首页> 外文期刊>The European physical journal, E. Soft matter >Movement in a gravitational field: The question of limb interarticular coordination in terrestrial vertebrates Physical constraints of morphogenesis and evolution. Guest editors: V. Fleury, P. Fran?ois and M-C. Ho Ba Tho
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Movement in a gravitational field: The question of limb interarticular coordination in terrestrial vertebrates Physical constraints of morphogenesis and evolution. Guest editors: V. Fleury, P. Fran?ois and M-C. Ho Ba Tho

机译:重力场中的运动:陆生脊椎动物肢体关节间协调的问题形态发生和演化的物理约束。客座编辑:V. Fleury,P. Fran?ois和M-C。何巴吞

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摘要

In this paper, we demonstrated that interarticular coordination of terrestrial tetrapods emerges from an environment highly constrained by friction and the gravitational field. We briefly review recent works on the jumping behavior in squamates, lemurs and amphibians. We then explore previously published work as well as some unpublished experimental data on human jumping. Finally, we end by inferring locomotion in some of the first limbed vertebrates using a simulation procedure. All these data show that despite changes in shape, structure, and motor controls of taxa, the same spatio-temporal sequence of joint displacements always occurs when the movement is executed in a terrestrial environment. Comparison with aquatic locomotion argues for the hypothesis that this pattern emerged in early terrestrial tetrapods as a response to the gravitational constraint and the terrestrial frictional environment.
机译:在本文中,我们证明了陆生四足动物的关节间协调性是在受到摩擦和重力场高度约束的环境中出现的。我们简要回顾一下有关鳞状,狐猴和两栖动物跳跃行为的最新著作。然后,我们探索先前发表的有关人类跳跃的著作以及一些未发表的关于人体跳跃的实验数据。最后,我们通过模拟程序推断出一些最初的四肢脊椎动物的运动。所有这些数据表明,尽管在类群的形状,结构和运动控制方面发生了变化,但在地面环境中执行运动时,关节位移的时空序列总是相同的。与水上运动的比较提出了这样的假说,即这种模式出现在早期的四足动物中,是对重力约束和陆地摩擦环境的反应。

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