Iaizzo P A, Poppele R E
Department of Physiology, University of Minnesota, Minneapolis.
Muscle Nerve. 1990 Dec;13(12):1105-12. doi: 10.1002/mus.880131204.
We recorded isometric and isotonic twitches, in situ, from the cat soleus at various muscle lengths and temperatures. At a given temperature the duration of isometric twitches increased approximately 60% for each 10% increase in muscle length, which was primarily owing to decreases in the rate of relaxation. For the relaxation of isometric twitches recorded at different muscle lengths, the equivalent activation energies determined were the same (13.2 +/- 0.3 kcal/M). The duration of isotonic twitch contractions increased only 20% for each 10% increase in muscle length. Even a small amount of shortening (3%) diminished the dependence of twitch duration on muscle length. In this case, twitch duration increased approximately 30% for every 10% increase in muscle length. Hence, even small changes in internal and/or external compliance (eg, changes in the tendon-fiber continuity) can greatly influence twitch duration. Our findings are consistent with the hypotheses that in the cat soleus, Ca2+ sequestration is primarily governed by a single energy dependent process and that the Ca2+ sensitivity of the contractile apparatus increases with increasing sarcomere length.
我们在不同肌肉长度和温度下,对猫的比目鱼肌进行了原位等长和等张抽搐记录。在给定温度下,肌肉长度每增加10%,等长抽搐的持续时间大约增加60%,这主要是由于舒张速率降低所致。对于在不同肌肉长度下记录的等长抽搐的舒张过程,所确定的等效活化能是相同的(13.2±0.3千卡/摩尔)。肌肉长度每增加10%,等张抽搐收缩的持续时间仅增加20%。即使是少量的缩短(3%)也会减少抽搐持续时间对肌肉长度的依赖性。在这种情况下,肌肉长度每增加10%,抽搐持续时间大约增加30%。因此,即使内部和/或外部顺应性的微小变化(例如,肌腱-纤维连续性的变化)也会极大地影响抽搐持续时间。我们的研究结果与以下假设一致:在猫的比目鱼肌中,Ca2+的螯合主要由单一的能量依赖性过程控制,并且收缩装置的Ca2+敏感性随肌节长度的增加而增加。