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Contraction coupling efficiency of human first dorsal interosseous muscle

机译:人类第一背骨间肌的收缩耦合效率

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摘要

During working contractions, chemical energy in the form of ATP is converted to external work. The efficiency of this conversion, called ‘contraction coupling efficiency’, is calculated by the ratio of work output to energy input from ATP splitting. Experiments on isolated muscles and permeabilized fibres show the efficiency of this conversion has a wide range, 0.2–0.7. We measured the work output in contractions of a single human hand muscle in vivo and of the ATP cost of that work to calculate the contraction coupling efficiency of the muscle. Five subjects performed six bouts of rapid voluntary contractions every 1.5 s for 42 s (28 contractions, each with time to peak force < 150 ms). The bouts encompassed a 7-fold range of workloads. The ATP cost during work was quantified by measuring the extent of chemical changes within the muscle from 31P magnetic resonance spectra. Contraction coupling efficiency was determined as the slope of paired measurements of work output and ATP cost at the five graded work loads. The results show that 0.68 of the chemical energy available from ATP splitting was converted to external work output. A plausible mechanism to account for this high value is a substantially lower efficiency for mitochondrial ATP synthesis. The method described here can be used to analyse changes in the overall efficiency determined from oxygen consumption during exercise that can occur in disease or with age, and to test the hypothesis that such changes are due to reduced contraction coupling efficiency.
机译:在工作收缩期间,ATP形式的化学能转换为外部功。这种转换的效率称为“收缩耦合效率”,由ATP分解产生的功输出与能量输入的比值计算得出。在孤立的肌肉和渗透的纤维上进行的实验表明,这种转换的效率范围很广,为0.2-0.7。我们测量了单个人的手部肌肉在体内收缩的功输出以及该功的ATP成本,以计算肌肉的收缩耦合效率。五名受试者每1.5 s进行六次快速自愿收缩,持续42 s(28次收缩,每次峰值力<150 ms)。争夺包括7倍的工作量范围。通过测量 31 P磁共振波谱测定肌肉内化学变化的程度来量化工作期间的ATP成本。收缩耦合效率被确定为在五个分级工作负荷下工作输出和ATP成本的成对测量值的斜率。结果表明,ATP分解可利用的化学能的0.68被转换为外部功输出。解释这种高价值的合理机制是线粒体ATP合成的效率大大降低。此处描述的方法可用于分析总体运动效率的变化,该运动效率是由运动中的氧气消耗确定的,该运动可能因疾病或年龄而发生,并检验这种变化是由于收缩耦合效率降低而造成的。

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