Intermittent Locomotion Increases Endurance in a Gecko
- 1 November 1999
- journal article
- research article
- Published by University of Chicago Press in Physiological and Biochemical Zoology
- Vol. 72 (6) , 732-739
- https://doi.org/10.1086/316710
Abstract
Nocturnal geckos can actively forage at low temperatures. A low minimum cost of locomotion allows greater sustainable speeds by partially offsetting the decrease in maximal oxygen consumption ( ) associated with low nocturnal temperatures. The nocturnality hypothesis (Autumn et al. 1997) proposes that the reduced cost of continuous locomotion is a shared, derived characteristic that increases the capacity to sustain locomotion at low temperatures. Yet many lizards move intermittently at speeds exceeding those that elicit . We exercised the frog‐eyed gecko, Teratoscincus przewalskii, continuously and intermittently on a treadmill. At an exercise speed of 0.90 km h−1 (270% maximum aerobic speed), lizards alternating a 15‐s exercise period with a 30‐s pause period exhibited a 1.7‐fold increase in distance capacity (total distance traveled before fatigue) compared with lizards exercised continuously at the same average speed (0.30 km h−1). The average aerobic cost of intermittent exercise was not significantly different from . Locomoting intermittently could augment the increase in endurance resulting from the low minimum cost of continuous locomotion in nocturnal geckos. Intermittent behavior could increase the endurance of lizard movement in general.Keywords
This publication has 26 references indexed in Scilit:
- Secondarily Diurnal Geckos Return to Cost of Locomotion Typical of Diurnal LizardsPhysiological and Biochemical Zoology, 1999
- Post-Exercise Lactate Metabolism: A Comparative Review of Sites, Pathways, and RegulationAnnual Review of Physiology, 1996
- Low Cost of Locomotion Increases Performance at Low Temperature in a Nocturnal LizardPhysiological Zoology, 1994
- Integrating the Physiology, Mechanics and Behavior of Rapid Running Ghost Crabs: Slow and Steady Doesn't Always Win the RaceAmerican Zoologist, 1992
- Search Modes of Birds and Lizards: Evidence for Alternative Movement PatternsThe American Naturalist, 1989
- Search tactics of desert lizards: how polarized are they?Animal Behaviour, 1986
- Physiological Consequences of Thermoregulation in a Tropical Lizard (Ameiva festiva)Physiological Zoology, 1986
- Interhabitat Differences in Energy Acquisition and Expenditure in a LizardEcology, 1984
- Ecological Consequences of Foraging ModeEcology, 1981
- Population density and energetics of lizards on a tropical islandOecologia, 1979