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胎儿期第 34 周至 41 周期间丘脑辐射的成熟:一项基于体素的联合研究和弥散张量成像的概率性轨迹追踪。

Maturation of thalamic radiations between 34 and 41 weeks' gestation: a combined voxel-based study and probabilistic tractography with diffusion tensor imaging.

机构信息

Department of Pediatric Neurology, Université Libre de Bruxelles (ULB)-Hôpital Erasme, Brussels, Belgium.

出版信息

AJNR Am J Neuroradiol. 2009 Oct;30(9):1780-6. doi: 10.3174/ajnr.A1660. Epub 2009 Jul 2.

Abstract

BACKGROUND AND PURPOSE

This study aimed to investigate brain maturation along gestational age with diffusion tensor imaging in healthy preterm and term neonates. Therefore, a voxel-based study of fractional anisotropy (FA) and mean diffusivity (D(av)) was performed to reveal the brain regions experiencing microstructural changes with age. With tractography, the authors intended to identify which fiber tracts were included in these significant voxels.

MATERIALS AND METHODS

There were 22 healthy preterm and 6 healthy term infants who underwent MR imaging between 34 and 41 weeks of gestation. A statistical parametric approach was used to evidence the effect of age on regional distribution of FA and D(av) values. The fiber tracts suspected to be included in the significant clusters of voxels were identified with neuroanatomy and tractography atlases, reconstructed with probabilistic tractography, and superimposed on the parametric maps.

RESULTS

Parametric analysis showed that FA increases with age in the subcortical projections from the frontal (motor and premotor areas) and parietal cortices, the centrum semiovale, the anterior and posterior arms of the internal capsules, the optic radiations, the corpus callosum, and the thalami (P < .05, corrected). Superimposition of the parametric maps on tractography showed that the corticospinal tract (CST); the callosal radiations (CR); and the superior, anterior, and posterior thalamic radiations were included in the significant voxels. No statistically significant results were found for D(av) maps.

CONCLUSIONS

These results highlight that, besides the already-evidenced FA increase in the CST and CR, the thalami and the thalamic radiations experience microstructural changes in the early development of the human brain.

摘要

背景与目的

本研究旨在通过扩散张量成像(DTI)研究健康早产儿和足月儿的脑成熟度。因此,我们进行了基于体素的各向异性分数(FA)和平均弥散度(D(av))研究,以揭示与年龄相关的脑区微观结构变化。通过追踪纤维束,我们旨在确定哪些纤维束包含在这些显著体素中。

材料与方法

共有 22 例健康早产儿和 6 例健康足月儿在妊娠 34 至 41 周时接受 MRI 检查。使用统计参数映射方法来证明年龄对 FA 和 D(av)值的区域分布的影响。使用神经解剖和纤维束追踪图谱来识别可能包含在显著体素簇中的纤维束,使用概率纤维束追踪进行重建,并将其叠加在参数图上。

结果

参数分析显示,FA 在额叶(运动和运动前区)和顶叶皮质、半卵圆中心、内囊前肢和后肢、视辐射、胼胝体和丘脑的皮质下投射中随年龄增长而增加(P <.05,校正)。将参数图叠加在纤维束追踪图上显示,皮质脊髓束(CST);胼胝体辐射(CR);以及丘脑上、前和后辐射包含在显著体素中。D(av)图未显示统计学上显著的结果。

结论

这些结果表明,除了 CST 和 CR 中已经证实的 FA 增加外,丘脑和丘脑辐射在人类大脑的早期发育中也经历了微观结构变化。

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