Grood E S, Mates R E
Am J Physiol. 1975 Jan;228(1):244-9. doi: 10.1152/ajplegacy.1975.228.1.244.
It is shown that muscle models which describe force generation as being dependent on the extension of the individual crossbridges produce a force-velocity relation of the form: Vf= Visotonic--1/KHS dP/dt. The derivation of this equation is independent of the details of activation and the kinetics of the crossbridges. The velocity, Vf, represents the relative filament velocity, and Visontonic is the relative filament velocity which would maintain a constant muscle force. P. The quantity KHS is the net stiffness of all the force-generating crossbridges in one-half a sarcomere. Experimental methods for determining KHS are suggested . To study the force-velocity relation, computer simulations based on A. F.Huxley's 1957 kinetic model were conducted for isometric and isotonic twitch contractions. The relative filament velocity is found to depend on the contraction mode, exhibiting a sudden increase in an isometric-to-isontonic changeover and a decrease in the reverse process.
结果表明,将力的产生描述为依赖于单个横桥伸展的肌肉模型会产生如下形式的力-速度关系:Vf = Visotonic - 1/KHS dP/dt。该方程的推导与激活细节和横桥动力学无关。速度Vf表示细丝相对速度,而Visontonic是能维持肌肉力恒定的细丝相对速度。P。量KHS是半个肌节中所有产生力的横桥的净刚度。文中提出了测定KHS的实验方法。为了研究力-速度关系,基于A.F.赫胥黎1957年的动力学模型对等长和等张单收缩进行了计算机模拟。发现细丝相对速度取决于收缩模式,在从等长到等张的转变中会突然增加,而在反向过程中则会降低。