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用于评估周围神经和神经丛损伤的定量磁共振神经成像

Quantitative magnetic resonance (MR) neurography for evaluation of peripheral nerves and plexus injuries.

作者信息

Martín Noguerol Teodoro, Barousse Rafael, Socolovsky Mariano, Luna Antonio

机构信息

MRI Unit, Neuroradiology Section, Clínica Las Nieves, SERCOSA, Health Time, Jaén, Spain.

Peripheral Nerve and Plexus Department, Centro Rossi, Buenos Aires, Argentina.

出版信息

Quant Imaging Med Surg. 2017 Aug;7(4):398-421. doi: 10.21037/qims.2017.08.01.

Abstract

Traumatic conditions of peripheral nerves and plexus have been classically evaluated by morphological imaging techniques and electrophysiological tests. New magnetic resonance imaging (MRI) studies based on 3D fat-suppressed techniques are providing high accuracy for peripheral nerve injury evaluation from a qualitative point of view. However, these techniques do not provide quantitative information. Diffusion weighted imaging (DWI) and diffusion tensor imaging (DTI) are functional MRI techniques that are able to evaluate and quantify the movement of water molecules within different biological structures. These techniques have been successfully applied in other anatomical areas, especially in the assessment of central nervous system, and now are being imported, with promising results for peripheral nerve and plexus evaluation. DWI and DTI allow performing a qualitative and quantitative peripheral nerve analysis, providing valuable pathophysiological information about functional integrity of these structures. In the field of trauma and peripheral nerve or plexus injury, several derived parameters from DWI and DTI studies such as apparent diffusion coefficient (ADC) or fractional anisotropy (FA) among others, can be used as potential biomarkers of neural damage providing information about fiber organization, axonal flow or myelin integrity. A proper knowledge of physical basis of these techniques and their limitations is important for an optimal interpretation of the imaging findings and derived data. In this paper, a comprehensive review of the potential applications of DWI and DTI neurographic studies is performed with a focus on traumatic conditions, including main nerve entrapment syndromes in both peripheral nerves and brachial or lumbar plexus.

摘要

外周神经和神经丛的创伤性疾病传统上通过形态学成像技术和电生理测试进行评估。基于三维脂肪抑制技术的新型磁共振成像(MRI)研究从定性角度为外周神经损伤评估提供了高精度。然而,这些技术无法提供定量信息。扩散加权成像(DWI)和扩散张量成像(DTI)是功能性MRI技术,能够评估和量化水分子在不同生物结构内的运动。这些技术已成功应用于其他解剖区域,尤其是在中枢神经系统评估中,目前正被引入用于外周神经和神经丛评估,取得了有前景的结果。DWI和DTI允许对外周神经进行定性和定量分析,提供有关这些结构功能完整性的有价值的病理生理信息。在创伤以及外周神经或神经丛损伤领域,DWI和DTI研究的几个衍生参数,如表观扩散系数(ADC)或分数各向异性(FA)等,可作为神经损伤的潜在生物标志物,提供有关纤维组织、轴突流动或髓鞘完整性的信息。正确了解这些技术的物理基础及其局限性对于最佳解读成像结果和衍生数据很重要。本文对DWI和DTI神经成像研究的潜在应用进行了全面综述,重点关注创伤性疾病,包括外周神经以及臂丛或腰丛中的主要神经卡压综合征。

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