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A fundamental avian wing-stroke provides a new perspective on the evolution of flight

机译:基本的禽翼冲程为飞行的演变提供了新的视角

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The evolution of avian flight remains one of biology's major controversies, with a long history of functional interpretations of fossil forms given as evidence for either an arboreal or cursorial origin of flight. Despite repeated emphasis on the 'wing-stroke' as a necessary avenue of investigation for addressing the evolution of flight, no empirical data exist on wing-stroke dynamics in an experimental evolutionary context. Here we present the first comparison of wing-stroke kinematics of the primary locomotor modes (descending flight and incline flap-running) that lead to level-flapping flight in juvenile ground birds throughout development (Fig. 1). We offer results that are contrary both to popular perception and inferences from other studies. Starting shortly after hatching and continuing through adulthood, ground birds use a wing-stroke confined to a narrow range of less than 20°, when referenced to gravity, that directs aerodynamic forces about 40° above horizontal, permitting a 180° range in the direction of travel. Based on our results, we put forth an ontogenetic-transitional wing hypothesis that posits that the incremental adaptive stages leading to the evolution of avian flight correspond behaviourally and morphologically to transitional stages observed in ontogenetic forms.
机译:禽类飞行的进化仍然是生物学的主要争议之一,对化石形式的功能性解释已有悠久的历史,可以作为树栖飞行或游击起源的证据。尽管反复强调“机翼冲程”是解决飞行演变研究的必要途径,但在实验性的进化环境下,没有关于机翼冲程动力学的经验数据。在此,我们对主要运动模式(下降飞行和倾斜襟翼运行)的机翼运动学进行了首次比较,这导致了整个发育过程中幼年地面鸟类的水平拍打飞行(图1)。我们提供的结果与流行的看法和其他研究的推论都相反。孵化后不久开始,直到成年,地面鸟使用机翼冲程限制在小于20°的狭窄范围内(以重力为基准),将空气动力引导到高于水平方向40°的位置,从而允许在180°的范围内旅行。根据我们的研究结果,我们提出了个体发育过渡的机翼假说,该假说认为,导致鸟类飞行进化的增量适应阶段在行为上和形态上与以个体发育形式观察到的过渡阶段相对应。

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