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Comparative biochemistry and physiology. Part A, Molecular & integrative physiology, ISSN 1095-6433, 2016, Volume 192, pp. 64 - 78
...) hypothesis proposes that the temperature dependent performance curve of animals is shaped by the capacity for oxygen delivery in relation to oxygen demand... 
OCLTT | Respiration physiology | Crustaceans | Insects | Hyperoxia | Thermal biology | Hypoxia | Heat tolerance | Cardiovascular capacity | Ventilation | Climate warming | Circulation | SPIDER CRAB | PHYSIOLOGY | DISCONTINUOUS GAS-EXCHANGE | HIGH-TEMPERATURES | BIOCHEMISTRY & MOLECULAR BIOLOGY | SHORE CRAB | CLIMATE-CHANGE | DYNAMIC ACTION | DROSOPHILA | ZOOLOGY | AEROBIC SCOPE | ANAEROBIC METABOLISM | Arthropods - physiology | Oxygen - pharmacology | Climate | Temperature | Oxygen - physiology | Aquatic Organisms - physiology | Arthropods - metabolism | Oxygen Consumption - physiology | Animals | Crustacea - physiology | Body Temperature Regulation - drug effects | Insecta - physiology | Acclimatization - drug effects | Acclimatization - physiology | CTmin, critical thermal minimum — as for CTmax, but reflecting the cold tolerance | SMR, standard metabolic rate — the minimum rate of oxygen consumption needed to sustain life in resting, post-absorptive organisms at a given temperature | Tpejus, pejus temperature — the temperature beyond which aerobic metabolism declines rapidly and hypoxemia sets in | Review | SMR, relative aerobic scope, sometimes also referred to as factorial aerobic scope | OCLTT, hypothesis, oxygen and capacity limited thermal tolerance hypothesis | MMR | Topt, optimal temperature — the temperature where an organism can achieve maximum aerobic scope (MMR − SMR) | MMR − SMR, absolute aerobic scope (AAS) | MMR, maximum metabolic rate — the maximum rate at which oxygen can be consumed at a given temperature | Tcrit, critical temperature — the temperature beyond which aerobic metabolism is no longer sufficient to cover energy demand and anaerobic metabolism sets in | CTmax, critical thermal maximum — an empirical endpoint of heat tolerance found in heating trials where the temperature is ramped up, indicating the temperature at which the animal becomes moribund and can no longer escape the adverse temperatures
Journal Article
Proceedings of the Royal Society. B, Biological sciences, ISSN 1471-2954, 2019, Volume 286, Issue 1897, p. 20182863
.... Using these field data to parameterize experimental work we demonstrate that air temperature and mussel size strongly influence this acidosis, with larger mussels at higher temperatures experiencing greater acidosis... 
Multi-stressor | Acid–base balance | Emersion | Ocean acidification | ocean acidification | CONSTANTS | CARBONIC-ACID | HYPOXIA | VARIABILITY | RESPONSES | EVOLUTIONARY BIOLOGY | DISSOCIATION | METABOLISM | BIOLOGY | acid-base balance | emersion | multi-stressor | ECOLOGY | IMPACTS | EXPOSURE | Animals | Climate Change | Body Size | England | Acid-Base Equilibrium - physiology | Seawater - chemistry | Hot Temperature | Mytilus edulis - physiology | Hydrogen-Ion Concentration | Tidal Waves | 202 | Global Change and Conservation | acid–base balance | 1001
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2012, Volume 109, Issue 35, pp. 14247 - 14252
Global warming is intensifying interest in the mechanisms enabling ectothermic animals to adjust physiological performance and cope with temperature change... 
