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Potential interests and limits of magnetic and electrical stimulation techniques to assess neuromuscular fatigue

机译:磁和电刺激技术评估神经肌肉疲劳的潜在兴趣和局限性

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摘要

Neuromuscular function can change under different conditions such as ageing, training/detraining, long-term spaceflight, environmental conditions (e.g. hypoxia, hyperthermia), disease, therapy/retraining programs and also with the appearance of fatigue. Neuromuscular fatigue can be defined as any decrease in maximal voluntary strength or power. There is no standardized method to induce fatigue and various protocols involving different contraction patterns (such as sustained or intermittent submaximal isometric or dynamic contractions on isokinetic or custom chairs) have been used. Probably due to lack of motivation/cooperation, results of fatigue resistance protocols are more variable in patients than in healthy subjects. Magnetic and electrical stimulation techniques allow non-invasive assessment of central and peripheral origins of fatigue. They also allow investigation of different types of muscle fatigue when combining various types of stimulation with force/surface EMG measurements. Since maximal electrical stimuli may be uncomfortable or even sometimes painful, several alternative methods have been recently proposed: submaximal muscle stimulation, low/high-frequency paired pulses instead of tetanic stimuli and the use of magnetic stimulation at the peripheral level.
机译:神经肌肉功能可能会在不同条件下发生变化,例如衰老,训练/训练,长期太空飞行,环境条件(例如低氧,体温过高),疾病,治疗/再培训计划以及疲劳的出现。神经肌肉疲劳可以定义为最大自愿力量或力量的任何下降。没有引起疲劳的标准化方法,并且已经使用了涉及不同收缩模式的各种方案(例如,在等速或惯用椅子上持续或间歇性的最大等轴测或动态收缩)。可能由于缺乏动力/合作,患者的抗疲劳方案的结果比健康受试者的结果更易变。磁刺激和电刺激技术允许对疲劳的中心和周围起源进行无创评估。当将各种类型的刺激与力量/表面肌电图测量值结合使用时,它们还可以研究不同类型的肌肉疲劳。由于最大的电刺激可能不舒服甚至有时是痛苦的,因此最近提出了几种替代方法:次最大的肌肉刺激,低频/高频配对脉冲代替强直性刺激以及在外周水平使用磁刺激。

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