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脊髓的扩散张量成像:来自动物和人体研究的见解。

Diffusion tensor imaging of the spinal cord: insights from animal and human studies.

作者信息

Vedantam Aditya, Jirjis Michael B, Schmit Brian D, Wang Marjorie C, Ulmer John L, Kurpad Shekar N

机构信息

*Department of Neurosurgery, and §Department of Radiology, Medical College of Wisconsin, Milwaukee, Wisconsin; ‡Department of Biomedical Engineering, Marquette University, Milwaukee, Wisconsin.

出版信息

Neurosurgery. 2014 Jan;74(1):1-8; discussion 8; quiz 8. doi: 10.1227/NEU.0000000000000171.

Abstract

Diffusion tensor imaging (DTI) provides a measure of the directional diffusion of water molecules in tissues. The measurement of DTI indexes within the spinal cord provides a quantitative assessment of neural damage in various spinal cord pathologies. DTI studies in animal models of spinal cord injury indicate that DTI is a reliable imaging technique with important histological and functional correlates. These studies demonstrate that DTI is a noninvasive marker of microstructural change within the spinal cord. In human studies, spinal cord DTI shows definite changes in subjects with acute and chronic spinal cord injury, as well as cervical spondylotic myelopathy. Interestingly, changes in DTI indexes are visualized in regions of the cord, which appear normal on conventional magnetic resonance imaging and are remote from the site of cord compression. Spinal cord DTI provides data that can help us understand underlying microstructural changes within the cord and assist in prognostication and planning of therapies. In this article, we review the use of DTI to investigate spinal cord pathology in animals and humans and describe advances in this technique that establish DTI as a promising biomarker for spinal cord disorders.

摘要

扩散张量成像(DTI)可测量水分子在组织中的定向扩散。脊髓内DTI指标的测量为各种脊髓病变中的神经损伤提供了定量评估。脊髓损伤动物模型的DTI研究表明,DTI是一种可靠的成像技术,与重要的组织学和功能相关。这些研究证明DTI是脊髓内微观结构变化的非侵入性标志物。在人体研究中,脊髓DTI在急性和慢性脊髓损伤以及颈椎病性脊髓病患者中显示出明确变化。有趣的是,DTI指标的变化在脊髓区域中可见,这些区域在传统磁共振成像上看似正常且远离脊髓受压部位。脊髓DTI提供的数据有助于我们了解脊髓内潜在的微观结构变化,并协助进行预后评估和治疗方案规划。在本文中,我们综述了DTI在动物和人体脊髓病变研究中的应用,并描述了该技术的进展,这些进展使DTI成为脊髓疾病有前景的生物标志物。

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