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Temperature-dependence of shortening velocity and rate of isometric tension development in rat skeletal muscle

机译:大鼠骨骼肌缩短速度和等轴测张力发展速度的温度依赖性

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摘要

1. The temperature-dependence of the maximum velocity of shortening and of the maximum rate of isometric tension development were examined in a rat fast twitch muscle, extensor digitorum longus (e.d.l.), and a slow twitch muscle, soleus, in vitro and with direct stimulation. The temperature range was 35-20 °C.2. The maximum velocity of shortening and the maximum rate of tension development decreased with cooling in both muscles. The decrease was such that their logarithms were linearly related to the reciprocal of the absolute temperature over the temperature range of 35-20 °C in e.d.l. and 35-25 °C in soleus.3. The calculated Arrhenius activation energy for maximum velocity of shortening was around 40-45 kJ in both muscles. The activation energies for maximum rate of tension development were 48 kJ in e.d.l. and 56 kJ in soleus. Similar analyses made on the time to peak and time to half-relaxation of the isometric twitch showed that their activation energies were higher, between 60-80 kJ, in both muscles.4. The results are examined in relation to biochemical findings and discussed in relation to A. F. Huxley's (1957) cross-bridge theory.
机译:1.在大鼠和体外直接和快速检查大鼠快速抽动肌肉,趾长伸肌(edl)和缓慢抽动肌,比目鱼肌的最大收缩速度和最大等距张紧速度的温度依赖性。刺激。温度范围是35-20°C.2。随着肌肉的冷却,最大的缩短速度和最大的张力产生速率降低。下降使得它们的对数与e.d.l中35-20°C的温度范围内的绝对温度的倒数线性相关。比目鱼温度为35-25°C 3。计算出的最大缩短速度的阿累尼乌斯活化能在两条肌肉中约为40-45 kJ。在e.d.l.中最大张力产生速率的活化能为48 kJ。比目鱼眼和56 kJ。对等距抽搐的峰值时间和半松弛时间进行的类似分析表明,两条肌肉的激活能量都较高,在60-80 kJ之间。4。研究结果与生化结果相关,并与A.F. Huxley(1957)的跨桥理论进行了讨论。

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