Department of Forensic and Neurodevelopmental Sciences, Institute of Psychiatry, Psychology & Neuroscience, King's College London, London, SE5 8AF, United Kingdom.
Centre for the Developing Brain, School of Biomedical Engineering & Imaging Sciences, King's College London, London, SE1 7EH, United Kingdom.
Cereb Cortex. 2023 Apr 25;33(9):5585-5596. doi: 10.1093/cercor/bhac444.
Formation of the functional connectome in early life underpins future learning and behavior. However, our understanding of how the functional organization of brain regions into interconnected hubs (centrality) matures in the early postnatal period is limited, especially in response to factors associated with adverse neurodevelopmental outcomes such as preterm birth. We characterized voxel-wise functional centrality (weighted degree) in 366 neonates from the Developing Human Connectome Project. We tested the hypothesis that functional centrality matures with age at scan in term-born babies and is disrupted by preterm birth. Finally, we asked whether neonatal functional centrality predicts general neurodevelopmental outcomes at 18 months. We report an age-related increase in functional centrality predominantly within visual regions and a decrease within the motor and auditory regions in term-born infants. Preterm-born infants scanned at term equivalent age had higher functional centrality predominantly within visual regions and lower measures in motor regions. Functional centrality was not related to outcome at 18 months old. Thus, preterm birth appears to affect functional centrality in regions undergoing substantial development during the perinatal period. Our work raises the question of whether these alterations are adaptive or disruptive and whether they predict neurodevelopmental characteristics that are more subtle or emerge later in life.
早期生命中功能性连接组的形成是未来学习和行为的基础。然而,我们对于脑区如何在出生后早期形成相互连接的中枢(中枢性)的理解是有限的,特别是对于与不良神经发育结果相关的因素,如早产。我们对来自发育人类连接体计划的 366 名新生儿进行了体素水平的功能中枢性(加权度数)特征描述。我们检验了以下假设:足月出生的婴儿的功能中枢性随着扫描时的年龄而成熟,并且会被早产所破坏。最后,我们询问了新生儿的功能中枢性是否可以预测 18 个月时的一般神经发育结果。我们报告了与年龄相关的功能中枢性增加,主要是在视觉区域内,而在运动和听觉区域内则减少,这是在足月出生的婴儿中观察到的现象。在相当于足月年龄时扫描的早产儿,其功能中枢性主要在视觉区域内较高,而在运动区域内则较低。功能中枢性与 18 个月时的结果无关。因此,早产似乎会影响围产期内经历大量发育的区域的功能中枢性。我们的工作提出了这样一个问题,即这些改变是适应性的还是破坏性的,以及它们是否可以预测在生命后期更微妙或出现的神经发育特征。