Radiology and Orthopedic Surgery and Musculoskeletal Radiology, UT Southwestern Medical Center, Dallas, TX, USA.
Adjunct Faculty, Johns Hopkins University, Baltimore, MD, USA.
Eur Radiol. 2018 Feb;28(2):698-707. doi: 10.1007/s00330-017-4976-8. Epub 2017 Jul 14.
Magnetic resonance neurography (also called MRN or MR neurography) refers to MR imaging dedicated to the peripheral nerves. It is a technique that enhances selective multiplanar visualisation of the peripheral nerve and pathology by encompassing a combination of two-dimensional, three-dimensional and diffusion imaging pulse sequences. Referring physicians who seek imaging techniques that can depict and diagnose peripheral nerve pathologies superior to conventional MR imaging are driving the demand for MRN. This article reviews the pathophysiology of peripheral nerves in common practice scenarios, technical considerations of MRN, current indications of MRN, normal and abnormal neuromuscular appearances, and imaging pitfalls. Finally, the emerging utility of diffusion-weighted and diffusion tensor imaging is discussed and future directions are highlighted.
• Lesion relationship to neural architecture is more conspicuous on MRN than MRI. • 3D multiplanar imaging technique is essential for pre-surgical planning. • Nerve injuries can be classified on MRN using Sunderland's classification. • DTI provides quantitative information and insight into intraneural integrity and pathophysiology.
磁共振神经成像(也称为 MRN 或 MR 神经成像)是指专门用于外周神经的磁共振成像。这是一种通过结合二维、三维和扩散成像脉冲序列来增强外周神经和病变选择性多平面可视化的技术。寻求能够比传统磁共振成像更好地描绘和诊断外周神经病变的成像技术的参考医师正在推动对 MRN 的需求。本文回顾了常见临床情况下外周神经的病理生理学、MRN 的技术考虑因素、MRN 的当前适应证、正常和异常神经肌肉表现以及成像陷阱。最后,讨论了扩散加权和扩散张量成像的新应用,并强调了未来的方向。
• 在 MRN 上,病变与神经结构的关系比 MRI 更明显。• 3D 多平面成像技术对于术前计划至关重要。• 可以使用 Sunderland 分类在 MRN 上对神经损伤进行分类。• DTI 提供了有关神经内完整性和病理生理学的定量信息和深入了解。