Enzymes | Energy metabolism | Phenotypes | Genes | Acclimatization | Principal components analysis | Fish | Swimming | Muscle fibers | Tracheoesophageal fistula | Environmental physiology | Muscle transcriptome | High-throughput sequencing | Functional genomics | SWIMMING SPEED | PHYSIOLOGY | CARP | TRANSCRIPTOME | PHENOTYPIC PLASTICITY | MULTIDISCIPLINARY SCIENCES | environmental physiology | muscle transcriptome | functional genomics | SKELETAL-MUSCLE | MUSCLE-FIBER | fish | HYPOTHESIS | GENE-EXPRESSION | COLD | high-throughput sequencing | Temperature | Muscle Contraction - genetics | Transcriptome | Male | Zebrafish - embryology | Female | Energy Metabolism - genetics | Energy Metabolism - physiology | Acclimatization - physiology | Gene Expression Regulation, Developmental - physiology | Body Temperature Regulation - physiology | Muscles - embryology | Muscles - physiology | Zebrafish - genetics | Swimming - physiology | Phenotype | Animals | High-Throughput Screening Assays | Climate Change | Models, Biological | Muscle Contraction - physiology | Zebrafish - physiology | Environment | Acclimatization - genetics | Body Temperature Regulation - genetics | Muscles - cytology | Embryonic development | Global temperature changes | Zebra fish | Environmental aspects | Physiological aspects | Health aspects | Biological Sciences
Journal Article
Journal of pharmaceutical sciences, ISSN 0022-3549, 09/2015, Volume 104, Issue 9, pp. 2855 - 2863
Journal Article
Journal Article
Science (American Association for the Advancement of Science), ISSN 1095-9203, 2010, Volume 330, Issue 6002, pp. 379 - 385
Journal Article
The Journal of physiology, ISSN 0022-3751, 2011, Volume 589, Issue 14, pp. 3641 - 3658
...: brown adipose tissue (BAT) temperature for non-shivering thermogenesis and arterial pressure and heart rate for cardiovascular responses... 
PHYSIOLOGY | NONSHIVERING THERMOGENESIS | 5-HT1A RECEPTORS | SYMPATHETIC PREMOTOR NEURONS | SPINAL-CORD | DORSOMEDIAL HYPOTHALAMUS | BROWN ADIPOSE-TISSUE | EXPRESSING PREOPTIC NEURONS | BODY-TEMPERATURE | NEUROSCIENCES | PROSTAGLANDIN EP3 RECEPTOR | RAPHE PALLIDUS | Skin Temperature - physiology | Neural Pathways - drug effects | Efferent Pathways - physiology | Fever - metabolism | Male | Preoptic Area - metabolism | Neural Pathways - physiology | Fever - physiopathology | N-Methylaspartate - pharmacology | Neurons - metabolism | Medulla Oblongata - physiology | Preoptic Area - physiology | Dinoprostone - pharmacology | Body Temperature Regulation - physiology | Shivering - physiology | Rats | Mediodorsal Thalamic Nucleus - drug effects | Tachycardia - metabolism | Raphe Nuclei - drug effects | Raphe Nuclei - physiology | Neural Pathways - metabolism | Adipose Tissue, Brown - drug effects | Receptors, GABA-A - metabolism | Muscimol - pharmacology | Rats, Wistar | Preoptic Area - drug effects | Sympathetic Nervous System - drug effects | GABA-A Receptor Antagonists - metabolism | Sympathetic Nervous System - metabolism | Raphe Nuclei - metabolism | Thermogenesis - physiology | Heart Rate - drug effects | Mediodorsal Thalamic Nucleus - metabolism | Sympathetic Nervous System - physiology | Shivering - drug effects | Neurons - physiology | Heart Rate - physiology | Blood Pressure - drug effects | Blood Pressure - physiology | Tachycardia - pathology | Mediodorsal Thalamic Nucleus - physiology | Neurons - drug effects | Receptor, Serotonin, 5-HT1A - metabolism | Cold Temperature | Medulla Oblongata - drug effects | Medulla Oblongata - metabolism | Adipose Tissue, Brown - physiology | 8-Hydroxy-2-(di-n-propylamino)tetralin - pharmacology | Efferent Pathways - metabolism | Animals | Thermogenesis - drug effects | GABA | Heart beat | Neurons | Analysis | Prostaglandins E | Heart rate | Skin | Cooling | Thermogenesis | Cold | Rodents | Integrative
Journal Article
Physiology & behavior, ISSN 0031-9384, 2017, Volume 175, pp. 72 - 81
Abstract Indoor temperature and light exposure are known to affect body temperature, productivity and alertness of building occupants... 
Psychiatry | Alertness | Productivity | Thermophysiology | Sleepiness | Light | Circadian Rhythm/physiology | Temperature | Acoustic Stimulation | Humans | Body Temperature/physiology | Randomized Controlled Trial |