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How to build your dragon: scaling of muscle architecture from the world’s smallest to the world’s largest monitor lizard

机译:如何建造巨龙:将肌肉结构从世界上最小的蜥蜴缩放到世界上最大的蜥蜴

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摘要

BackgroundThe functional design of skeletal muscles is shaped by conflicting selective pressures between support and propulsion, which becomes even more important as animals get larger. If larger animals were geometrically scaled up versions of smaller animals, increases in body size would cause an increase in musculoskeletal stress, a result of the greater scaling of mass in comparison to area. In large animals these stresses would come dangerously close to points of failure. By examining the architecture of 22 hindlimb muscles in 27 individuals from 9 species of varanid lizards ranging from the tiny 7.6 g Varanus brevicauda to the giant 40 kg Varanus komodoensis, we present a comprehensive dataset on the scaling of musculoskeletal architecture in monitor lizards (varanids), providing information about the phylogenetic constraints and adaptations of locomotor muscles in sprawling tetrapods.
机译:背景技术骨骼肌的功能设计是由支撑和推进之间的选择性压力相互冲突形成的,随着动物的成长,这一点变得尤为重要。如果较大的动物是按几何比例放大的较小动物的版本,则体型增加会导致骨骼肌肉压力增加,这是与区域相比质量更大的结果。在大型动物中,这些压力会很危险地接近失效点。通过检查从9种变态蜥蜴(从7.6 g短变种Varanus brevicauda到巨型40 kg变种Varanus komodoensis)的27种个体中的27个个体的22条后肢肌肉的结构,我们提供了关于监控蜥蜴(varanids)的肌肉骨骼结构缩放比例的综合数据集。 ,提供有关四足动物的运动发育系统发育限制和适应性肌肉的信息。

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