首页> 外文期刊>European journal of applied physiology >The spectral changes in EMG during a second bout eccentric contraction could be due to adaptation in muscle fibres themselves: a simulation study.
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The spectral changes in EMG during a second bout eccentric contraction could be due to adaptation in muscle fibres themselves: a simulation study.

机译:模拟研究发现,肌电图在第二次偏心收缩过程中的频谱变化可能是由于肌肉纤维本身的适应性所致。

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The mechanism of marked reduction in damage symptoms after repeated bout of similar eccentric contractions is still unknown. The neuronal adaptation leading to reduction of muscle fibre propagation velocity (MFPV) due to increased activation of slow-twitch motor units (MUs), decrease in activation of fast-twitch MUs, and/or increase in MU synchronization was suggested as a cause for lower EMG frequency characteristics. However, the repeated bout effect could occur also after electrically stimulated exercise. Prolonged elevation of cytoplasmic Ca(2+) due to the increased membrane permeability after eccentric contractions was reported. Elevated Ca(2+) induced peripheral changes that included alteration of intracellular action potential and MFPV reduction. We simulated and compared changes in EMG frequency characteristics related to effects of central nervous system (CNS) or to peripheral changes. The simulations were performed for different electrode arrangements and positions. The results showed that the peripheral effects could be similar or even stronger than the effects related to CNS. We hypothesised that the repeated bout effect was a consequence of the adaptation in muscle fibres necessary for avoiding Ca(2+)-induced protein and lipid degradation due to Ca(2+) overload resulting from the increased membrane permeability after eccentric contraction. The possibilities for noninvasive testing of this hypothesis were discussed.
机译:反复发作类似的偏心收缩后,损伤症状明显减轻的机制仍然未知。提示神经元适应导致肌肉纤维传播速度(MFPV)降低,原因是慢速运动肌动蛋白(MU)的激活增加,快速肌动MUs的激活减少和/或MU同步性增加是导致这种情况的原因。较低的EMG频率特性。但是,在电刺激运动后,也可能出现反复发作的效果。据报道,由于离心收缩后增加的膜通透性,延长了细胞质Ca(2+)的升高。 Ca(2+)升高引起外围变化,包括细胞内动作电位的改变和MFPV降低。我们模拟并比较了与中枢神经系统(CNS)或周围环境变化有关的EMG频率特征变化。针对不同的电极布置和位置进行了仿真。结果表明,其外围效应可能比与CNS相关的效应相似甚至更强。我们假设重复的回合效应是避免Ca(2+)诱导的蛋白质和脂质降解所必需的肌肉纤维适应性的结果,Ca(2+)过载是由于偏心收缩后膜通透性增加而引起的Ca(2+)超负荷。讨论了对该假设进行非侵入式测试的可能性。

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