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首页> 外文期刊>The Journal of Experimental Biology >The locomotor kinematics and ground reaction forces of walking giraffes
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The locomotor kinematics and ground reaction forces of walking giraffes

机译:行走长颈鹿的运动运动学和地面反应力

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Giraffes (Giraffe camelopardalis) possess specialised anatomy. Their disproportionately elongate limbs and neck confer recognised feeding advantages, but little is known about how their morphology affects locomotor function. In this study, we examined the stride parameters and ground reaction forces from three adult giraffes in a zoological park, across a range of walking speeds. The patterns of GRFs during walking indicate that giraffes, similar to other mammalian quadrupeds, maintain a forelimb-biased weight distribution. The angular excursion of the neck has functional links with locomotor dynamics in giraffes, and was exaggerated at faster speeds. The horizontal accelerations of the neck and trunk were out of phase compared with the vertical accelerations, which were intermediate between in and out of phase. Despite possessing specialised morphology, giraffe's stride parameters were broadly predicted from dynamic similarity, facilitating the use of other quadrupedal locomotion models to generate testable hypotheses in giraffes.
机译:长颈鹿(长颈鹿Camelopardalis)拥有专门的解剖学。它们不成比例地伸长的肢体和颈部授予公认的饲养优势,但毫无疑问地知道它们的形态如何影响运动功能。在这项研究中,我们研究了一系列步行速度的动物园三个成年长颈鹿的步幅和地面反应力。步行过程中GRF的图案表明长颈鹿类似于其他哺乳动物四桥,维持前肢偏置的重量分布。颈部的角度偏移具有与长颈鹿的运动动力学功能的功能性,并以更快的速度夸大。与垂直加速度相比,颈部和躯干的水平加速度与垂直加速度相比,其在进出相之间中间体。尽管具有专门的形态,但长颈鹿的步伐参数广泛地预测了动态相似性,促进了其他四桥运动模型在长颈鹿中产生可测试假设。

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