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时空脑血流动力学是人类婴儿期边缘-感觉运动-联合皮质梯度出现的基础。

Spatiotemporal cerebral blood flow dynamics underlies emergence of the limbic-sensorimotor-association cortical gradient in human infancy.

作者信息

Ouyang Minhui, Detre John A, Hyland Jessica L, Sindabizera Kay L, Kuschner Emily S, Edgar J Christopher, Peng Yun, Huang Hao

机构信息

Department of Radiology, Children's Hospital of Philadelphia, 3401 Civic Center Boulevard, Philadelphia, PA, 19104, United States.

Department of Radiology, Perelman School of Medicine, University of Pennsylvania, 3400 Spruce Street, Philadelphia, PA 19104, United States.

出版信息

Res Sq. 2024 Aug 8:rs.3.rs-4761517. doi: 10.21203/rs.3.rs-4761517/v1.

Abstract

Infant cerebral blood flow (CBF) delivers nutrients and oxygen to fulfill brain energy consumption requirements for the fastest period of postnatal brain development across the lifespan. However, organizing principle of whole-brain CBF dynamics during infancy remains obscure. Leveraging a unique cohort of 100+ infants with high-resolution arterial spin labeled MRI, we found the emergence of the cortical hierarchy revealed by the highest-resolution infant CBF maps available to date. Infant CBF across cortical regions increased in a biphasic pattern with initial rapid and sequentially slower rate, with break-point ages increasing along the limbic-sensorimotor-association cortical gradient. Increases in CBF in sensorimotor cortices were associated with enhanced language and motor skills, and frontoparietal association cortices for cognitive skills. The study discovered emergence of the hierarchical limbic-sensorimotor-association cortical gradient in infancy, and offers standardized reference of infant brain CBF and insight into the physiological basis of cortical specialization and real-world infant developmental functioning.

摘要

婴儿脑血流量(CBF)输送营养物质和氧气,以满足整个生命周期中出生后大脑发育最快阶段的脑能量消耗需求。然而,婴儿期全脑CBF动力学的组织原则仍不清楚。利用100多名婴儿的独特队列进行高分辨率动脉自旋标记MRI,我们发现了迄今为止可用的最高分辨率婴儿CBF图谱所揭示的皮质层级的出现。跨皮质区域的婴儿CBF以双相模式增加,初始速度快,随后速度减慢,断点年龄沿边缘-感觉运动-联合皮质梯度增加。感觉运动皮质中CBF的增加与语言和运动技能的增强有关,而额顶联合皮质中CBF的增加与认知技能有关。该研究发现了婴儿期分层的边缘-感觉运动-联合皮质梯度的出现,并提供了婴儿脑CBF的标准化参考,以及对皮质特化的生理基础和现实世界中婴儿发育功能的深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/111e/11326418/97f97fab8cf3/nihpp-rs4761517v1-f0001.jpg

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