Arabadzhiev T I, Dimitrov G V, Dimitrova N A
Centre of Biomedical Engineering, Bulgarian Academy of Sciences, Acad. G. Bonchev Str. Bl. 105, 1113 Sofia, Bulgaria.
J Electromyogr Kinesiol. 2005 Apr;15(2):149-58. doi: 10.1016/j.jelekin.2004.08.003.
A high sensitive fatigue index is desired to improve stimulation strategy and to prevent muscle damage in functional electrical simulations. The great number of indexes used shows that there is no index that satisfies all investigators. A way to develop a high sensitive index for quantifying M-wave changes during fatigue and to estimate its performance was analyzed. The changes in M-wave and its frequency distribution due to variations of intracellular action potential (IAP) and muscle fibre propagation velocity (MFPV) with fatigue were simulated. It was found that the ratio between the spectral moments of order -1 and 2 was considerably more sensitive to peripheral muscle fatigue than the mean (the ratio between the spectral moments of order 1 and 0) and median frequency traditionally used. The sensitivity of the new index depended on the electrode arrangement and position in respect to the active fibres. The belly-tendon detection promised the highest index sensitivity. The length of the active fibres also affected the index sensitivity. The shorter the fibres the lower was the index sensitivity. The sensitivity of the new index could be relatively high even in the case of traditionally used high-pass cut-off frequencies that could distort the M-wave shape.
为了改进功能性电刺激策略并防止肌肉损伤,需要一个高灵敏度的疲劳指数。所使用的大量指数表明,没有一个指数能满足所有研究者的需求。分析了一种开发用于量化疲劳期间M波变化的高灵敏度指数并评估其性能的方法。模拟了由于细胞内动作电位(IAP)和肌肉纤维传播速度(MFPV)随疲劳变化而导致的M波及其频率分布的变化。结果发现,-1阶和2阶谱矩之比对外周肌肉疲劳的敏感度远高于传统使用的均值(1阶和0阶谱矩之比)和中位数频率。新指数的敏感度取决于电极布置以及相对于活动纤维的位置。肌腹-肌腱检测保证了最高的指数敏感度。活动纤维的长度也会影响指数敏感度。纤维越短,指数敏感度越低。即使在传统使用的高通截止频率可能会扭曲M波形状的情况下,新指数的敏感度也可能相对较高。