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Journal of Thermal Biology|January 8, 2019
Thermoregulation in rapid growing broiler chickens is compromised by constraints on radiative and convective cooling performancePeter G Tickle, Jonathan R CoddComparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology|February 16, 2010
Load carrying during locomotion in the barnacle goose (Branta leucopsis): the effect of load placement and sizePeter G Tickle, Mark F Richardson, Jonathan R CoddPlos One|October 17, 2012
Barnacle geese achieve significant energetic savings by changing posturePeter G Tickle, Robert L Nudds, Jonathan R CoddScientific Reports|March 16, 2018
Energy allocation and behaviour in the growing broiler chickenPeter G Tickle, John R Hutchinson, Jonathan R CoddThe Journal of Physiology|February 4, 2020
Impaired skeletal muscle performance as a consequence of random functional capillary rarefaction can be restored with overload-dependent angiogenesisPeter G Tickle, Paul W Hendrickse, Hans Degens, et al.Experimental Physiology|April 7, 2023
Skeletal muscle adaptation to indirect electrical stimulation: divergence between microvascular and metabolic adaptationsRoger W P Kissane, David Hauton, Peter G Tickle, et al.Scientific Reports|November 3, 2016
The peacock train does not handicap cursorial locomotor performanceNathan K Thavarajah, Peter G Tickle, Robert L Nudds, et al.Peerj|July 30, 2014
Anatomical and biomechanical traits of broiler chickens across ontogeny. Part I. Anatomy of the musculoskeletal respiratory apparatus and changes in organ sizePeter G Tickle, Heather Paxton, Jeffery W Rankin, et al.Peerj|July 30, 2014
Anatomical and biomechanical traits of broiler chickens across ontogeny. Part II. Body segment inertial properties and muscle architecture of the pelvic limbHeather Paxton, Peter G Tickle, Jeffery W Rankin, et al.The Journal of Physiology|June 9, 2021
Impaired skeletal muscle fatigue resistance during cardiac hypertrophy is prevented by functional overload- or exercise-induced functional capillarityPeter G Tickle, Paul W Hendrickse, Andrew Weightman, et al.Pageof 2