首页> 外文期刊>The Journal of Experimental Biology >Ontogenetic scaling of pelvic limb muscles, tendons and locomotor economy in the ostrich (Struthio camelus)
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Ontogenetic scaling of pelvic limb muscles, tendons and locomotor economy in the ostrich (Struthio camelus)

机译:鸵鸟(Struthio Camelus)的盆腔肢体肌肉,肌腱和运动经济的植入鳞片

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摘要

In rapidly growing animals there are numerous selective pressures and developmental constraints underpinning the ontogenetic development of muscle-tendon morphology and mechanical properties. Muscle force generating capacity, tendon stiffness, elastic energy storage capacity and efficiency were calculated from muscle and tendon morphological parameters and in vitro tendon mechanical properties obtained from a growth series of ostrich cadavers. Ontogenetic scaling relationships were established using reduced major axis regression analysis. Ostrich pelvic limb muscle mass and cross-sectional area broadly scaled with positive allometry, indicating maintained or relatively greater capacity for maximum isometric force generation in larger animals. The length of distal limb tendons was found to scale with positive allometry in several tendons associated with antigravity support and elastic energy storage during locomotion. Distal limb tendon stiffness scaled with negative allometry with respect to body mass, with tendons being relatively more compliant in larger birds. Tendon material properties also appeared to be size-dependent, suggesting that the relative increased compliance of tendons in larger ostriches is due in part to compensatory distortions in tendon material properties during maturation and development, not simply from ontogenetic changes in tendon geometry. Our results suggest that the previously reported increase in locomotor economy through ontogeny in the ostrich is due to greater potential for elastic energy storage with increasing body size. In fact, the rate of this increase may be somewhat greater than the conservative predictions of previous studies, thus illustrating the biological importance of elastic tendon structures in adult ostriches.
机译:在快速生长的动物中,存在许多选择性压力和发育限制,支撑肌腱形态和机械性能的植入植物。从肌肉和肌腱形态参数计算肌肉力产生能力,肌腱刚度,弹性能量存储能力和效率,并从鸵鸟尸体的生长系列中获得的体外肌腱机械性能。使用减少的主要轴回归分析建立了Ontogency缩放关系。鸵鸟盆肢肌肉质量和横截面积宽度较大,呈阳性差异,表明在较大动物中保持或相对更大的容量。发现远端肢体肌腱的长度在与抗粘附支撑和运动期间的弹性能量存储相关的几个肌腱中呈现阳性血管。远端肢体肌腱刚度缩小了相对于体重的负数,肌腱在较大的鸟类中相对较强。肌腱材料特性也似乎依赖于尺寸,表明肌腱在较大的鸵鸟中的相对增加的顺应性部分是成熟和发育期间肌腱材料特性中的补偿扭曲,而不仅仅是来自肌腱几何形状的组织变化。我们的研究结果表明,先前报道了鸵鸟在鸵鸟中的运动经济的增加是由于体尺寸增加的弹性储存潜力。事实上,这种增加的速率可能略微大于对先前研究的保守预测,从而说明了成年鸵鸟中弹性肌腱结构的生物重要性。

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