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Frequency response of nerve-muscles relating to fatigue and hypokalemia in rats

机译:大鼠疲劳与低血钾相关的神经肌肉频率响应

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摘要

The study of nerve-muscle is an important issue in extensive research fields such as engineering and bioengineering. This paper examines differences between normal and hypokalemic nerve-muscle, useful as a nerve-muscle disease model, under both rest and muscle fatigue conditions. The association between nerve stimulation frequencies (11 stimulations, pulse duration 50 /spl mu/ sec, 0.5-200 Hz) and electromyogram (EMG) amplitude was studied using rat nerve muscle, based on control theory and physiology. The EMG was recorded from soleus (SOL; slow twitch fiber type model) and extensor digitorum longus (EDL; fast twitch fiber type model) in vivo. It was found that SOL and EDL had different breakpoint frequencies of about 15 and 85 Hz respectively in normal rats, and each muscle break point frequency decreased to about 5 and 15 Hz in hypokalemic rats. All of them had 1/f properties in fatigue. The results of these experiments suggested that frequency responses of the nerve-muscle were affected by the type of fiber, the degree of nerve-muscle disease and fatigue. Further research is needed on nerve-muscle under various conditions to evaluate the possibility of applying the nerve-muscle system to control theory.
机译:在工程学和生物工程学等广泛的研究领域中,神经肌肉的研究是重要的课题。本文研究了在休息和肌肉疲劳条件下正常和低钾血症的神经肌肉之间的差异,该神经肌肉可用作神经肌肉疾病模型。基于控制理论和生理学,使用大鼠神经肌肉研究了神经刺激频率(11次刺激,脉冲持续时间50 / spl mu / sec,0.5-200 Hz)与肌电图(EMG)振幅之间的关联。在体内从比目鱼肌(SOL;慢肌纤维类型模型)和趾长伸肌(EDL;快肌纤维类型模型)记录肌电图。发现在正常大鼠中,SOL和EDL具有不同的断点频率,分别为约15和85Hz,在低血钾大鼠中,每个肌肉的断点频率降低至约5和15Hz。它们都具有疲劳的1 / f特性。这些实验的结果表明,神经肌肉的频率响应受纤维类型,神经肌肉疾病程度和疲劳程度的影响。需要在各种条件下对神经肌肉进行进一步研究,以评估将神经肌肉系统应用于控制理论的可能性。

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