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探索脑 Sylvian 裂周围形态不对称的出现:早产儿形状变异的纵向研究。

Exploring the emergence of morphological asymmetries around the brain's Sylvian fissure: a longitudinal study of shape variability in preterm infants.

机构信息

NeuroSpin-BAOBAB, CEA, Université Paris-Saclay, Gif-sur-Yvette 91191, France.

NeuroSpin-UNICOG, Inserm, CEA, Université Paris-Saclay, Gif-sur-Yvette 91191, France.

出版信息

Cereb Cortex. 2023 May 24;33(11):6667-6680. doi: 10.1093/cercor/bhac533.

Abstract

Brain folding patterns vary within the human species, but some folding properties are common across individuals, including the Sylvian fissure's inter-hemispheric asymmetry. Contrarily to the other brain folds (sulci), the Sylvian fissure develops through the process of opercularization, with the frontal, parietal, and temporal lobes growing over the insular lobe. Its asymmetry may be related to the leftward functional lateralization for language processing, but the time course of these asymmetries' development is still poorly understood. In this study, we investigated refined shape features of the Sylvian fissure and their longitudinal development in 71 infants born extremely preterm (mean gestational age at birth: 26.5 weeks) and imaged once before and once at term-equivalent age (TEA). We additionally assessed asymmetrical sulcal patterns at TEA in the perisylvian and inferior frontal regions, neighbor to the Sylvian fissure. While reproducing renowned strong asymmetries in the Sylvian fissure, we captured an early encoding of its main asymmetrical shape features, and we observed global asymmetrical shape features representative of a more pronounced opercularization in the left hemisphere, contrasting with the previously reported right hemisphere advance in sulcation around birth. This added novel insights about the processes governing early-life brain folding mechanisms, potentially linked to the development of language-related capacities.

摘要

脑折叠模式在人类中存在差异,但一些折叠特征在个体之间是共同的,包括大脑外侧裂的半球间不对称性。与其他脑沟(脑回)不同,大脑外侧裂通过脑盖化过程发育,额叶、顶叶和颞叶在脑岛上方生长。其不对称性可能与语言处理的左侧功能偏侧化有关,但这些不对称性发展的时间过程仍不清楚。在这项研究中,我们调查了 71 名极早产儿(出生时的平均胎龄为 26.5 周)的大脑外侧裂的精细形状特征及其在胎龄相当年龄(TEA)的纵向发育,并在 TEA 时评估了外侧裂周围的脑回不对称模式,包括颞叶下回和额下回。虽然我们复制了大脑外侧裂的著名强不对称性,但我们捕捉到了其主要不对称形状特征的早期编码,并观察到了代表左半球更明显脑盖化的全局不对称形状特征,这与之前报道的出生时右半球脑回发育提前形成对比。这为控制早期生命脑折叠机制的过程提供了新的见解,可能与语言相关能力的发展有关。

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