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在青少年时期,局部皮质活动的发育去相关支持高维编码和工作记忆。

Developmental decorrelation of local cortical activity through adolescence supports high-dimensional encoding and working memory.

作者信息

Calabro Finnegan J, LeCroy Dylan, Foran Will, Sydnor Valerie J, Parr Ashley C, Constantinidis Christos, Luna Beatriz

机构信息

Department of Psychiatry, University of Pittsburgh, Pittsburgh, PA, United States; Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, United States.

Department of Psychology, University of Pittsburgh, Pittsburgh, PA, United States.

出版信息

Dev Cogn Neurosci. 2025 Mar 4;73:101541. doi: 10.1016/j.dcn.2025.101541.

Abstract

Adolescence is a key period for the maturation of cognitive control during which cortical circuitry is refined through processes such as synaptic pruning, but how these refinements modulate local functional dynamics to support cognition remains only partially characterized. Here, we used data from a longitudinal, adolescent cohort (N = 134 individuals ages 10-31 years, N = 202 total sessions) that completed MRI scans at ultra-high field (7 Tesla). We used resting state fMRI data to compute surface-based regional homogeneity (ReHo)-a measure of time-dependent correlations in fMRI activity between a vertex and its immediate neighbors-as an index of local functional connectivity across the cortex. We found widespread decreases in ReHo, suggesting increasing heterogeneity and specialization of functional circuits through adolescence. Decreases in ReHo included a spatial component which overlapped with sensorimotor and cingulo-opercular networks, in which ReHo decreases were associated with developmental stabilization of working memory performance. We show that decreases in ReHo are associated with higher intrinsic coding dimensionality, demonstrating how functional specialization of these circuits may confer computational benefits by facilitating increased capacity for encoding information. These results suggest a remodeling of cortical activity in adolescence through which local functional circuits become increasingly specialized, higher-dimensional, and more capable of supporting adult-like cognitive functioning.

摘要

青春期是认知控制成熟的关键时期,在此期间,皮质回路通过突触修剪等过程得到优化,但这些优化如何调节局部功能动态以支持认知仍未完全明确。在此,我们使用了来自一个纵向青少年队列(N = 134名年龄在10 - 31岁之间的个体,共202次扫描)的数据,该队列在超高场强(7特斯拉)下完成了MRI扫描。我们使用静息态功能磁共振成像数据来计算基于表面的区域一致性(ReHo)——一种衡量顶点与其直接相邻区域之间功能磁共振成像活动中时间依赖性相关性的指标——作为整个皮质局部功能连接性的指标。我们发现ReHo普遍下降,这表明在青春期功能回路的异质性和专业化程度在增加。ReHo的下降包括一个空间成分,该成分与感觉运动网络和扣带回 - 脑岛网络重叠,其中ReHo的下降与工作记忆表现的发育稳定有关。我们表明,ReHo的下降与更高的内在编码维度相关,这表明这些回路的功能专业化如何通过促进增加信息编码能力来带来计算优势。这些结果表明青春期皮质活动的重塑,通过这一过程,局部功能回路变得越来越专业化、具有更高维度,并且更有能力支持类似成人的认知功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9031/11951985/0dcc8c54907a/gr1.jpg

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