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- Jacobsen et al., 2026, Neither rats nor mice have a broad thermoneutral zone implications for physiological studies.
- Tupone et al., 2024, Inhibition of anteroventral periventricular nucleus (AVPe) unveils a novel central circuit controlling thermoregulatory inversion and a torpor-like state.
- Mella et al., 2024, Hot climate, hot koalas, the role of weather, behaviour and disease on thermoregulation
- Rissmann et al., 2022, Baseline of Physiological Body Temperature and Hematological Parameters in Captive Rousettus aegyptiacus and Eidolon helvum Fruit Bats
- Markussen et al., 2026, Continuous sampling of cerebrospinal fluid from the 3rd ventricle of the hypothalamus to identify accumulating or depleting metabolites during hibernation
- Clarac et al., 2026, West African crocodiles are active thermoregulators
- Serviento et al., 2022, Effect of live yeast supplementation and feeding frequency in male finishing pigs subjected to heat stress
- Hitrec et al., 2026, Clocks slide rather than freeze during torpor in the mouse.
- Schultz et al., 2025, Detection dog performance state estimation from pre-stimulus video and physiological signals using deep learning and Bayesian inference
- Noiret et al., 2026, The heat is on behavioural, physiological and reproductive evidence of heat stress in breeding king penguins
- Haniffa et al., 2023, Chronic social stress blunts core body temperature and molecular rhythms of Cirbp and Rbm3 in mice lateral habenula
- Renaudeau et al., 2026, Evaluation of pigs’ susceptibility to summer heat waves based on continuous measurement of bodytemperature
- Di Sapia et al., 2026, Temperature homeostasis disruption and hypothalamic alterations in experimental drug-resistant epilepsy.
- Ncho et al., 2026, Research note Cosinor-based rhythmometry reveals how heat stress disrupts the circadian rhythm of core body temperature in broilers.
- Mooij et al., 2022, Poxvirus MVA Expressing SARSCoV-2 S Protein Induces Robust Immunity and Protects Rhesus Macaques From SARS-CoV-2
- Ellis et al., 2026, Speed positively relates to initial core temperature elevations in exercising hunting dogs with myoglobin as a sensitive biomarker of exercise stress.
- Koumar et al., 2022, Core body temperature varies according to the time of exercise without affecting orexin-A production in the dorsolateral hypothalamus in rat
- Gulabrai et al., 2025, The influence of genetic strain on fear and anxiety responses of laying hens housed in a cage-free environment.
- Uemura et al., 2021,Ventilation Rate Impacts on Tom Turkey Temperature and Performance
- Rothkoff et al., 2026, A preliminary study on the impacts of exercise intensity and duration on gastrointestinal temperature and odor detection performance of dogs
- Topilko et al., 2022, Edinger-Westphal peptidergic neurons enable maternal preparatory nesting
- Zhang et al., 2026, A Bear-Specific Coding Exon in TMEM41B Is Associated with Cold Adaptation
- Van der Vinne et al., 2020, Continuous and non‑invasive thermography of mouse skin accurately describes core body temperature patterns but not absolute core temperature
- Poullet et al., 2026, Effect of sweet potato leaf silage as a protein source on growth performance, physiological and serum biochemical response of growing pigs under moderate heat stress
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