Newcastle University Translational and Clinical Research Institute (NUTCRI), Newcastle University, Newcastle Upon Tyne, UK.
Department of Radiology, University Medical Centre Utrecht, Utrecht, The Netherlands.
J Magn Reson Imaging. 2024 Dec;60(6):2253-2271. doi: 10.1002/jmri.29218. Epub 2024 Jan 12.
Magnetic resonance imaging (MRI) is routinely used in the musculoskeletal system to measure skeletal muscle structure and pathology in health and disease. Recently, it has been shown that MRI also has promise for detecting the functional changes, which occur in muscles, commonly associated with a range of neuromuscular disorders. This review focuses on novel adaptations of MRI, which can detect the activity of the functional sub-units of skeletal muscle, the motor units, referred to as "motor unit MRI (MUMRI)." MUMRI utilizes pulsed gradient spin echo, pulsed gradient stimulated echo and phase contrast MRI sequences and has, so far, been used to investigate spontaneous motor unit activity (fasciculation) and used in combination with electrical nerve stimulation to study motor unit morphology and muscle twitch dynamics. Through detection of disease driven changes in motor unit activity, MUMRI shows promise as a tool to aid in both earlier diagnosis of neuromuscular disorders and to help in furthering our understanding of the underlying mechanisms, which proceed gross structural and anatomical changes within diseased muscle. Here, we summarize evidence for the use of MUMRI in neuromuscular disorders and discuss what future research is required to translate MUMRI toward clinical practice. LEVEL OF EVIDENCE: 5 TECHNICAL EFFICACY: Stage 3.
磁共振成像(MRI)在肌肉骨骼系统中常用于测量健康和疾病状态下骨骼肌的结构和病理学。最近,MRI 已被证明在检测肌肉中常见的与多种神经肌肉疾病相关的功能变化方面具有潜力。本篇综述重点介绍了 MRI 的新应用,这些应用可以检测骨骼肌的功能亚单位,即运动单位的活动,称为“运动单位 MRI(MUMRI)”。MUMRI 利用脉冲梯度回波、脉冲梯度激发回波及相位对比 MRI 序列,目前已用于研究自发性运动单位活动(肌束颤动),并与电神经刺激联合用于研究运动单位形态和肌肉抽搐动力学。通过检测运动单位活动的疾病驱动变化,MUMRI 有望成为一种辅助工具,帮助早期诊断神经肌肉疾病,并深入了解疾病肌肉内进行性的宏观结构和解剖变化的潜在机制。在这里,我们总结了 MUMRI 在神经肌肉疾病中的应用证据,并讨论了将 MUMRI 转化为临床实践所需的未来研究。证据水平:5 技术功效:3 级。