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Computer Simulations Imply Forelimb-Dominated Underwater Flight in Plesiosaurs

机译:计算机模拟暗示在前蛇颈龙中前肢主导的水下飞行

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摘要

Plesiosaurians are an extinct group of highly derived Mesozoic marine reptiles with a global distribution that spans 135 million years from the Early Jurassic to the Late Cretaceous. During their long evolutionary history they maintained a unique body plan with two pairs of large wing-like flippers, but their locomotion has been a topic of debate for almost 200 years. Key areas of controversy have concerned the most efficient biologically possible limb stroke, e.g. whether it consisted of rowing, underwater flight, or modified underwater flight, and how the four limbs moved in relation to each other: did they move in or out of phase? Previous studies have investigated plesiosaur swimming using a variety of methods, including skeletal analysis, human swimmers, and robotics. We adopt a novel approach using a digital, three-dimensional, articulated, free-swimming plesiosaur in a simulated fluid. We generated a large number of simulations under various joint degrees of freedom to investigate how the locomotory repertoire changes under different parameters. Within the biologically possible range of limb motion, the simulated plesiosaur swims primarily with its forelimbs using an unmodified underwater flight stroke, essentially the same as turtles and penguins. In contrast, the hindlimbs provide relatively weak thrust in all simulations. We conclude that plesiosaurs were forelimb-dominated swimmers that used their hind limbs mainly for maneuverability and stability.
机译:蛇颈龙是一种高度灭绝的中生代海洋爬行动物群,从侏罗纪早期到白垩纪晚期,其分布范围为1.35亿年。在漫长的进化历史中,他们保持着独特的身体计划,其中包括两双大翅膀状的鳍状肢,但近200年来,它们的运动一直是争论的话题。争议的关键领域涉及生物学上最有效的肢体中风,例如它是由划船,水下飞行还是改良的水下飞行组成,以及四个肢体如何相对移动:它们是同相还是异相?先前的研究已经使用多种方法调查了蛇颈龙游泳,包括骨骼分析,人类游泳者和机器人技术。我们采用一种新颖的方法,在模拟流体中使用数字的,三维的,铰接的,自由游动的蛇颈龙。我们在不同的关节自由度下产生了大量的模拟,以研究机体库在不同参数下的变化。在肢体运动的生物学上可能的范围内,模拟的蛇颈龙主要使用其前肢以未经修改的水下飞行冲程游泳,基本上与海龟和企鹅一样。相反,后肢在所有模拟中均提供相对较弱的推力。我们得出的结论是,蛇颈龙是前肢为主的游泳者,其后肢主要用于可操纵性和稳定性。

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