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首页> 外文期刊>The Journal of Experimental Biology >The effects of surface diameter and incline on the hindlimb kinematics of an arboreal lizard (Anolis sagrei)
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The effects of surface diameter and incline on the hindlimb kinematics of an arboreal lizard (Anolis sagrei)

机译:表面直径和倾斜度对树栖蜥蜴(Anolis sagrei)后肢运动学的影响

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摘要

Arboreal animals often move in habitats with dense vegetation, narrow perches and variable inclines, but effects of arboreal habitat structure on locomotor function are poorly understood for most animals. Several species of Anolis lizards, which have served as a model group for relating locomotor performance to morphology, have decreased maximal sprinting speeds when perch diameter decreases. However, the effects of perch diameter on the limb movements of Anolis have not been previously studied. Hence, we quantified the hindlimb movements of Anolis sagrei, which naturally occurs on a wide variety of perch diameters and inclines. We analyzed similar speeds of steady locomotion for combinations of flat surfaces and round perches with diameters of 1, 3, 6 and 10 cm and inclines of 0degrees and uphill 45degrees and 90degrees. Diameter significantly affected more kinematic variables than incline, but many kinematic variables changed little with increases in diameter beyond 6 cm. As surface diameter increased, the limb posture of A. sagrei became progressively more sprawled. Significantly greater knee flexion during stance was important for locating the toot more medially during movement on narrow perches. Stride length increased and femur depression, femur retraction and long-axis femur rotation decreased significantly as the surface diameter increased. The low hip heights on the vertical incline and the narrowest perches suggest that bringing the center of mass closer to the locomotor surface is important in these circumstances for reducing the tendency to topple backwards or sideways. Most of the kinematic changes of A. sagrei with decreased perch diameter were opposite those correlated with increased speeds of locomotion for terrestrial lizards. The foot was most lateral to the hip during the swing phase and maximal lateral displacements decreased with decreased perch diameter. Consequently, the width required to accommodate limb movement also decreased as perch diameter decreased.
机译:乔木动物通常在植被茂密,栖息处狭窄和坡度变化的栖息地中移动,但大多数动物对乔木栖息地结构对运动功能的影响了解甚少。几种Anolis蜥蜴作为将运动性能与形态相关联的模型组,当鲈鱼直径减小时,其最大冲刺速度降低。但是,以前没有研究过鲈鱼直径对Anolis肢体运动的影响。因此,我们量化了Anolis sagrei的后肢运动,该运动自然发生在各种各样的鲈鱼直径和倾斜度上。我们分析了直径分别为1、3、6和10 cm以及0度和45度和90度上坡的圆形表面和平面的组合的稳定运动的相似速度。直径比倾斜影响更多的运动学变量,但是随着直径增加超过6 cm,许多运动学变量变化不大。随着表面直径的增加,萨格里农杆菌的肢体姿势逐渐变得更加伸开。站立时明显增加膝盖的屈曲对于在狭窄的栖息处运动时将趾骨更靠内地定位很重要。随着表面直径的增加,步幅增加,股骨凹陷,股骨缩回和长轴股骨旋转明显降低。垂直倾斜处较低的髋部高度和最窄的栖息处表明,在这些情况下,使重心更靠近运动表面对于减少向后或向侧面倾倒的趋势很重要。栖息直径减小的萨格里弧菌的大部分运动学变化与陆生蜥蜴运动速度增加相关。在挥杆阶段,脚最靠近臀部,并且最大横向位移随着栖息直径的减小而减小。因此,随着肢体直径的减小,适应肢体运动所需的宽度也减小了。

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