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Conservation physiology

Showing results (641-650 of 1,112) with videos related to

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Conservation Physiology|June 12, 2020
Heat, health and hatchlings: associations of <i>in situ</i> nest temperatures with morphological and physiological characteristics of loggerhead sea turtle hatchlings from FloridaKelsey A Fleming, Justin R Perrault, Nicole I Stacy, et al.
Conservation Physiology|August 16, 2021
Restoration, conservation and phytoplankton hysteresisMaximilian Berthold, Douglas A Campbell
Conservation Physiology|September 13, 2021
Chemical niches and ionoregulatory traits: applying ionoregulatory physiology to the conservation management of freshwater fishesAlex M Zimmer, Greg G Goss, Chris N Glover
Conservation Physiology|September 16, 2021
Sportive lemurs elevate their metabolic rate during challenging seasons and do not enter regular heterothermyJanina Bethge, Jean Claude Razafimampiandra, Arne Wulff, et al.
Conservation Physiology|June 25, 2020
Normalized difference vegetation index, temperature and age affect faecal thyroid hormone concentrations in free-ranging African elephantsIsabelle D Szott, Yolanda Pretorius, Andre Ganswindt, et al.
Conservation Physiology|June 25, 2020
Basal tolerance but not plasticity gives invasive springtails the advantage in an assemblage settingLaura M Phillips, Ian Aitkenhead, Charlene Janion-Scheepers, et al.
Conservation Physiology|June 18, 2020
Mismatched light and temperature cues disrupt locomotion and energetics via thyroid-dependent mechanismsAmélie Le Roy, Frank Seebacher
Conservation Physiology|June 30, 2022
Integrating earthworm movement and life history through dynamic energy budgetsAndre Gergs, Kim Rakel, Dino Bussen, et al.
Conservation Physiology|December 19, 2022
Multidimensional scaling for animal traits in the context of dynamic energy budget theorySebastiaan A L M Kooijman, Konstadia Lika, Starrlight Augustine, et al.
Conservation Physiology|July 7, 2022
Can fisheries bioenergetics modelling refine spatially explicit assessments of climate change vulnerability?Matthew J Troia, Joshuah S Perkin
Pageof 112

Showing results (641-650 of 1,112) with videos related to

Sort By:
Pageof 112
Conservation Physiology|June 12, 2020
Heat, health and hatchlings: associations of <i>in situ</i> nest temperatures with morphological and physiological characteristics of loggerhead sea turtle hatchlings from FloridaKelsey A Fleming, Justin R Perrault, Nicole I Stacy, et al.
Conservation Physiology|August 16, 2021
Restoration, conservation and phytoplankton hysteresisMaximilian Berthold, Douglas A Campbell
Conservation Physiology|September 13, 2021
Chemical niches and ionoregulatory traits: applying ionoregulatory physiology to the conservation management of freshwater fishesAlex M Zimmer, Greg G Goss, Chris N Glover
Conservation Physiology|September 16, 2021
Sportive lemurs elevate their metabolic rate during challenging seasons and do not enter regular heterothermyJanina Bethge, Jean Claude Razafimampiandra, Arne Wulff, et al.
Conservation Physiology|June 25, 2020
Normalized difference vegetation index, temperature and age affect faecal thyroid hormone concentrations in free-ranging African elephantsIsabelle D Szott, Yolanda Pretorius, Andre Ganswindt, et al.
Conservation Physiology|June 25, 2020
Basal tolerance but not plasticity gives invasive springtails the advantage in an assemblage settingLaura M Phillips, Ian Aitkenhead, Charlene Janion-Scheepers, et al.
Conservation Physiology|June 18, 2020
Mismatched light and temperature cues disrupt locomotion and energetics via thyroid-dependent mechanismsAmélie Le Roy, Frank Seebacher
Conservation Physiology|June 30, 2022
Integrating earthworm movement and life history through dynamic energy budgetsAndre Gergs, Kim Rakel, Dino Bussen, et al.
Conservation Physiology|December 19, 2022
Multidimensional scaling for animal traits in the context of dynamic energy budget theorySebastiaan A L M Kooijman, Konstadia Lika, Starrlight Augustine, et al.
Conservation Physiology|July 7, 2022
Can fisheries bioenergetics modelling refine spatially explicit assessments of climate change vulnerability?Matthew J Troia, Joshuah S Perkin
Pageof 112