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脑白质营养不良的神经影像学

Neuroimaging in leukodystrophies.

作者信息

Barker Peter B, Horská Alena

机构信息

Russell H Morgan Department of Radiology and Radiological Science, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.

出版信息

J Child Neurol. 2004 Aug;19(8):559-70. doi: 10.1177/088307380401900801.

Abstract

The application of techniques based on in vivo magnetic resonance to the study of leukodystrophies is evaluated. Magnetic resonance imaging (MRI), the most important neuroimaging modality for patients with leukodystrophies, has proven invaluable for the detection of the extent and etiology of white-matter involvement, diagnosis, and monitoring of disease progression. Proton magnetic resonance spectroscopy, which can detect several brain metabolites, including those related to axonal function and myelination, can provide additional diagnostic and prognostic information and, in some cases, allows a rare insight into the biochemical pathology of leukodystrophies. The potential of other advanced magnetic resonance techniques, including diffusion tensor imaging, magnetization transfer contrast, and molecular imaging, is also discussed. In the future, anatomic and physiologic magnetic resonance techniques are expected to be integrated into a single examination that will provide a detailed characterization of white-matter diseases in children.

摘要

对基于体内磁共振的技术在脑白质营养不良研究中的应用进行了评估。磁共振成像(MRI)是脑白质营养不良患者最重要的神经成像方式,已被证明在检测白质受累的范围和病因、疾病诊断及病情进展监测方面具有极高价值。质子磁共振波谱能够检测多种脑代谢物,包括与轴突功能和髓鞘形成相关的代谢物,可提供额外的诊断和预后信息,在某些情况下,还能让人难得地深入了解脑白质营养不良的生化病理。文中还讨论了其他先进磁共振技术的潜力,包括扩散张量成像、磁化传递对比和分子成像。未来,解剖学和生理学磁共振技术有望整合到一次检查中,从而详细描述儿童白质疾病。

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