Homma S, Nakajima Y, Hayashi K, Toma S
Jpn J Physiol. 1986;36(1):15-24. doi: 10.2170/jjphysiol.36.15.
Conduction of an action potential along skeletal muscle fibers was graphically displayed by unidimensional latency-topography, UDLT. Since the slopes of the equipotential line were linear and the width of the line was constant, it was possible to calculate conduction velocity from the slope. To determine conduction direction of the muscle action potential elicited by electric stimulation applied directly to the muscle, surface recording electrodes were placed on a two-dimensional plane over a human muscle. Thus a bi-dimensional topography was obtained. Then, twelve or sixteen surface electrodes were placed linearly along the longitudinal direction of the action potential conduction which was disclosed by the bi-dimensional topography. Thus conduction velocity of muscle action potential in man, calculated from the slope, was for m. brachioradialis, 3.9 +/- 0.4 m/s; for m. biceps brachii, 3.6 +/- 0.2 m/s; for m. sternocleidomastoideus, 3.6 +/- 0.4 m/s. By using a tungsten microelectrode to stimulate the motor axons, a convex-like equipotential line of an action potential in UDLT was obtained from human muscle fibers. Since a similar pattern of UDLT was obtained from experiments on isolated frog muscles, in which the muscle action potential was elicited by stimulating the motor axon, it was assumed that the maximum of the curve corresponds to the end-plate region, and that the slopes on both sides indicate bi-directional conduction of the action potential.
动作电位沿骨骼肌纤维的传导通过一维潜伏期地形图(UDLT)以图形方式显示。由于等势线的斜率是线性的且线的宽度是恒定的,因此可以根据斜率计算传导速度。为了确定直接施加于肌肉的电刺激所引发的肌肉动作电位的传导方向,将表面记录电极放置在人体肌肉上方的二维平面上。由此获得了二维地形图。然后,沿着二维地形图所揭示的动作电位传导的纵向方向线性放置十二个或十六个表面电极。因此,根据斜率计算出的人体肌肉动作电位的传导速度,对于肱桡肌为3.9±0.4米/秒;对于肱二头肌为3.6±0.2米/秒;对于胸锁乳突肌为3.6±0.4米/秒。通过使用钨微电极刺激运动轴突,从人体肌肉纤维获得了UDLT中动作电位的凸状等势线。由于在分离的蛙肌实验中也获得了类似的UDLT模式,其中通过刺激运动轴突引发肌肉动作电位,因此假定曲线的最大值对应终板区域,并且两侧的斜率表明动作电位的双向传导。