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额纹状体网络在青少年期经历遵循腹背梯度的功能特化:发育轨迹及纵向关联

Frontostriatal Networks Undergo Functional Specialization During Adolescence that Follows a Ventral-Dorsal Gradient: Developmental Trajectories and Longitudinal Associations.

作者信息

Klein Samuel D, Collins Paul F, Lozano-Wun Vanessa, Grund Peter, Luciana Monica

机构信息

University of Minnesota-Twin Cities Department of Psychology, Elliot Hall, 75 E River Road, Minneapolis, MN.

Masonic Institute for the Developing Brain, 2025 E River Pkwy, Minneapolis, MN, USA.

出版信息

J Neurosci. 2025 Mar 10;45(15). doi: 10.1523/JNEUROSCI.1233-23.2025.

Abstract

Seminal studies in animal neuroscience demonstrate that frontostriatal circuits exhibit a ventral-dorsal functional gradient to integrate neural functions related to reward processing and cognitive control. Prominent neurodevelopmental models posit that heightened reward-seeking and risk-taking during adolescence result from maturational imbalances between frontostriatal neural systems underlying reward processing and cognitive control. The present study investigated whether the development of ventral (VS) and dorsal (DS) striatal resting-state connectivity (rsFC) networks along this proposed functional gradient relates to putative imbalances between reward and executive systems posited by a dual neural systems theory of adolescent development. 163 participants aged 11-25 years (54% female, 90% white) underwent resting scans at baseline and biennially thereafter, yielding 339 scans across four assessment waves. We observed developmental increases in VS rsFC with brain areas implicated in reward processing (e.g., subgenual cingulate gyrus and medial orbitofrontal cortex) and concurrent decreases with areas implicated in executive function (e.g., ventrolateral and dorsolateral prefrontal cortices). DS rsFC exhibited the opposite pattern. More rapid developmental increases in VS rsFC with reward areas were associated with developmental improvements in reward-based decision making, whereas increases in DS rsFC with executive function areas were associated with improved executive function, though each network exhibited some crossover in function. Collectively, these findings suggest that typical adolescent neurodevelopment is characterized by a divergence in ventral and dorsal frontostriatal connectivity that may relate to developmental improvements in affective decision-making and executive function. Anatomical studies in nonhuman primates demonstrate that frontostriatal circuits are essential for integration of neural functions underlying reward processing and cognition, with human neuroimaging studies linking alterations in these circuits to psychopathology. The present study characterized the developmental trajectories of frontostriatal resting state networks from childhood to young adulthood. We demonstrate that ventral and dorsal aspects of the striatum exhibit distinct age-related changes that predicted developmental improvements in reward-related decision making and executive function. These results highlight that adolescence is characterized by distinct changes in frontostriatal networks that may relate to normative increases in risk-taking. Atypical developmental trajectories of frontostriatal networks may contribute to adolescent-onset psychopathology.

摘要

动物神经科学领域的开创性研究表明,额纹状体回路呈现出腹侧-背侧功能梯度,以整合与奖励处理和认知控制相关的神经功能。著名的神经发育模型认为,青少年时期寻求奖励和冒险行为的增加是由于奖励处理和认知控制背后的额纹状体神经系统之间成熟失衡所致。本研究调查了沿着这一假定功能梯度的腹侧(VS)和背侧(DS)纹状体静息态连接(rsFC)网络的发育是否与青少年发育双神经系统理论提出的奖励系统和执行系统之间的假定失衡有关。163名年龄在11 - 25岁之间的参与者(54%为女性,90%为白人)在基线时进行了静息扫描,此后每两年进行一次,在四个评估阶段共获得339次扫描。我们观察到VS rsFC与参与奖励处理的脑区(如膝下扣带回和内侧眶额皮质)的发育增加,同时与参与执行功能的脑区(如腹外侧和背外侧前额叶皮质)的发育减少。DS rsFC呈现相反的模式。VS rsFC与奖励区域的发育增加更快与基于奖励的决策的发育改善相关,而DS rsFC与执行功能区域的增加与执行功能改善相关,尽管每个网络在功能上都有一些交叉。总体而言,这些发现表明,典型的青少年神经发育的特征是腹侧和背侧额纹状体连接的差异,这可能与情感决策和执行功能的发育改善有关。对非人类灵长类动物的解剖学研究表明,额纹状体回路对于整合奖励处理和认知背后的神经功能至关重要,人类神经影像学研究将这些回路的改变与精神病理学联系起来。本研究描述了从童年到青年期额纹状体静息状态网络的发育轨迹。我们证明,纹状体的腹侧和背侧方面表现出与年龄相关的不同变化,这些变化预测了与奖励相关的决策和执行功能的发育改善。这些结果突出表明,青少年的特征是额纹状体网络的明显变化,这可能与冒险行为的规范性增加有关。额纹状体网络的非典型发育轨迹可能导致青少年期精神病理学。

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