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Magnetic resonance imaging and spectroscopy in the evaluation of neuromuscular disorders and fatigue

机译:磁共振成像和光谱法评估神经肌肉疾病和疲劳

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摘要

Magnetic resonance imaging represents a validated diagnostic tool in the investigation of neuromuscular disorders. Magnetic resonance imaging can detect key skeletal muscle abnormalities such as size, shape and signal intensity changes reflecting fatty infiltration, muscle atrophy or muscle edema. In vivo phosphorus magnetic resonance spectroscopy is able to provide objective measurements of muscle energy metabolism and cytosolic pH at rest, during exercise, and during recovery from exercise. Its primary role is the investigating of metabolic myopathies, and it has been used to detect the underlying biochemical mechanisms responsible for the development of fatigue.In this mini-review, we report the main contribution provided by conventional and advanced magnetic resonance imaging and phosphorus magnetic resonance spectroscopy in the exploration of fatigue in normal muscle and in neuromuscular disorders.
机译:磁共振成像是研究神经肌肉疾病的一种经过验证的诊断工具。磁共振成像可以检测关键的骨骼肌异常,例如大小,形状和信号强度变化,反映出脂肪浸润,肌肉萎缩或肌肉水肿。体内磷磁共振波谱能够提供静止,运动过程中以及运动后恢复期间肌肉能量代谢和胞质pH的客观测量。它的主要作用是研究代谢性肌病,并已被用于检测导致疲劳发展的潜在生化机制。在本小型综述中,我们报告了常规和高级磁共振成像以及磷磁技术的主要贡献。共振光谱法用于探索正常肌肉和神经肌肉疾病的疲劳。

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