The Behavioral Ecology of Intermittent Locomotion
Open Access
- 1 April 2001
- journal article
- research article
- Published by Oxford University Press (OUP) in American Zoologist
- Vol. 41 (2) , 137-153
- https://doi.org/10.1093/icb/41.2.137
Abstract
Most physiological and ecological approaches to animal locomotion are based on steady state assumptions, yet movements of many animals are interspersed with pauses lasting from milliseconds to minutes. Thus, pauses, along with changes in the duration and speed of moves, form part of a dynamic system of intermittent locomotion by which animals adjust their locomotor behavior to changing circumstances. Intermittent locomotion occurs in a wide array of organisms from protozoans to mammals. It is found in aerial, aquatic and terrestrial locomotion and in many behavioral contexts including search and pursuit of prey, mate search, escape from predators, habitat assessment and general travel. In our survey, animals exhibiting intermittent locomotion paused on average nearly 50% of their locomotion time (range 6–94%). Although intermittent locomotion is usually expected to increase energetic costs as a result of additional expenditure for acceleration and deceleration, a variety of energetic benefits can arise when forward movement continues during pauses. Endurance also can be improved by partial recovery from fatigue during pauses. Perceptual benefits can arise because pauses increase the capacity of the sensory systems to detect relevant stimuli. Several processes, including velocity blur, relative motion detection, foveation, attention and interference between sensory systems are probably involved. In animals that do not pause, alternative mechanisms for stabilizing the perceptual field are often present. Because movement is an important cue for stimulus detection, pauses can also reduce unwanted detection by an organism's predators or prey. Several models have attempted to integrate energetic and perceptual processes, but many challenges remain. Future advances will require improved quantification of the effects of speed on perception.Keywords
This publication has 86 references indexed in Scilit:
- Energetic advantages of burst swimming of fishPublished by Elsevier ,2004
- Swimming behaviour of developmental stages of the calanoid copepod Temora longicornis at different food concentrationsMarine Ecology Progress Series, 1995
- Synchronized and rhythmical activity during the prey capture in the social spiderAnelosimus eximius (Araneae, Theridiidae)Insectes Sociaux, 1991
- Drosophila parasitoid–host interactions: vibrotaxis and ovipositor searching from the host's perspectiveCanadian Journal of Zoology, 1987
- The optimum search speed of terrestrial predators when feeding on sedentary prey: a predictive modelJournal of Theoretical Biology, 1986
- Bounding and undulating flight in birdsJournal of Theoretical Biology, 1985
- Energetics of leaping in dolphins and other aquatic animalsJournal of the Marine Biological Association of the United Kingdom, 1983
- Auditory behavior of the cricketJournal of Comparative Physiology A, 1981
- Visual control of head movements during avian locomotionNature, 1975
- On the Methods of Resource Division in Grassland Bird CommunitiesThe American Naturalist, 1968