Colomo F, Lombardi V, Piazzesi G
J Physiol. 1986 Nov;380:227-38. doi: 10.1113/jphysiol.1986.sp016282.
During the onset of activation in isolated frog muscle fibres the development of the force-velocity (T-V) relation was determined by imposing single and double ramp releases. The experiments were performed at 3.5-6 degrees C or 19-22 degrees C and at a starting sarcomere length of about 2.25 micron. A velocity- and time-dependent shortening deactivation was shown to exist during the development of contraction. It was found that, early during the tetanus rise, at submaximal levels of activation, the values of T (the steady force exerted by the muscle fibres at any velocity of shortening V lower than V0) were significantly affected by previous conditioning shortening. Conditioning shortening at lower speeds led to potentiation of T and, at higher speeds, to depression. Both these effects were independent of the amount of shortening and, in addition, were not present at the tetanus plateau. At each given time or isometric tension throughout the tetanus rise the values of T. normalized for those determined at the same velocities at the tetanus plateau, were found to be inversely correlated with the actual velocities of shortening. The slope of this relation (a measure of the velocity-dependent shortening deactivation) decreased exponentially with time, attaining, in six fibres at low temperature, 10% of its initial value within 26-73 ms. The results may be explained in terms of a cross-bridge model of contraction by assuming that the rate of development of activation is controlled by the rate of release of the Ca2+ as well as by the velocity at which the muscle fibres are allowed to shorten and in turn by the actual number of attached cross-bridges.
在分离的青蛙肌肉纤维激活开始阶段,通过施加单次和双次斜坡释放来确定力-速度(T-V)关系的发展。实验在3.5 - 6摄氏度或19 - 22摄氏度下进行,起始肌节长度约为2.25微米。结果表明,在收缩发展过程中存在速度和时间依赖性的缩短失活现象。研究发现,在强直上升的早期,在次最大激活水平下,T值(肌肉纤维在任何低于V0的缩短速度V时施加的稳定力)受先前条件性缩短的显著影响。较低速度的条件性缩短导致T增强,而较高速度则导致T降低。这两种效应均与缩短量无关,此外,在强直平台期不存在这些效应。在强直上升过程中的每个给定时间或等长张力下,将T值相对于在强直平台期相同速度下测定的值进行归一化后,发现其与实际缩短速度呈负相关。这种关系的斜率(速度依赖性缩短失活的一种度量)随时间呈指数下降,在低温下的六根纤维中,在26 - 73毫秒内达到其初始值的10%。这些结果可以根据收缩的横桥模型来解释,假设激活的发展速率受Ca2+释放速率以及肌肉纤维允许缩短的速度控制,进而受附着横桥的实际数量控制。