Radicheva N, Gerilovsky L, Gydikov A
Eur J Appl Physiol Occup Physiol. 1986;55(5):545-52. doi: 10.1007/BF00421651.
The dependence of extracellular action potentials (ECAPs) of single frog muscle fibres on intracellular action potentials (ICAPs) was studied during long-lasting (fatiguing) activity. The conduction velocity, peak-to-peak amplitude and amplitudes of the separate phases of the first and second ICAP time derivatives decreased during long-lasting activity. The phases of the first and second ICAP space derivatives also decreased in amplitude and lengthened. ECAPs near the membrane were similar in shape and proportional in amplitude to (formula; see text) when recording at a distance from both the end of the fibre and the point of stimulation. At long radial distances, the amplitudes of the separate ECAP phases depended on the amplitude and length of the corresponding phases of (formula; see text). Thus the decrease in ECAP amplitude during long-lasting activity at long radial distances was less than at points close to the muscle fibre membrane. The consequences of these findings for the changes in electromyograms recorded by needle or superficial electrodes during long-lasting (fatiguing) activity are discussed.
在长时间(疲劳)活动期间,研究了单个青蛙肌肉纤维的细胞外动作电位(ECAPs)对细胞内动作电位(ICAPs)的依赖性。在长时间活动期间,第一和第二ICAP时间导数的传导速度、峰峰值幅度以及各单独相位的幅度均降低。第一和第二ICAP空间导数的相位在幅度上也减小且持续时间延长。当在远离纤维末端和刺激点处进行记录时,靠近膜处的ECAPs在形状上相似,且幅度与(公式;见正文)成比例。在长径向距离处,各单独ECAP相位的幅度取决于(公式;见正文)相应相位的幅度和持续时间。因此,在长径向距离处的长时间活动期间,ECAP幅度的降低小于靠近肌肉纤维膜处的点。讨论了这些发现对于在长时间(疲劳)活动期间通过针电极或表面电极记录的肌电图变化的影响。