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新生儿脑磁共振扩散指标的年龄相关地形图。

Age-related topographic map of magnetic resonance diffusion metrics in neonatal brains.

作者信息

Bobba Pratheek S, Weber Clara F, Mak Adrian, Mozayan Ali, Malhotra Ajay, Sheth Kevin N, Taylor Sarah N, Vossough Arastoo, Grant Patricia Ellen, Scheinost Dustin, Constable Robert Todd, Ment Laura R, Payabvash Seyedmehdi

机构信息

Department of Radiology and Biomedical Imaging, Yale School of Medicine, New Haven, Connecticut, USA.

Social Neuroscience Lab, Department of Psychiatry and Psychotherapy, Lübeck University, Lübeck, Germany.

出版信息

Hum Brain Mapp. 2022 Oct 1;43(14):4326-4334. doi: 10.1002/hbm.25956. Epub 2022 May 23.

Abstract

Accelerated maturation of brain parenchyma close to term-equivalent age leads to rapid changes in diffusion-weighted imaging (DWI) and diffusion tensor imaging (DTI) metrics of neonatal brains, which can complicate the evaluation and interpretation of these scans. In this study, we characterized the topography of age-related evolution of diffusion metrics in neonatal brains. We included 565 neonates who had MRI between 0 and 3 months of age, with no structural or signal abnormality-including 162 who had DTI scans. We analyzed the age-related changes of apparent diffusion coefficient (ADC) values throughout brain and DTI metrics (fractional anisotropy [FA] and mean diffusivity [MD]) along white matter (WM) tracts. Rate of change in ADC, FA, and MD values across 5 mm cubic voxels was calculated. There was significant reduction of ADC and MD values and increase of FA with increasing gestational age (GA) throughout neonates' brain, with the highest temporal rates in subcortical WM, corticospinal tract, cerebellar WM, and vermis. GA at birth had significant effect on ADC values in convexity cortex and corpus callosum as well as FA/MD values in corpus callosum, after correcting for GA at scan. We developed online interactive atlases depicting age-specific normative values of ADC (ages 34-46 weeks), and FA/MD (35-41 weeks). Our results show a rapid decrease in diffusivity metrics of cerebral/cerebellar WM and vermis in the first few weeks of neonatal age, likely attributable to myelination. In addition, prematurity and low GA at birth may result in lasting delay in corpus callosum myelination and cerebral cortex cellularity.

摘要

接近足月等效年龄时脑实质的加速成熟会导致新生儿脑扩散加权成像(DWI)和扩散张量成像(DTI)指标的快速变化,这会使这些扫描的评估和解读变得复杂。在本研究中,我们描述了新生儿脑扩散指标与年龄相关演变的地形图。我们纳入了565名在0至3个月龄之间进行MRI检查且无结构或信号异常的新生儿,其中162名进行了DTI扫描。我们分析了全脑表观扩散系数(ADC)值以及沿白质(WM)束的DTI指标(分数各向异性[FA]和平均扩散率[MD])与年龄相关的变化。计算了5立方毫米体素内ADC、FA和MD值的变化率。在整个新生儿脑中,随着胎龄(GA)增加,ADC和MD值显著降低,FA值增加,在皮质下WM、皮质脊髓束、小脑WM和蚓部的时间变化率最高。校正扫描时的GA后,出生时的GA对凸面皮质和胼胝体的ADC值以及胼胝体的FA/MD值有显著影响。我们开发了在线交互式图谱,描绘了ADC(34 - 46周龄)以及FA/MD(35 - 41周龄)的年龄特异性标准值。我们的结果表明,在新生儿期的头几周,脑/小脑WM和蚓部的扩散指标迅速下降,这可能归因于髓鞘形成。此外,早产和出生时GA较低可能导致胼胝体髓鞘形成和大脑皮质细胞构成的持续延迟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a630/9435001/c7ce7841e6d7/HBM-43-4326-g004.jpg

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