腹侧注意力网络连接与皮层成熟和儿童期认知能力有关

IF 21.2 1区 医学 Q1 NEUROSCIENCES
Hao-Ming Dong, Xi-Han Zhang, Loïc Labache, Shaoshi Zhang, Leon Qi Rong Ooi, B. T. Thomas Yeo, Daniel S. Margulies, Avram J. Holmes, Xi-Nian Zuo
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引用次数: 0

摘要

人脑在童年和青春期经历了功能性变化,从锚定在感觉运动和视觉区域的组织框架转变为通过与后期成熟的联想皮层相互作用而达到平衡的组织框架。在这里,我们通过独立的数据集将这种功能重组与腹侧注意网络连接的发展联系起来。我们证明,皮层组织的成熟变化优先与腹侧注意网络的网络内连接性和度中心性的提高相关联,而网络连接顶点内的连接性可预测认知能力。这种连通性与皮层组织的成熟完善密切相关。腹侧注意力网络连通性低的儿童表现出类似青少年的地形特征,这表明注意力系统可能与理解大脑功能如何在整个发育过程中得到完善有关。这些数据表明,在整个儿童期和青春期,注意力网络在支持大脑皮层组织和认知随年龄变化的过程中扮演着重要角色。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ventral attention network connectivity is linked to cortical maturation and cognitive ability in childhood

Ventral attention network connectivity is linked to cortical maturation and cognitive ability in childhood

The human brain experiences functional changes through childhood and adolescence, shifting from an organizational framework anchored within sensorimotor and visual regions into one that is balanced through interactions with later-maturing aspects of association cortex. Here, we link this profile of functional reorganization to the development of ventral attention network connectivity across independent datasets. We demonstrate that maturational changes in cortical organization link preferentially to within-network connectivity and heightened degree centrality in the ventral attention network, whereas connectivity within network-linked vertices predicts cognitive ability. This connectivity is associated closely with maturational refinement of cortical organization. Children with low ventral attention network connectivity exhibit adolescent-like topographical profiles, suggesting that attentional systems may be relevant in understanding how brain functions are refined across development. These data suggest a role for attention networks in supporting age-dependent shifts in cortical organization and cognition across childhood and adolescence.

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来源期刊
Nature neuroscience
Nature neuroscience 医学-神经科学
CiteScore
38.60
自引率
1.20%
发文量
212
审稿时长
1 months
期刊介绍: Nature Neuroscience, a multidisciplinary journal, publishes papers of the utmost quality and significance across all realms of neuroscience. The editors welcome contributions spanning molecular, cellular, systems, and cognitive neuroscience, along with psychophysics, computational modeling, and nervous system disorders. While no area is off-limits, studies offering fundamental insights into nervous system function receive priority. The journal offers high visibility to both readers and authors, fostering interdisciplinary communication and accessibility to a broad audience. It maintains high standards of copy editing and production, rigorous peer review, rapid publication, and operates independently from academic societies and other vested interests. In addition to primary research, Nature Neuroscience features news and views, reviews, editorials, commentaries, perspectives, book reviews, and correspondence, aiming to serve as the voice of the global neuroscience community.
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