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J G Swallow

Showing results (1-10 of 22) with videos related to

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Behavior Genetics|July 22, 1998
Artificial selection for increased wheel-running behavior in house miceJ G Swallow, P A Carter, T Garland
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|December 29, 2000
Aerial performance of stalk-eyed flies that differ in eye spanJ G Swallow, G S Wilkinson, J H Marden
Journal of Applied Physiology (Bethesda, Md. : 1985)|September 28, 2000
Effects of voluntary activity and genetic selection on muscle metabolic capacities in house mice Mus domesticusP Houle-Leroy, T Garland, J G Swallow, et al.
The Journal of Experimental Biology|February 27, 2001
Maximum cold-induced food consumption in mice selected for high locomotor activity: implications for the evolution of endotherm energy budgetsP Koteja, J G Swallow, P A Carter, et al.
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|January 5, 2002
Food consumption and body composition in mice selected for high wheel-running activityJ G Swallow, P Koteja, P A Carter, et al.
Physiological and Biochemical Zoology : PBZ|March 9, 1999
Energy cost of wheel running in house mice: implications for coadaptation of locomotion and energy budgetsP Koteja, J G Swallow, P A Carter, et al.
The Journal of Experimental Biology|August 26, 1999
Artificial selection for increased wheel-running activity in house mice results in decreased body mass at maturityJ G Swallow, P Koteja, P A Carter, et al.
Heredity|January 29, 2002
Response of Sod-2 enzyme activity to selection for high voluntary wheel runningS L Thomson, T Garland, J G Swallow, et al.
Behavior Genetics|September 9, 2000
Nesting behavior of house mice (Mus domesticus) selected for increased wheel-running activityP A Carter, J G Swallow, S J Davis, et al.
The Journal of Heredity|June 21, 2003
The mode of evolution of molecular markers in populations of house mice under artificial selection for locomotor behaviorT J Morgan, T Garland, B L Irwin, et al.
Pageof 3

Showing results (1-10 of 22) with videos related to

Sort By:
Pageof 3
Behavior Genetics|July 22, 1998
Artificial selection for increased wheel-running behavior in house miceJ G Swallow, P A Carter, T Garland
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|December 29, 2000
Aerial performance of stalk-eyed flies that differ in eye spanJ G Swallow, G S Wilkinson, J H Marden
Journal of Applied Physiology (Bethesda, Md. : 1985)|September 28, 2000
Effects of voluntary activity and genetic selection on muscle metabolic capacities in house mice Mus domesticusP Houle-Leroy, T Garland, J G Swallow, et al.
The Journal of Experimental Biology|February 27, 2001
Maximum cold-induced food consumption in mice selected for high locomotor activity: implications for the evolution of endotherm energy budgetsP Koteja, J G Swallow, P A Carter, et al.
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|January 5, 2002
Food consumption and body composition in mice selected for high wheel-running activityJ G Swallow, P Koteja, P A Carter, et al.
Physiological and Biochemical Zoology : PBZ|March 9, 1999
Energy cost of wheel running in house mice: implications for coadaptation of locomotion and energy budgetsP Koteja, J G Swallow, P A Carter, et al.
The Journal of Experimental Biology|August 26, 1999
Artificial selection for increased wheel-running activity in house mice results in decreased body mass at maturityJ G Swallow, P Koteja, P A Carter, et al.
Heredity|January 29, 2002
Response of Sod-2 enzyme activity to selection for high voluntary wheel runningS L Thomson, T Garland, J G Swallow, et al.
Behavior Genetics|September 9, 2000
Nesting behavior of house mice (Mus domesticus) selected for increased wheel-running activityP A Carter, J G Swallow, S J Davis, et al.
The Journal of Heredity|June 21, 2003
The mode of evolution of molecular markers in populations of house mice under artificial selection for locomotor behaviorT J Morgan, T Garland, B L Irwin, et al.
Pageof 3