Edman K A, Mulieri L A, Scubon-Mulieri B
Acta Physiol Scand. 1976 Oct;98(2):143-56. doi: 10.1111/j.1748-1716.1976.tb00234.x.
The force-velocity relation has been studied in sixteen single fibres from frog semitendinosus muscle with particular attention to the high-force portion of the curve. The force-velocity curve was hyperbolic except for a reversal of curvature near 80% measured isometric tension (PO). Rectangular hyperbolas fitted (linear, least-squares method) these data well only when values below 0.78 PO were considered. Extrapolation of these hyperbolas above 0.78 PO gave predicted isometric tensions (PO) which averaged 32+/-6% above the measured PO values. Hill's constants (1.84 degrees C) for these hyperbolas were: a/PO=0.177+/-0.021, b=0.329+/- 0.035 M.L./sec, Vmax=1.91+/-0.074 M.L./sec. The reversal of curvature persisted when force-velocity data were obtained using: 1 or 60 min response intervals, afterloaded isotonic responses, grid stimulation, electrically induced contractures and bundles of fibres. The reversal of curvature diminished when force-velocity data were obtained from slightly stretched fibres (about 2.3 mum sarcomere length as compared to 2.1 mum in the control). The results indicate that sarcomere length redistributions probably do not account for the non-hyperbolic force-velocity relation. An explanation for the behavior based on the geometry of the contractile filament lattice is discussed.
对取自青蛙半腱肌的16条单纤维的力-速度关系进行了研究,特别关注曲线的高力部分。除了在约80%的测量等长张力(PO)附近曲率反转外,力-速度曲线呈双曲线。仅当考虑低于0.78 PO的值时,矩形双曲线(线性,最小二乘法)能很好地拟合这些数据。将这些双曲线外推至0.78 PO以上得到的预测等长张力(PO)平均比测量的PO值高32±6%。这些双曲线的希尔常数(1.84摄氏度)为:a/PO = 0.177±0.021,b = 0.329±0.035 M.L./秒,Vmax = 1.91±0.074 M.L./秒。当使用以下方法获得力-速度数据时,曲率反转仍然存在:1或60分钟的响应间隔、后负荷等张响应、网格刺激、电诱导挛缩以及纤维束。当从轻微拉伸的纤维(与对照组的2.1μm相比,肌节长度约为2.3μm)获得力-速度数据时,曲率反转减小。结果表明,肌节长度重新分布可能无法解释非双曲线的力-速度关系。讨论了基于收缩细丝晶格几何结构对该行为的一种解释。