Seow C Y, Stephens N L
Am J Physiol. 1986 Sep;251(3 Pt 1):C362-8. doi: 10.1152/ajpcell.1986.251.3.C362.
In tracheal smooth muscle, we obtained quantitatively different force-velocity (F-V) curves at early (2 s) and late (8 s) stages of an isometric tetanus whose contraction time was 12 s. These were essentially two samples from a continuum of F-V curves operating between 0 and 12 s. The cross-bridge cycling velocity at 8 s was slower and less sensitive to external load change compared with that at 2 s. This is possibly due to the presence of two types of cross bridges with different F-V characteristics; at 2 s most of the bridges resemble a cycling type, whereas at 8 s there is a population of what Dillon et al. have called slowly cycling or latch type interactions. Another possibility is that, due to some intrinsic factors, the whole population of cross bridges gradually change their F-V characteristics. Functions a(t) and b(t) were obtained by applying load clamps at 1-s intervals throughout a tetanus (a and b are asymptote values derived from the F-V hyperbolic curves): a increased with time, b remained constant. Analysis suggested that a/b was a valid index of internal factors that affect shortening velocity of unloaded muscle, and it is progressively increased in value during contraction.
在气管平滑肌中,我们在等长强直收缩(收缩时间为12秒)的早期(2秒)和晚期(8秒)获得了定量上不同的力-速度(F-V)曲线。这些基本上是来自在0至12秒之间运行的连续F-V曲线的两个样本。与2秒时相比,8秒时的横桥循环速度较慢,且对外部负荷变化的敏感性较低。这可能是由于存在两种具有不同F-V特性的横桥类型;在2秒时,大多数横桥类似于循环型,而在8秒时,存在一部分狄龙等人所称的慢循环或闭锁型相互作用。另一种可能性是,由于某些内在因素,整个横桥群体逐渐改变其F-V特性。通过在强直收缩期间每隔1秒施加负荷钳获得函数a(t)和b(t)(a和b是从F-V双曲线获得的渐近值):a随时间增加,b保持不变。分析表明,a/b是影响无负荷肌肉缩短速度的内部因素的有效指标,并且在收缩过程中其值逐渐增加。