. It is provisionally concluded that the putamen may be particularly important in endogenous priming of reward motivation at different times of day, with the pattern of activation consistent with circadian-modulated reward expectancies in neural pathways (i.e., greater activation to reward stimuli at unexpected times of day). This study encourages further research into circadian modulation of reward and underscores the methodological importance of accounting for time of day in fMRI protocols. This is one of the first studies to use a repeated-measures imaging procedure to explore the diurnal rhythm of reward activation. Although self-reported reward (most often operationalized as positive affect) peaks in the afternoon, the present findings indicate that neural activation is lowest at this time. We conclude that the diurnal neural activation pattern may reflect a prediction error of the brain, where rewards at unexpected times (10.00 h and 19.00 h) elicit higher activation in reward brain regions than at expected (14.00 h) times. These data also have methodological significance, suggesting that there may be a time of day influence, which should be accounted for in neural reward studies.

摘要

奖励功能似乎受昼夜节律系统调节,但对于这种相互作用的神经基础却知之甚少。先前的研究表明,下午的神经奖励反应可能有所不同;然而,这种效应的方向存在争议。奖励反应可能遵循自我报告的积极情绪中的昼夜节律,在下午早些时候达到峰值。另一种观点是,每日奖励反应代表一种预测误差,在奖励出乎意料的时间段(即一天中的早晚),神经奖励激活相对较高。本研究在健康男性中于上午10点、下午2点和晚上7点,在一项经过验证的奖励任务背景下测量神经奖励激活情况。采用感兴趣区域BOLD功能磁共振成像协议来研究奖励相关脑区激活的昼夜波形。如预期的那样,多水平模型发现,聚焦于左侧壳核的昼夜时间效应呈高度显著的二次曲线(<0.001)。与“预测误差”假说一致,与下午2点相比,上午10点和晚上7点的激活显著更高。初步得出结论,壳核在一天中不同时间对奖励动机的内源性启动可能特别重要,其激活模式与神经通路中昼夜节律调节的奖励预期一致(即,在一天中意外时间对奖励刺激的激活更大)。本研究鼓励对奖励的昼夜节律调节进行进一步研究,并强调在功能磁共振成像协议中考虑时间因素的方法学重要性。这是首批使用重复测量成像程序来探索奖励激活昼夜节律的研究之一。尽管自我报告的奖励(最常表现为积极情绪)在下午达到峰值,但目前的研究结果表明,此时神经激活最低。我们得出结论,昼夜神经激活模式可能反映了大脑的预测误差,即意外时间(上午10点和晚上7点)的奖励比预期时间(下午2点)的奖励在奖励脑区引发更高的激活。这些数据也具有方法学意义,表明可能存在昼夜时间影响,在神经奖励研究中应予以考虑。

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