【24h】

Scaling of work and power in a locomotor muscle of a frog

机译:在青蛙的运动肌肉中的工作和力量的扩展

获取原文
获取原文并翻译 | 示例
       

摘要

Muscle work and power are important determinants of movement performance in animals. How these muscle properties scale determines, in part, the scaling of performance during movements, such as jump height or distance. Muscle-mass-specific work is predicted to remain constant across a range of scales, assuming geometric similarity, while muscle-mass-specific power is expected to decrease with increasing scale. We tested these predictions by examining muscle morphology and contractile properties of plantaris muscles from frogs ranging in mass from 1.28 to 20.60 g. Scaling of muscle work and power was examined using both linear regression on log(10)-transformed data (LR) and non-linear regressions on untransformed data (NLR). Results depended on the method of regression not because of large changes in scaling slopes, but because of changing levels of statistical significance using corrections for multiple tests, demonstrating the importance of careful consideration of statistical methods when analyzing patterns of scaling. In LR, muscle-mass-specific work decreased with increasing scale, but an accompanying positive allometry of muscle mass predicts constant movement performance at all scales. These relationships were non-significant in NLR, though scaling with geometric similarity also predicts constant jump performance across scales, because of proportional increases in available muscle energy and body mass. Both intrinsic shortening velocity and muscle-mass-specific power were positively allometric in both types of analysis. Nonetheless, scale accounts for little variation in contractile properties overall over the range examined, indicating that other sources of intraspecific variation may be more important in determining muscle performance and its effects on movement.
机译:肌肉工作和力量是动物运动性能的重要决定因素。这些肌肉属性尺度如何部分地确定运动期间的性能,例如跳跃高度或距离。预测肌肉质量特定的工作预计在一系列尺度范围内保持恒定,假设几何相似性,而肌肉质量特定的功率将随着规模的增加而减小。我们通过从群众从1.28到20.60g的青蛙检查Plantaris肌肉的肌肉形态和收缩性能来测试这些预测。使用Log(10)-Transformed数据(LR)上的线性回归和在未转化的数据(NLR)上的非线性回归中检查肌肉工作和力量的缩放。结果取决于回归的方法,而不是因为缩放斜率的大变化,但由于使用多种测试的校正改变统计显着性水平,表明在分析缩放模式时仔细考虑统计方法的重要性。在LR中,肌肉质量特异性工作随着规模的增加而降低,但伴随的肌肉质量的正态度预测了所有尺度的恒定运动性能。这些关系在NLR中是非显着的,但是由于具有几何相似性的缩放也预测尺寸的恒定跳跃性能,因为可用肌肉能量和体重的比例增加。两种类型的分析中,本质缩短速度和肌肉质量特异性功率都是正常的。尽管如此,规模占对所检查范围的整体收缩性能的几乎没有变化,表明在确定肌肉性能及其对运动的影响方面可能更为重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号