首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Tuataras and salamanders show that walking and running mechanics are ancient features of tetrapod locomotion
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Tuataras and salamanders show that walking and running mechanics are ancient features of tetrapod locomotion

机译:Tuataras和sal显示,步行和跑步机制是四脚架运动的古老特征

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摘要

The lumbering locomotor behaviours of tuataras and salamanders are the best examples of quadrupedal locomotion of early terrestrial vertebrates. We show they use the same walking (out-of-phase) and running (in-phase) patterns of external mechanical energy fluctuations of the centre-of-mass known in fast moving (cursorial) animals. Thus, walking and running centre-of-mass mechanics have been a feature of tetrapods since quadrupedal locomotion emerged over 400 million years ago. When walking, these sprawling animals save external mechanical energy with the same pendular effectiveness observed in cursorial animals. However, unlike cursorial animals (that change footfall patterns and mechanics with speed), tuataras and salamanders use only diagonal couplet gaits and indifferently change from walking to running mechanics with no significant change in total mechanical energy. Thus, the change from walking to running is not related to speed and the advantage of walking versus running is unclear. Furthermore, lumbering mechanics in primitive tetrapods is reflected in having total mechanical energy driven by potential energy (rather than kinetic energy as in cursorial animals) and relative centre-of-mass displacements an order of magnitude greater than cursorial animals. Thus, large vertical displacements associated with lumbering locomotion in primitive tetrapods may preclude their ability to increase speed.
机译:ata鹦鹉和sal的笨拙的运动行为是早期陆地脊椎动物四足运动的最好例子。我们显示他们使用了在快速移动(游标)动物中已知的重心外部机械能波动的相同的行走(异相)和运行(同相)模式。因此,自从四足运动出现以来,四足动物的行走和跑步成为了四足动物的主要特征。当走路时,这些散乱的动物可以节省外部机械能,而在游标动物中观察到的摆动效果相同。但是,与游标动物(会随速度改变行人形态和力学)不同,tu鹦鹉和sal只使用对角步态,从走路到跑步的动作都无动于衷,总机械能没有明显变化。因此,从步行到跑步的变化与速度无关,并且步行与跑步的优势并不清楚。此外,原始四足动物的伐木力学反映为总机械能由势能驱动(而不是像游击动物那样动能),并且相对质心位移比游动动物大一个数量级。因此,与原始四足动物的伐木运动相关的较大的垂直位移可能会阻止它们提高速度的能力。

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