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在 7T 下对人类基底节区不可逆转和可逆横向弛豫率的体内测量:对铁和钙化沉积物的微观和介观结构的推断。

In vivo measurements of irreversible and reversible transverse relaxation rates in human basal ganglia at 7 T: making inferences about the microscopic and mesoscopic structure of iron and calcification deposits.

机构信息

Harvard Medical School, Boston, MA, USA.

Department of Radiology, Boston Children's Hospital, Boston, MA, USA.

出版信息

NMR Biomed. 2019 Nov;32(11):e4140. doi: 10.1002/nbm.4140. Epub 2019 Jul 19.

Abstract

The goal of this study was to measure irreversible and reversible transverse relaxation rates in the globus pallidus and putamen at 7 T, and to use these rates to make inferences about the sub-voxel structure of iron and calcification deposits. Gradient Echo Sampling of a Spin Echo (GESSE) data were acquired at 7 T on eighteen volunteers spanning a large range of ages (23-85 years), with calcifications in the globus pallidus incidentally observed in one volunteer. Maps of transverse relaxation rates were derived from the GESSE data, and the mean value of these rates in globus pallidus and putamen was estimated for each volunteer. Both irreversible and reversible transverse relaxation rates increased with the expected age-dependent iron content in these structures, except for the individual with calcifications for whom extremely large reversible relaxation rates but normal irreversible relaxation rates were found in the globus pallidus. Given the sensitivity of irreversible and reversible transverse relaxation rates to microscopic and mesoscopic field variations, respectively, our findings suggest that joint consideration of these rates may yield information not only about the amount of iron and calcification deposited in the brain, but also about the sub-voxel structure of these deposits, perhaps revealing certain aspects of their geometry and cellular distribution.

摘要

本研究的目的是测量 7T 下苍白球和壳核的不可逆转和可逆横向弛豫率,并利用这些速率推断铁和钙化沉积物的亚体素结构。在 18 名志愿者中(年龄范围为 23-85 岁)采集了 7T 上的梯度回波采样自旋回波(GESSE)数据,一名志愿者意外地观察到苍白球中有钙化。从 GESSE 数据中得出横向弛豫率图,并为每个志愿者估计这些率在苍白球和壳核中的平均值。不可逆转和可逆横向弛豫率均随这些结构中预期的年龄相关铁含量而增加,但对于有钙化的个体,在苍白球中发现了非常大的可逆弛豫率,但正常的不可逆弛豫率。鉴于不可逆和可逆横向弛豫率分别对微观和介观场变化敏感,我们的发现表明,联合考虑这些速率不仅可以提供有关沉积在大脑中的铁和钙化量的信息,还可以提供这些沉积物的亚体素结构的信息,或许可以揭示其几何形状和细胞分布的某些方面。

相似文献

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本文引用的文献

1
Transverse NMR relaxation in biological tissues.生物组织中的横向 NMR 弛豫。
Neuroimage. 2018 Nov 15;182:149-168. doi: 10.1016/j.neuroimage.2018.06.002. Epub 2018 Jun 7.
3
Microstructural imaging of human neocortex in vivo.人类大脑新皮质的微观结构在体成像。
Neuroimage. 2018 Nov 15;182:184-206. doi: 10.1016/j.neuroimage.2018.02.055. Epub 2018 Mar 26.

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