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The grazing gait and implications of toppling table geometry for primate footfall sequences

机译:放牧步态以及倒塌桌几何对灵长类动物脚步序列的影响

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摘要

Many medium and large herbivores locomote forwards very slowly and intermittently when grazing. While the footfall order during grazing is the same as for walking, the relative fore–hind timing—phasing—is quite different. Extended periods of static stability are clearly required during grazing; however, stability requirements are insufficient to account for the timing. Aspects of relatively rapid rolling and pitching—toppling due to the resistance of the back to bending and twisting—can be included in a simplifying geometric model to explain the observation that, in grazing livestock, a step forward with a forefoot is consistently and immediately followed by a step forward from the hind; but not vice versa. The same principles and geometry, but applied to the footfall pattern of walking primates, show that toppling would occur at a different point in the gait cycle. This provides a potential account for the distinctive diagonal-sequence footfall pattern of primates, as it prevents the instant of toppling from being at forefoot placement. Careful and controlled hand positioning would thus be facilitated, presumably beneficial to walking on top of branches, despite a slight energetic cost compared with the usual lateral sequence pattern of horses.
机译:放牧时,许多中型和大型草食动物的运动非常缓慢且断断续续。放牧时的脚步顺序与步行时的脚步顺序相同,但相对的前后定时(定相)却大不相同。放牧期间显然需要延长静态稳定性。但是,稳定性要求不足以说明时间安排。相对快速的滚动和俯仰的方面(由于背部弯曲和扭曲的阻力而引起的倾倒)可以包含在简化的几何模型中,以解释观察到的事实,即放牧牲畜时,前脚向前和向后不断前进从后方向前走;但反之亦然。相同的原理和几何形状,但适用于步行灵长类动物的脚步模式,表明在步态周期的不同点会发生倾覆。这为灵长类动物独特的对角序列脚步模式提供了一个可能的解释,因为它可以防止倾倒的瞬间发生在前脚位置。因此,与马的通常侧向顺序模式相比,尽管精力成本稍有降低,但有助于进行仔细且受控的手定位,大概有利于在树枝上行走。

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