Ypey D L, Anderson D
Pflugers Arch. 1977 Jun 8;369(2):125-33. doi: 10.1007/BF00591568.
Flexible intracellular micro-electrodes were used to study the effect of changes in muscle length on the end-plate potential in the isolated m. cutaneus pectoris for different frequencies of stimulation (1/60-5Hz). A 20% step-wise increase in muscle length within the physiological range increases the end-plate potential immediately by about 50% (range 0-120%) at all frequencies tested. At stimulus frequencies lower than 1/5 Hz this increase is sustained during a period of 15 min stretch. At 1 Hz, however, the initial increase in the end-plate potential amplitude on the average declines within a few minutes to a steady-state value about 35% higher than the steady-state end-plate potential before stretch. At 5 Hz, the initial amplitude increase is followed by a decline of about 15 min duration and the final amplitude is not increased in comparison with the pre-stretch amplitude. The amplitude of the compound muscle action potential of the gastrocnemius muscle with intact circulation shows a similar time dependent increase upon stretch at different stimulus frequencies. It is concluded that stretch of a frog muscle gives both an immediate and a sustained increase in transmitter release from the nerve terminals during prolonged stimulation at frequencies up to about 5 Hz. This effect of stretch on transmitter release can improve in vivo neuromuscular impulse transmission.
使用柔性细胞内微电极,研究了在不同刺激频率(1/60 - 5Hz)下,肌肉长度变化对离体胸皮肌终板电位的影响。在生理范围内,肌肉长度逐步增加20%,在所有测试频率下,终板电位会立即增加约50%(范围为0 - 120%)。在低于1/5Hz的刺激频率下,这种增加在15分钟的拉伸期内持续存在。然而,在1Hz时,终板电位幅度的初始增加平均在几分钟内下降至比拉伸前的稳态终板电位高约35%的稳态值。在5Hz时,初始幅度增加之后是持续约15分钟的下降,最终幅度与拉伸前的幅度相比没有增加。具有完整循环的腓肠肌复合肌肉动作电位的幅度在不同刺激频率下拉伸时也呈现出类似的时间依赖性增加。得出的结论是,在高达约5Hz的频率下进行长时间刺激时,青蛙肌肉的拉伸会使神经末梢释放的递质立即且持续增加。这种拉伸对递质释放的影响可以改善体内神经肌肉冲动的传递。