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首页> 外文期刊>Journal of the Royal Society Interface >The three-dimensional locomotor dynamics of African (Loxodonta africana) and Asian (Elephas maximus) elephants reveal a smooth gait transition at moderate speed
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The three-dimensional locomotor dynamics of African (Loxodonta africana) and Asian (Elephas maximus) elephants reveal a smooth gait transition at moderate speed

机译:非洲(Loxodonta africana)和亚洲(Elephas maximus)大象的三维运动动力学显示,在中等速度下步态过渡平稳

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We examined whether elephants shift to using bouncing (i.e. running) mechanics at any speed. To do this, we measured the three-dimensional centre of mass (CM) motions and torso rotations of African and Asian elephants using a novel multisensor method. Hundreds of continuous stride cycles were recorded in the field. African and Asian elephants moved very similarly. Near the mechanically and metabolically optimal speed (a Froude number (Fr) of 0.09), an inverted pendulum mechanism predominated. With increasing speed, the locomotor dynamics quickly but continuously became less like vaulting and more like bouncing. Our mechanical energy analysis of the CM suggests that at a surprisingly slow speed (approx. 2.2 m s~(-1), Fr 0.25), the hindlimbs exhibited bouncing, not vaulting, mechanics during weight support. We infer that a gait transition happens at this relatively slow speed: elephants begin using their compliant hindlimbs like pogo sticks to some extent to drive the body, bouncing over their relatively stiff, vaulting forelimbs. Hence, they are not as rigid limbed as typically characterized for graviportal animals, and use regular walking as well as at least one form of running gait.
机译:我们检查了大象是否以任何速度转向使用弹跳(即跑步)机制。为此,我们使用新颖的多传感器方法测量了非洲和亚洲大象的三维质心(CM)运动和躯干旋转。现场记录了数百个连续的步幅。非洲和亚洲大象的移动非常相似。在机械和代谢最佳速度附近(弗劳德数(Fr)为0.09),倒立摆机制占主导地位。随着速度的增加,运动动力学迅速但连续地变得不像跳马而是越来越像弹跳。我们对CM的机械能分析表明,以惊人的缓慢速度(约2.2 m s〜(-1),Fr 0.25),后肢在举重过程中表现出弹跳而不是起伏的力学。我们推断步态转换是以相对较慢的速度发生的:大象在某种程度上开始使用像弹簧娃娃那样的顺应性后肢来驱动身体,在相对较硬的,拱形的前肢上弹跳。因此,它们不像通常在食肉动物中所表现的那样僵硬,并且使用常规步行以及至少一种跑步步态。

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