Effective limb length and the scaling of locomotor cost in terrestrial animals

Author:

Pontzer Herman1

Affiliation:

1. Washington University, Department of Anthropology, 119 McMillan Hall,St Louis, MO 63130, USA

Abstract

SUMMARYRelative to body size, smaller animals use more energy to travel a given distance than larger animals, but the anatomical variable driving this negative allometry remains the subject of debate. Here, I report a simple inverse relationship between effective limb length (i.e. hip height) and the energy cost of transport (COT; J kg–1 m–1)for terrestrial animals. Using published data for a diverse set of terrestrial species including birds, mammals, reptiles and arthropods, I show that between-species differences in locomotor cost are driven by differences in limb length. Notably, there is no independent effect of body mass on cost. Remarkably, effective limb length explains 98% of the observed variance in locomotor cost across a wide range of terrestrial species including mammals,birds, reptiles and arthropods. Variation about the limb-length/COT scaling relationship is attributable to taxonomic differences in limb design, with birds and arthropods exhibiting greater residuals than mammals. Differences in COT between semi-aquatic, generalist and cursorial species also corresponds to differences in leg length between these groups. These results are discussed in light of previous investigations of the limb length and locomotor cost.

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

Reference49 articles.

1. Alexander, R. M. (2005). Models and the scaling of energy costs for locomotion. J. Exp. Biol.208,1645-1652.

2. Alexander, R. M. and Jayes, A. S. (1983). A dynamic similarity hypothesis for the gaits of quadrupedal mammals. J. Zool. Lond.201,135-152.

3. Biewener, A. A. (1989). Scaling body support in mammals: Limb posture and muscle mechanics. Science245, 45-48.

4. Brisswalter, J., Limbros, P. and Durand, M.(1996). Running economy, preferred step length correlated to body dimensions in elite middle-distance runners. J. Sports Med. Phys. Fitness36,7-15.

5. Cavanagh, P. R. and Kram, R. (1989). Stride length in distance running – velocity, body dimensions, and added mass effects. Med. Sci. Sports Exerc.21,467-479.

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