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苍白球中反常顺磁性钙化:一项离体磁共振研究和组织学验证研究。

Paradoxical paramagnetic calcifications in the globus pallidus: An ex vivo MR investigation and histological validation study.

机构信息

Department of Radiology, Seoul St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul, South Korea.

Division of Biomedical Engineering, Hankuk University of Foreign Studies, Gyeonggi-do, South Korea.

出版信息

NMR Biomed. 2021 Oct;34(10):e4571. doi: 10.1002/nbm.4571. Epub 2021 Jun 15.

Abstract

MR images based on phase contrast images have gained clinical interest as an in vivo tool for assessing anatomical and histological findings. The globus pallidus is an area of major iron metabolism and storage in the brain tissue. Calcium, another important metal in the body, is frequently deposited in the globus pallidus as well. Recently, we observed dense paramagnetic deposition with paradoxical calcifications in the globus pallidus and putamen. In this work, we explore detailed MR findings on these structures, and the histological source of the related findings using ex vivo CT and MR images. Ex vivo MR was obtained with a maximum 100 μm isotropic resolution using a 15.2 T MR system. 3D gradient echo images and quantitative susceptibility mapping were used because of their good sensitivity to metallic deposition, high signal-to-noise ratio, and excellent contrast to iron and calcium. We found dense paramagnetic deposition along the perforating arteries in the globus pallidus. This paramagnetic deposition was hyperdense on ex vivo CT scans. Histological studies confirmed this finding, and simultaneous deposition of iron and calcium, although more iron dominant, was observed along the vessel walls of the globus pallidus. This was an exclusive finding for the penetrating arteries of the globus pallidus. Thus, our results suggest that several strong and paradoxical paramagnetic sources at the globus pallidus can be associated with vascular degeneration.

摘要

基于相衬图像的磁共振(MR)影像已作为一种评估解剖和组织学发现的体内工具引起临床关注。苍白球是大脑组织中主要的铁代谢和储存区域。另一种重要的身体金属——钙,也经常沉积在苍白球中。最近,我们观察到苍白球和壳核中存在致密的顺磁性沉积伴反常钙化。在本研究中,我们使用离体 CT 和 MR 图像来探索这些结构的详细 MR 表现以及相关表现的组织学来源。离体 MR 是在 15.2T 的 MR 系统上获得的,最大空间分辨率为 100μm 各向同性。由于其对金属沉积具有良好的灵敏度、高信噪比以及对铁和钙的出色对比度,我们使用了三维梯度回波图像和定量磁化率图。我们发现苍白球中的穿通动脉有致密的顺磁沉积。这种顺磁沉积在离体 CT 扫描中呈高密度。组织学研究证实了这一发现,并且沿苍白球血管壁观察到铁和钙的同时沉积,尽管以铁为主。这是苍白球穿通动脉的特有表现。因此,我们的结果表明,苍白球处的几个强且反常的顺磁源可能与血管退化有关。

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