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首页> 外文期刊>Journal of herpetology >Aquatic Locomotor Kinematics of the Eastern Water Dragon (Intellagama lesueurii)
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Aquatic Locomotor Kinematics of the Eastern Water Dragon (Intellagama lesueurii)

机译:东部水龙(Intellagama lesueurii)的水上运动运动学

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摘要

Quantitative studies of the axial undulatory swimming techniques used by secondarily aquatic vertebrates have been largely restricted to crocodilians. Numerous members of the suborder Lacertilia (lizards) are also known to swim using axial undulatory techniques, but how they do so has received minimal attention from the scientific community. We investigated the morphology and undulatory locomotor kinematics adopted by the Eastern Water Dragon (Intellagama lesueurii) through observation of natural swimming and filming of animals in a flume tank with a high speed camera. We found that morphological modifications associated with improved swimming ability and correlations between wave characteristics and swimming velocity are limited to the tail. The shape of dorsal spines and the reduction in the width of transverse processes of the caudal vertebrae result in a mediolaterally compressed tail instead of the typically rounded or dorsoventrally compressed tail seen in other Australian agamids. Axial undulatory swimming in I. lesueurii was found to be conceptually similar to that of crocodilians, but the relatively long and thin terminal part of the tail produces a different shaped undulatory wave. Unlike crocodilians and fishes, I. lesueurii does not use frequency moderated velocity control. Instead, changes in velocity are solely controlled by the phase speed of the propagating wave. The combined effect of these traits is comparable efficiency and performance in the water relative to that of crocodilians and an improvement relative to terrestrial lizards.
机译:次生水生脊椎动物使用的轴向波状游泳技术的定量研究在很大程度上局限于鳄鱼。还已知亚目羊驼(蜥蜴)的许多成员会使用轴向波动技术游泳,但是如何进行却很少受到科学界的关注。我们通过观察自然游泳和在高速水箱中在水槽中拍摄动物,研究了东方水龙(Intellagama lesueurii)所采用的形态和起伏运动运动学。我们发现与改进的游泳能力以及波浪特征和游泳速度之间的相关性相关的形态学修饰仅限于尾巴。背棘的形状和尾椎横突宽度的减小导致了尾巴压缩的尾巴,而不是其他澳大利亚蜥蜴中通常呈圆形或背侧压缩的尾巴。莱苏里氏菌的轴向波动性游泳在概念上与鳄鱼相似,但尾巴相对较长和较细的末端会产生不同形状的波动性波浪。与鳄鱼和鱼类不同,莱索伊不使用频率调节的速度控制。相反,速度的变化仅由传播波的相速度控制。这些特性的综合效果是,在水中的效率和性能与鳄鱼皮相当,并且相对于陆地蜥蜴有所改善。

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