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额顶叶网络重构支持推理能力的发展。

Fronto-Parietal Network Reconfiguration Supports the Development of Reasoning Ability.

作者信息

Wendelken Carter, Ferrer Emilio, Whitaker Kirstie J, Bunge Silvia A

出版信息

Cereb Cortex. 2016 May;26(5):2178-90. doi: 10.1093/cercor/bhv050. Epub 2015 Mar 30.

Abstract

The goal of this fMRI study was to examine how well developmental improvements in reasoning ability can be explained by changes in functional connectivity between specific nodes in prefrontal and parietal cortices. To this end, we examined connectivity within the lateral fronto-parietal network (LFPN) and its relation to reasoning ability in 132 children and adolescents aged 6-18 years, 56 of whom were scanned twice over the course of 1.5 years. Developmental changes in strength of connections within the LFPN were most prominent in late childhood and early adolescence. Reasoning ability was related to functional connectivity between left rostrolateral prefrontal cortex (RLPFC) and inferior parietal lobule (IPL), but only among 12-18-year olds. For 9-11-year olds, reasoning ability was most strongly related to connectivity between left and right RLPFC; this relationship was mediated by working memory. For 6-8-year olds, significant relationships between connectivity and performance were not observed; in this group, processing speed was the primary mediator of improvement in reasoning ability. We conclude that different connections best support reasoning at different points in development and that RLPFC-IPL connectivity becomes an important predictor of reasoning during adolescence.

摘要

这项功能磁共振成像(fMRI)研究的目的是探究前额叶和顶叶皮质特定节点之间功能连接的变化能在多大程度上解释推理能力的发育改善情况。为此,我们研究了132名6至18岁儿童和青少年的外侧额顶网络(LFPN)内的连接性及其与推理能力的关系,其中56人在1.5年的时间里接受了两次扫描。LFPN内连接强度的发育变化在童年晚期和青春期早期最为显著。推理能力与左侧额前外侧皮质(RLPFC)和顶下小叶(IPL)之间的功能连接有关,但仅在12至18岁的人群中如此。对于9至11岁的儿童,推理能力与左右RLPFC之间的连接最为密切;这种关系由工作记忆介导。对于6至8岁的儿童,未观察到连接性与表现之间的显著关系;在这个年龄段,处理速度是推理能力提高的主要介导因素。我们得出结论,在发育的不同阶段,不同的连接对推理的支持效果最佳,并且RLPFC-IPL连接性在青春期成为推理的重要预测指标。

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