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豆状核中铁的分布:一项尸检MRI和组织学研究。

Iron distribution in the lentiform nucleus: A post-mortem MRI and histology study.

作者信息

De Barros Amaury, Arribarat Germain, Lotterie Jean Albert, Dominguez Gaelle, Chaynes Patrick, Péran Patrice

机构信息

Toulouse NeuroImaging Center (ToNIC), University of Toulouse Paul Sabatier-INSERM, CHU Purpan, Pavillon Baudot, Place du Dr Baylac, 31024, Toulouse, Cedex 3, France.

Department of Anatomy, Toulouse Faculty of Medicine, Toulouse federal University, Toulouse, France.

出版信息

Brain Struct Funct. 2021 Mar;226(2):351-364. doi: 10.1007/s00429-020-02175-7. Epub 2021 Jan 2.

DOI:10.1007/s00429-020-02175-7
PMID:33389044
Abstract

Iron plays an important role in many neurobiological processes, especially in the basal ganglia, the brain structures with the highest concentration. Composed of the pallidum and putamen, the lentiform nucleus plays a key role in the basal ganglia circuitry. With MRI advances, iron-based sequences such as R2* and quantitative susceptibility mapping (QSM) are now available for detecting and quantifying iron in different brain structures. Since their validation using classic iron detection techniques (histology or physical techniques), these sequences have attracted growing clinical attention, especially in the field of extrapyramidal syndromes that particularly affect the basal nuclei. Accurate mapping of iron in these nuclei and their connections is needed to gain a better understanding of this specific anatomy, before considering its involvement in the physiopathological processes. We performed R2* and QSM along with Perls histology, to gain new insights into the distribution of iron in the lentiform nucleus and its surrounding structures, based on four specimens obtained from voluntary donors. We found that iron is preferentially distributed in the anterior part of the globus pallidus externus and the posterior part of the putamen. The lateral wall of the putamen is iron-poor, compared with the lateral medullary lamina and intraputaminal fibers. The relevance of perivascular iron concentration, along with pallido- and putaminofugal iron-rich fibers, is discussed.

摘要

铁在许多神经生物学过程中发挥着重要作用,尤其是在基底神经节,即铁浓度最高的脑结构中。豆状核由苍白球和壳核组成,在基底神经节回路中起关键作用。随着磁共振成像(MRI)技术的进步,诸如R2和定量磁化率成像(QSM)等基于铁的序列现在可用于检测和量化不同脑结构中的铁。自从使用经典铁检测技术(组织学或物理技术)对这些序列进行验证以来,它们已引起越来越多的临床关注,特别是在特别影响基底核的锥体外系综合征领域。在考虑铁参与生理病理过程之前,需要准确绘制这些核及其连接中铁的分布图,以便更好地了解这种特定的解剖结构。我们对四个来自自愿捐赠者的标本进行了R2和QSM检测,并结合了Perls组织学方法,以获得关于豆状核及其周围结构中铁分布的新见解。我们发现铁优先分布在苍白球外侧部的前部和壳核的后部。与外侧髓板和壳核内纤维相比,壳核的侧壁铁含量较低。本文还讨论了血管周围铁浓度以及富含铁的苍白球和壳核传出纤维的相关性。

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Iron in Neurodegeneration - Cause or Consequence?神经退行性变中的铁——是原因还是结果?
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