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上升的能量学:斜坡上的昆虫

Energetics of ascent: insects on inclines.

作者信息

Full R J, Tullis A

机构信息

Department of Integrative Biology, University of California, Berkeley 94720.

出版信息

J Exp Biol. 1990 Mar;149:307-17. doi: 10.1242/jeb.149.1.307.

Abstract

Small animals use more metabolic energy per unit mass than large animals to run on a level surface. If the cost to lift one gram of mass one vertical meter is constant, small animals should require proportionally smaller increases in metabolic cost to run uphill. To test this hypothesis on very small animals possessing an exceptional capacity for ascending steep gradients, we measured the metabolic cost of locomotion in the cockroach, Periplaneta americana, running at angles of 0, 45 and 90 degrees to the horizontal. Resting oxygen consumption (VO2rest) was not affected by incline angle. Steady-state oxygen consumption (VO2ss) increased linearly with speed at all angles of ascent. The minimum cost of locomotion (the slope of the VO2ss versus speed function) increased with increasing angle of ascent. The minimum cost of locomotion on 45 and 90 degrees inclines was two and three times greater, respectively, than the cost during horizontal running. The cockroach's metabolic cost of ascent greatly exceeds that predicted from the hypothesis of a constant efficiency for vertical work. Variations in stride frequency and contact time cannot account for the high metabolic cost, because they were independent of incline angle. An increase in the metabolic cost or amount of force production may best explain the increase in metabolic cost. Small animals, such as P. americana, can easily scale vertical surfaces, but the energetic cost is considerable.

摘要

在水平面上奔跑时,小动物每单位质量所消耗的代谢能量比大动物多。如果将一克质量提升一米垂直高度的成本是恒定的,那么小动物在上坡奔跑时代谢成本的增加幅度应该相对较小。为了在具有非凡爬坡能力的非常小的动物身上验证这一假设,我们测量了美洲大蠊在与水平方向成0度、45度和90度角奔跑时的运动代谢成本。静息耗氧量(VO2rest)不受倾斜角度的影响。在所有上升角度下,稳态耗氧量(VO2ss)均随速度呈线性增加。运动的最低成本(VO2ss与速度函数的斜率)随着上升角度的增加而增加。在45度和90度斜坡上运动的最低成本分别比水平奔跑时的成本高出两倍和三倍。蟑螂的爬坡代谢成本大大超过了垂直工作效率恒定这一假设所预测的成本。步频和接触时间的变化无法解释高代谢成本,因为它们与倾斜角度无关。代谢成本的增加或力量产生量的增加可能最能解释代谢成本的增加。像美洲大蠊这样的小动物能够轻松攀爬垂直表面,但能量成本相当高。

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