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用于体内纤维束和神经核团解剖定位的人脑干轨迹密度成像:3-T磁共振成像的初步经验

Track-Density Imaging of the Human Brainstem for Anatomic Localization of Fiber Tracts and Nerve Nuclei in Vivo: Initial Experience with 3-T Magnetic Resonance Imaging.

作者信息

Wenz Holger, Al-Zghloul Mansour, Hart Eva, Kurth Stefan, Groden Christoph, Förster Alex

机构信息

Department of Neuroradiology, Universitätsmedizin Mannheim, University of Heidelberg, Mannheim, Germany.

Department of Neuroradiology, Universitätsmedizin Mannheim, University of Heidelberg, Mannheim, Germany.

出版信息

World Neurosurg. 2016 Sep;93:286-92. doi: 10.1016/j.wneu.2016.05.085. Epub 2016 Jun 4.

Abstract

BACKGROUND

The brainstem comprises a large variety of fiber tracts and nerve nuclei and is unarguably one of the most crucial parts of the brain. Reliable noninvasive visualization of its anatomy may help relate normal and pathological anatomic variations to neurologic/psychiatric disorders. In this study, we explored the potential of direction-encoded track-density imaging (TDI) for depicting the intricate anatomy of the brainstem.

METHODS

A total of 18 healthy volunteers (10 females, 8 males; median age, 34.5 years; interquartile range, 31-44.5 years) were examined on a 3-T MRI system. Diffusion tensor imaging data were processed using MRtrix to generate TDI images. These images were then compared with anatomic atlases to identify nerve nuclei and fiber tracts. The ability of TDI to delineate anatomic structures in the mesencephalon, pons, and medulla oblongata was evaluated using a 6-point Likert scale (5, excellent; 4, good; 3, moderate; 2, poor; 1, no adequate differentiation; 0, evaluation not possible).

RESULTS

All generated TDI images were evaluable without limitations. In the mesencephalon, delineation of the substantia nigra, crus cerebri, and red nucleus was rated as excellent, that of the medial lemniscus was rated as good, and that of the inferior colliculus was rated as poor. Delineation of all anatomic structures in the pons was rated as excellent. In the medulla oblongata, delineation of the pyramid was rated as excellent and that of the medial lemniscus as moderate, whereas delineation of the inferior olive was not possible.

CONCLUSIONS

TDI images provide optimal delineation of nerve nuclei and fibers in the upper brainstem, but have more difficulty identifying more caudal structures.

摘要

背景

脑干由多种纤维束和神经核组成,无疑是大脑最重要的部分之一。对其解剖结构进行可靠的无创可视化,可能有助于将正常和病理性解剖变异与神经/精神疾病联系起来。在本研究中,我们探讨了方向编码轨迹密度成像(TDI)描绘脑干复杂解剖结构的潜力。

方法

在3-T磁共振成像(MRI)系统上对18名健康志愿者(10名女性,8名男性;年龄中位数为34.5岁;四分位间距为31 - 44.5岁)进行检查。使用MRtrix处理扩散张量成像数据以生成TDI图像。然后将这些图像与解剖图谱进行比较,以识别神经核和纤维束。使用6点李克特量表(5分,优秀;4分,良好;3分,中等;2分,差;1分,分辨不足;0分,无法评估)评估TDI描绘中脑、脑桥和延髓解剖结构的能力。

结果

所有生成的TDI图像均可进行无限制评估。在中脑中,黑质、大脑脚和红核的描绘被评为优秀,内侧丘系的描绘被评为良好,下丘的描绘被评为差。脑桥中所有解剖结构的描绘均被评为优秀。在延髓中,锥体的描绘被评为优秀,内侧丘系的描绘被评为中等,而无法描绘下橄榄核。

结论

TDI图像能最佳地描绘上脑干中的神经核和纤维,但在识别更靠尾端的结构时存在更多困难。

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