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弥散磁共振成像在儿童齿状核红核丘脑皮质束中的轨迹和微观结构分析。

Tractographic and Microstructural Analysis of the Dentato-Rubro-Thalamo-Cortical Tracts in Children Using Diffusion MRI.

机构信息

Developmental Imaging and Biophysics Section, UCL-GOS Institute of Child Health, London WC1N 1EH, UK.

Department of Neurosurgery, Great Ormond Street Hospital, London WC1N 3JH, UK.

出版信息

Cereb Cortex. 2021 Mar 31;31(5):2595-2609. doi: 10.1093/cercor/bhaa377.

Abstract

The dentato-rubro-thalamo-cortical tract (DRTC) is the main outflow pathway of the cerebellum, contributing to a finely balanced corticocerebellar loop involved in cognitive and sensorimotor functions. Damage to the DRTC has been implicated in cerebellar mutism syndrome seen in up to 25% of children after cerebellar tumor resection. Multi-shell diffusion MRI (dMRI) combined with quantitative constrained spherical deconvolution tractography and multi-compartment spherical mean technique modeling was used to explore the frontocerebellar connections and microstructural signature of the DRTC in 30 healthy children. The highest density of DRTC connections were to the precentral (M1) and superior frontal gyri (F1), and from cerebellar lobules I-IV and IX. The first evidence of a topographic organization of anterograde projections to the frontal cortex at the level of the superior cerebellar peduncle (SCP) is demonstrated, with streamlines terminating in F1 lying dorsomedially in the SCP compared to those terminating in M1. The orientation dispersion entropy of DRTC regions appears to exhibit greater contrast than that shown by fractional anisotropy. Analysis of a separate reproducibility cohort demonstrates good consistency in the dMRI metrics described. These novel anatomical insights into this well-studied pathway may prove to be of clinical relevance in the surgical resection of cerebellar tumors.

摘要

齿状核红核丘脑皮质束(DRTC)是小脑的主要输出通路,有助于参与认知和感觉运动功能的精细平衡皮质小脑回路。在小脑肿瘤切除术后高达 25%的儿童中出现的小脑缄默症综合征中,已经发现 DRTC 的损伤。使用多壳弥散 MRI(dMRI)结合定量约束球型去卷积束追踪和多腔球形平均技术建模,探索了 30 名健康儿童的额桥小脑连接和 DRTC 的微观结构特征。DRTC 连接的密度最高的部位是中央前回(M1)和额上回(F1),以及小脑叶 I-IV 和 IX。首次在小脑上脚(SCP)水平上证明了额皮质顺行投射的拓扑组织的初步证据,与终止于 M1 的纤维相比,终止于 F1 的纤维在 SCP 中背内侧。DRTC 区域的方向分散熵似乎比各向异性分数显示出更大的对比度。对独立可重复性队列的分析表明,所描述的 dMRI 指标具有良好的一致性。这些对这条研究充分的通路的新的解剖学见解可能在小脑肿瘤的手术切除中具有临床相关性。

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