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Brain structural and functional connectivity converge prenatally but diverge after birth

· 2026-09-09 · 原文

DOI:10.1371/journal.pbio.3003927

by Ruoke Zhao, Mingyang Li, Yuqi Zhang, Ruike Chen, Chenglin Ning, Zhiyong Zhao, Zhihan Yan, Meihao Wang, Dan Wu Brain anatomical architecture supports its functional activity and complex cognitive processes. However, how the structure–function (SF) relationship establishes and develops during early life, as well as its underlying mechanisms, remain largely unclear. To address these questions, we leveraged multimodal MRI data from two large-scale public databases, the developing Human Connectome Project (dHCP) and the Baby Connectome Project (BCP), to characterize the spatiotemporal dynamics of SF coupling from the perinatal period to toddlerhood. Our results revealed that SF coupling at birth exhibited a spatial variation along the sensorimotor-association cortical axis. During the perina

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1. 人话版

by Ruoke Zhao, Mingyang Li, Yuqi Zhang, Ruike Chen, Chenglin Ning, Zhiyong Zhao, Zhihan Yan, Meihao Wang, Dan Wu Brain anatomical architecture supports its functional activity and complex cognitive processes.

However, how the structure–function (SF) relationship establishes and develops during early life, as well as its underlying mechanisms, remain largely unclear.

2. 领域脉络

To address these questions, we leveraged multimodal MRI data from two large-scale public databases, the developing Human Connectome Project (dHCP) and the Baby Connectome Project (BCP), to characterize the spatiotemporal dynamics of SF coupling from the perinatal period to toddlerhood.

3. 机制拆解

Our results revealed that SF coupling at birth exhibited a spatial variation along the sensorimotor-association cortical axis.

During the perina

4. 证据与数字

摘要未给出量化结果——留意原文的实验与数据。

5. 反例与边界

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6. 跨领域连接与意外收获

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7. 可复用方法

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8. 术语表

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