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首页> 外文期刊>The Journal of Experimental Biology >High efficiency in human muscle: an anomaly and an opportunity?
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High efficiency in human muscle: an anomaly and an opportunity?

机译:人体肌肉的高效率:异常和机会?

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Can human muscle be highly efficient in vivo? Animal muscles typically show contraction-coupling efficiencies <50% in vitro but a recent study reports that the human first dorsal interosseous (FDI) muscle of the hand has an efficiency value in vivo of 68%. We examine two key factors that could account for this apparently high efficiency value: (1) transfer of cross-bridge work into mechanical work and (2) the use of elastic energy to do external work. Our analysis supports a high contractile efficiency reflective of nearly complete transfer of muscular to mechanical work with no contribution by recycling of elastic energy to mechanical work. Our survey of reported contraction-coupling efficiency values puts the FDI value higher than typical values found in small animals in vitro but within the range of values for human muscle in vivo. These high efficiency values support recent studies that suggest lower Ca2+ cycling costs in working contractions and a decline in cost during repeated contractions. In the end, our analysis indicates that the FDI muscle may be exceptional in having an efficiency value on the higher end of that reported for human muscle. Thus, the FDI muscle may be an exception both in contraction-coupling efficiency and in Ca2+ cycling costs, which makes it an ideal muscle model system offering prime conditions for studying the energetics of muscle contraction in vivo.
机译:人体肌肉能否在体内高效?动物肌肉通常在体外显示出小于50%的收缩耦合效率,但是最近的一项研究报告说,人的第一只手背骨间(FDI)肌肉在体内的效率值为68%。我们研究了两个可以解释这个明显高效率值的关键因素:(1)将跨桥功转换为机械功;(2)利用弹性能进行外部功。我们的分析支持高收缩效率,反映出肌肉几乎完全转移到机械功,而没有通过将弹性能量回收到机械功。我们对报告的收缩耦合效率值的调查显示,FDI值高于体外在小动物中发现的典型值,但在体内人体肌肉的值范围内。这些高效率值支持最近的研究,这些研究表明工作收缩中的Ca2 +循环成本较低,而反复收缩中的成本下降。最后,我们的分析表明,FDI肌肉的效率值可能高于人类肌肉的效率值。因此,FDI肌肉可能在收缩耦合效率和Ca2 +循环成本方面都是例外,这使其成为理想的肌肉模型系统,为研究体内肌肉收缩的能量学提供了主要条件。

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