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A new look at the Dynamic Similarity Hypothesis: the importance of swing phase

机译:动态相似假说的新视角:摆动阶段的重要性

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The Dynamic Similarity Hypothesis (DSH) suggests that when animals of different size walk at similar Froude numbers (equal ratios of inertial and gravitational forces) they will use similar size-corrected gaits. This application of similarity theory to animal biomechanics has contributed to fundamental insights in the mechanics and evolution of a diverse set of locomotor systems. However, despite its popularity, many mammals fail to walk with dynamically similar stride lengths, a key element of gait that determines spontaneous speed and energy costs. Here, we show that the applicability of the DSH is dependent on the inertial forces examined. In general, the inertial forces are thought to be the centripetal force of the inverted pendulum model of stance phase, determined by the length of the limb. If instead we model inertial forces as the centripetal force of the limb acting as a suspended pendulum during swing phase (determined by limb center of mass position), the DSH for stride length variation is fully supported. Thus, the DSH shows that inter-specific differences in spatial kinematics are tied to the evolution of limb mass distribution patterns. Selection may act on morphology to produce a given stride length, or alternatively, stride length may be a “spandrel” of selection acting on limb mass distribution.
机译:动态相似性假设(DSH)表明,当不同大小的动物以相似的弗洛德数(惯性力和重力的比率相等)行走时,它们将使用类似的尺寸校正步态。相似性理论在动物生物力学中的这种应用,为各种运动系统的力学和进化提供了基本的见识。然而,尽管它很受欢迎,但许多哺乳动物仍不能以动态相似的步幅行走,步幅是决定自发速度和能量消耗的步态关键要素。在这里,我们表明DSH的适用性取决于所检查的惯性力。通常,惯性力被认为是姿态相的倒立摆模型的向心力,它由肢体的长度决定。相反,如果我们将惯性力建模为挥杆阶段(由肢体的质心位置决定)在悬垂摆时肢体的向心力,则完全支持步幅变化的DSH。因此,DSH表明空间运动学上的种间差异与肢体质量分布模式的演变有关。选择可以作用于形态以产生给定的步幅,或者步幅可以是作用于肢体质量分布的“选择”。

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