Bahler A S, Fales J T, Zierler K L
J Gen Physiol. 1968 Mar;51(3):369-84. doi: 10.1085/jgp.51.3.369.
The dynamic characteristics of the rat gracilis anticus muscle at 17.5 degrees C have been determined by isotonic and isometric loading. For a fixed initial length these characteristics were represented either as a family of length-velocity phase trajectories at various isotonic afterloads or as a series of force-velocity curves at different lengths. An alternate method of viewing these data, the length-external load-velocity phase space, was also generated. When the muscle was allowed to shorten from different initial lengths, the velocity of shortening achieved at a given length was lower for longer initial lengths. The amount of departure was also dependent upon the isotonic load, the greater the load the greater the departure. The departures were not caused by changes in the elastic elements of the muscle or fatigue in the ordinary sense. When the behavior of the muscle was investigated at different frequencies of stimulation, the shortening velocity was a function of the number of stimulating pulses received by the muscle at a given frequency. The shortening velocity of the rat gracilis anticus muscle is, therefore, not only a function of load and length, but also of an additional variable related to the time elapsed from onset of stimulation.
通过等张和等长负荷测定了大鼠股薄肌在17.5摄氏度时的动态特性。对于固定的初始长度,这些特性可以表示为不同等张后负荷下的一系列长度-速度相位轨迹,或者不同长度下的一系列力-速度曲线。还生成了另一种观察这些数据的方法,即长度-外部负荷-速度相空间。当肌肉从不同的初始长度开始缩短时,在给定长度下达到的缩短速度对于较长的初始长度较低。偏差量也取决于等张负荷,负荷越大,偏差越大。这些偏差不是由肌肉弹性成分的变化或通常意义上的疲劳引起的。当在不同刺激频率下研究肌肉的行为时,缩短速度是肌肉在给定频率下接收到的刺激脉冲数量的函数。因此,大鼠股薄肌的缩短速度不仅是负荷和长度的函数,也是与刺激开始后经过时间相关的另一个变量的函数。