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亚洲象的运动生物力学。

Biomechanics of locomotion in Asian elephants.

机构信息

Unité de physiologie et de biomécanique de la locomotion, IEPR, Université catholique de Louvain, Louvain-la-Neuve, 1348, Belgium.

出版信息

J Exp Biol. 2010 Mar 1;213(5):694-706. doi: 10.1242/jeb.035436.

Abstract

Elephants are the biggest living terrestrial animal, weighing up to five tons and measuring up to three metres at the withers. These exceptional dimensions provide certain advantages (e.g. the mass-specific energetic cost of locomotion is decreased) but also disadvantages (e.g. forces are proportional to body volume while supportive tissue strength depends on their cross-sectional area, which makes elephants relatively more fragile than smaller animals). In order to understand better how body size affects gait mechanics the movement of the centre of mass (COM) of 34 Asian elephants (Elephas maximus) was studied over their entire speed range of 0.4-5.0 m s(-1) with force platforms. The mass-specific mechanical work required to maintain the movements of the COM per unit distance is approximately 0.2 J kg(-1) m(-1) (about 1/3 of the average of other animals ranging in size from a 35 g kangaroo rat to a 70 kg human). At low speeds this work is reduced by a pendulum-like exchange between the kinetic and potential energies of the COM, with a maximum energy exchange of approximately 60% at 1.4 m s(-1). At high speeds, elephants use a bouncing mechanism with little exchange between kinetic and potential energies of the COM, although without an aerial phase. Elephants increase speed while reducing the vertical oscillation of the COM from about 3 cm to 1 cm.

摘要

大象是现存最大的陆生动物,体重可达五吨,肩高可达三米。这些特殊的体型为它们提供了一定的优势(例如,单位质量的运动能耗降低),但也带来了一些劣势(例如,力量与身体体积成正比,而支撑组织的强度取决于其横截面积,这使得大象比小型动物相对脆弱)。为了更好地理解体型如何影响步态力学,研究人员使用力台研究了 34 头亚洲象(Elephas maximus)在 0.4-5.0 m s(-1) 的整个速度范围内的质心(COM)运动。维持 COM 运动所需的单位距离的比机械功约为 0.2 J kg(-1) m(-1)(约为其他动物(从 35 克袋鼠到 70 公斤人类)平均水平的 1/3)。在低速时,COM 的动能和势能之间会发生类似于钟摆的交换,从而降低了工作,最大能量交换约为 1.4 m s(-1)时的 60%。在高速时,大象使用一种弹跳机制,COM 的动能和势能之间几乎没有交换,尽管没有空中阶段。大象在降低 COM 的垂直摆动幅度(从约 3 厘米到 1 厘米)的同时提高了速度。

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