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遗传性或获得性代谢紊乱。

Inherited or acquired metabolic disorders.

作者信息

Eichler Florian, Ratai Eva, Carroll Jason J, Masdeu Joseph C

机构信息

Department of Neurology, Massachusetts General Hospital, Boston, MA, USA.

Department of Radiology, Massachusetts General Hospital, Boston, MA, USA.

出版信息

Handb Clin Neurol. 2016;135:603-636. doi: 10.1016/B978-0-444-53485-9.00029-5.

Abstract

This chapter starts with a description of imaging of inherited metabolic disorders, followed by a discussion on imaging of acquired toxic-metabolic disorders of the adult brain. Neuroimaging is crucial for the diagnosis and management of a number of inherited metabolic disorders. Among these, inherited white-matter disorders commonly affect both the nervous system and endocrine organs. Magnetic resonance imaging (MRI) has enabled new classifications of these disorders that have greatly enhanced both our diagnostic ability and our understanding of these complex disorders. Beyond the classic leukodystrophies, we are increasingly recognizing new hereditary leukoencephalopathies such as the hypomyelinating disorders. Conventional imaging can be unrevealing in some metabolic disorders, but proton magnetic resonance spectroscopy (MRS) may be able to directly visualize the metabolic abnormality in certain disorders. Hence, neuroimaging can enhance our understanding of pathogenesis, even in the absence of a pathologic specimen. This review aims to present pathognomonic brain MRI lesion patterns, the diagnostic capacity of proton MRS, and information from clinical and laboratory testing that can aid diagnosis. We demonstrate that applying an advanced neuroimaging approach enhances current diagnostics and management. Additional information on inherited and metabolic disorders of the brain can be found in Chapter 63 in the second volume of this series.

摘要

本章首先描述遗传性代谢紊乱的影像学表现,接着讨论成人脑获得性中毒性代谢紊乱的影像学表现。神经影像学对于多种遗传性代谢紊乱的诊断和管理至关重要。其中,遗传性白质疾病通常会影响神经系统和内分泌器官。磁共振成像(MRI)使得对这些疾病有了新的分类,极大地提高了我们的诊断能力以及对这些复杂疾病的理解。除了经典的脑白质营养不良,我们越来越多地认识到新的遗传性脑白质病,如髓鞘形成障碍。传统成像在某些代谢紊乱中可能无明显发现,但质子磁共振波谱(MRS)或许能够直接显示某些疾病中的代谢异常。因此,即使没有病理标本,神经影像学也能增进我们对发病机制的理解。本综述旨在呈现具有诊断特征的脑MRI病变模式、质子MRS的诊断能力,以及有助于诊断的临床和实验室检查信息。我们证明应用先进的神经影像学方法可改善当前的诊断和管理。关于脑遗传性和代谢性疾病的更多信息可在本系列第二卷第63章中找到。

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