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从青春期前到青春期早期,对奖励效价和大小的神经反应。

Neural responses to reward valence and magnitude from pre- to early adolescence.

机构信息

Psychology Department, Yale University, United States; Psychiatry Department, Yale University, United States; School of Behavioral Sciences, Tel Aviv-Yaffo Academic College, Israel.

Psychiatry Department, Yale University, United States.

出版信息

Neuroimage. 2023 Jul 15;275:120166. doi: 10.1016/j.neuroimage.2023.120166. Epub 2023 May 12.

Abstract

BACKGROUND

Neural activation during reward processing is thought to underlie critical behavioral changes that take place during the transition to adolescence (e.g., learning, risk-taking). Though literature on the neural basis of reward processing in adolescence is booming, important gaps remain. First, more information is needed regarding changes in functional neuroanatomy in early adolescence. Another gap is understanding whether sensitivity to different aspects of the incentive (e.g., magnitude and valence) changes during the transition into adolescence. We used fMRI from a large sample of preadolescent children to characterize neural responses to incentive valence vs. magnitude during anticipation and feedback, and their change over a period of two years.

METHODS

Data were taken from the Adolescent Cognitive and Brain Development (ABCD®) study release 3.0. Children completed the Monetary Incentive Delay task at baseline (ages 9-10) and year 2 follow-up (ages 11-12). Based on data from two sites (N = 491), we identified activation-based Regions of Interest (ROIs; e.g., striatum, prefrontal regions, etc.) that were sensitive to trial type (win $5, win $0.20, neutral, lose $0.20, lose $5) during anticipation and feedback phases. Then, in an independent subsample (N = 1470), we examined whether these ROIs were sensitive to valence and magnitude and whether that sensitivity changed over two years.

RESULTS

Our results show that most ROIs involved in reward processing (including the striatum, prefrontal cortex, and insula) are specialized, i.e., mainly sensitive to either incentive valence or magnitude, and this sensitivity was consistent over a 2-year period. The effect sizes of time and its interactions were significantly smaller (0.002≤η≤0.02) than the effect size of trial type (0.06≤η≤0.30). Interestingly, specialization was moderated by reward processing phase but was stable across development. Biological sex and pubertal status differences were few and inconsistent. Developmental changes were mostly evident during success feedback, where neural reactivity increased over time.

CONCLUSIONS

Our results suggest sub-specialization to valence vs. magnitude within many ROIs of the reward circuitry. Additionally, in line with theoretical models of adolescent development, our results suggest that the ability to benefit from success increases from pre- to early adolescence. These findings can inform educators and clinicians and facilitate empirical research of typical and atypical motivational behaviors during a critical time of development.

摘要

背景

人们认为,在奖励处理过程中的神经激活是在向青春期过渡期间发生的关键行为变化的基础(例如,学习、冒险)。尽管关于青春期奖励处理的神经基础的文献正在蓬勃发展,但仍存在重要差距。首先,需要更多关于青少年早期功能性神经解剖结构变化的信息。另一个差距是了解在进入青春期期间,对激励的不同方面(例如,大小和效价)的敏感性是否会发生变化。我们使用来自大型青少年前儿童样本的 fMRI 来描述在预期和反馈期间对激励效价与大小的神经反应,并描述在两年期间的变化。

方法

数据来自青少年认知和大脑发育(ABCD®)研究 3.0 版。儿童在基线(9-10 岁)和两年后随访(11-12 岁)时完成了货币奖励延迟任务。基于来自两个地点的数据(N=491),我们确定了对试验类型(赢取 5 美元、赢取 0.20 美元、中性、输 0.20 美元、输 5 美元)敏感的基于激活的感兴趣区域(ROI;例如纹状体、前额叶区域等)。然后,在一个独立的子样本(N=1470)中,我们检查了这些 ROI 是否对效价和大小敏感,以及这种敏感性是否在两年内发生变化。

结果

我们的结果表明,奖励处理中涉及的大多数 ROI(包括纹状体、前额叶皮层和脑岛)是专门化的,即主要对激励的效价或大小敏感,并且这种敏感性在两年内是一致的。时间及其相互作用的效应大小明显小于试验类型的效应大小(0.002≤η≤0.02)(0.06≤η≤0.30)。有趣的是,专门化受到奖励处理阶段的调节,但在整个发展过程中是稳定的。生物学性别和青春期状态差异很少且不一致。发展变化主要在成功反馈期间显现,在此期间,神经反应随着时间的推移而增加。

结论

我们的结果表明,奖励回路中的许多 ROI 存在对效价与大小的亚专门化。此外,与青少年发展的理论模型一致,我们的结果表明,从青春期前到早期青春期,从成功中获益的能力会增加。这些发现可以为教育工作者和临床医生提供信息,并促进在发展的关键时期对典型和非典型动机行为的实证研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5821/10311119/7b25f2a436fd/nihms-1906426-f0001.jpg

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