首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Comparative architectural properties of limb muscles in Crocodylidae and Alligatoridae and their relevance to divergent use of asymmetrical gaits in extant Crocodylia
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Comparative architectural properties of limb muscles in Crocodylidae and Alligatoridae and their relevance to divergent use of asymmetrical gaits in extant Crocodylia

机译:鳄科和鳄鱼科肢体肌肉的比较建筑特性及其与现存鳄科不对称步态的不同使用的相关性

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摘要

Crocodiles and their kin (Crocodylidae) use asymmetrical (bounding and galloping) gaits when moving rapidly. Despite being morphologically and ecologically similar, it seems alligators and their kin (Alligatoridae) do not. To investigate a possible anatomical basis for this apparent major difference in locomotor capabilities, we measured relative masses and internal architecture (fascicle lengths and physiological cross-sectional areas) of muscles of the pectoral and pelvic limbs of 40 individuals from six representative species of Crocodylidae and Alligatoridae. We found that, relative to body mass, Crocodylidae have significantly longer muscle fascicles (increased working range), particularly in the pectoral limb, and generally smaller muscle physiological cross-sectional areas (decreased force-exerting capability) than Alligatoridae. We therefore hypothesise that the ability of some crocodylians to use asymmetrical gaits may be limited more by the ability to make large, rapid limb motions (especially in the pectoral limb) than the ability to exert large limb forces. Furthermore, analysis of scaling patterns in muscle properties shows that limb anatomy in the two clades becomes more divergent during ontogeny. Limb muscle masses, fascicle lengths and physiological cross-sectional areas scale with significantly larger coefficients in Crocodylidae than Alligatoridae. This combination of factors suggests that inter-clade disparity in maximal limb power is highest in adult animals. Therefore, despite their apparent morphological similarities, both mean values and scaling patterns suggest that considerable diversity exists in the locomotor apparatus of extant Crocodylia.
机译:鳄鱼及其亲属(鳄鱼皮)在快速移动时会使用不对称的步态(有界和疾驰)。尽管在形态和生态上都相似,但似乎短吻鳄和它们的近亲(短吻鳄科)并不相似。为了研究这种运动能力上的主要差异的可能的解剖学基础,我们测量了来自六种鳄科和and科的40个个体的胸腺和骨盆四肢的肌肉的相对质量和内部结构(束长度和生理横截面积)。鳄鱼科。我们发现,相对于体重,湾鳄科具有明显更长的肌肉束(增加的工作范围),尤其是在胸肢,并且比鳄鱼皮科具有更小的肌肉生理横截面面积(降低的发力能力)。因此,我们假设,某些鳄鱼使用不对称步态的能力可能受到进行大型快速肢体运动(特别是在胸侧肢体)的能力的限制,而不是施加较大肢体力量的能力。此外,对肌肉特性的缩放模式的分析表明,在个体发育过程中,两个进化枝的肢体解剖结构变得更加分歧。鳄鱼科的肢体肌肉质量,束长度和生理横截面积的缩放系数远比鳄鱼科大。这些因素的组合表明,成年动物最大肢体力量的膝间差异最大。因此,尽管它们在形态上有明显的相似性,但均值和缩放比例模式均表明,现存的鳄科运动装置中存在相当大的多样性。

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