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Hemispheric asymmetry and homotopy of resting state functional connectivity correlate with visuospatial abilities in school-age children

机译:休息状态功能连通性的半球不对称和同型偶像与学龄儿童的探测能力相关联

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摘要

Hemispheric specialization of cognitive functions is a developmental process that shapes the brain from the gestational stage to adulthood. Functional connectivity of the resting brain has been largely used to infer the hemispheric organization of the spontaneous brain activity. In particular, two main properties have been largely explored throughout development: hemispheric asymmetry of functional connectivity and homotopic functional connectivity. However, their relation with specific cognitive processes typically associated with hemispheric specialization, such as visuospatial abilities, remains largely unexplored. Such relationships could be particularly relevant for the quest of developmental cognitive biomarkers in childhood, a significant maturation period of visuospatial abilities. Moreover, the relation between asymmetry and homotopy of brain functional connectivity is not well understood. We have examined these two properties in a sample of 60 typically developing children between 6 and 10 years of age, and explored their relation with visuospatial abilities. First, we identified a strong negative relation between homotopy and asymmetry across the brain. In addition, these properties showed areas in the posterior portion of the brain, with significant correlation with performance in visual memory and visual attention tasks. These results highlight the relevance of the hemispheric organization of spontaneous brain activity for developmental cognition, particularly for visuospatial abilities.
机译:认知功能的半球专业是一种发展过程,将大脑从妊娠期到成年期塑造。静息大脑的功能连接主要用于推断出自发脑活动的半球组织。特别是,在整个开发过程中已经大大探索了两个主要性质:功能性连通性和同型功能性连接的半球不对称。然而,它们与通常与半球专业化相关的特定认知过程的关系,例如探测能力,仍然很大程度上是未开发的。这种关系可能特别相关,对于儿童时期的发育认知生物标志物,具有显着成熟期的探测能力的追求。此外,不太了解脑功能连接的不对称性和同型统一性的关系。我们已在60名典型发展中型儿童6至10岁之间的样本中审查了这两个性质,并探讨了与探测能力的关系。首先,我们鉴定了统计统一和脑中的不对称之间的强烈消极关系。此外,这些属性显示了大脑后部的区域,与视觉记忆和视觉注意任务中的性能显着相关。这些结果突出了半球组织自发性大脑活动对发育认知的相关性,特别是对于探测能力。

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