Cardiovascular changes during daily torpor in the laboratory mouse
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CLIC5 mutant mice are resistant to diet-induced obesity and exhibit gastric hemorrhaging and increased susceptibility to torporFrom Gutenberg to Open Science: An Unfulfilled Odyssey.Hypometabolism during Daily Torpor in Mice is Dominated by Reduction in the Sensitivity of the Thermoregulatory System.Bone Marrow Adipose Tissue Deficiency Increases Disuse-Induced Bone Loss in Male Mice.Retro-orbital injection of FITC-dextran is an effective and economical method for observing mouse retinal vessels.Psychophysics of a nociceptive test in the mouse: ambient temperature as a key factor for variation.A functional nexus between photoperiod acclimation, torpor expression and somatic fatty acid composition in a heterothermic mammal.Fasting-induced reductions in cardiovascular and metabolic variables occur sooner in obese versus lean mice.Experimental and husbandry procedures as potential modifiers of the results of phenotyping testsSpecialist-generalist model of body temperature regulation can be applied at the intraspecific level.The onset of daily torpor is regulated by the same low body mass in lean mice and in mice with diet-induced obesity.Thermoregulatory, cardiovascular, and metabolic responses to mild caloric restriction in the Brown Norway rat.Room temperature housing results in premature cancellous bone loss in growing female mice: implications for the mouse as a preclinical model for age-related bone loss.Ambulatory ECG recording in miceTorpor and hypothermia: reversed hysteresis of metabolic rate and body temperature.Protein restriction does not affect body temperature pattern in female mice.Passive rewarming from torpor in hibernating bats: minimizing metabolic costs and cardiac demands.Heart rate reveals torpor at high body temperatures in lowland tropical free-tailed bats.Central activation of the A1 adenosine receptor in fed mice recapitulates only some of the attributes of daily torpor.Safety Pharmacology Society: 9th Annual Meeting.Heart rate dynamics in a marsupial hibernator.Central adenosine receptor signaling is necessary for daily torpor in mice.Involvement of orexin neurons in fasting- and central adenosine-induced hypothermia.Is Adenosine Action Common Ground for NREM Sleep, Torpor, and Other Hypometabolic States?
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Cardiovascular changes during daily torpor in the laboratory mouse
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article científic
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artigo científico
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bilimsel makale
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scientific article published on 08 July 2009
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vedecký článok
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Cardiovascular changes during daily torpor in the laboratory mouse
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Cardiovascular changes during daily torpor in the laboratory mouse.
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Cardiovascular changes during daily torpor in the laboratory mouse
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Cardiovascular changes during daily torpor in the laboratory mouse.
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Cardiovascular changes during daily torpor in the laboratory mouse
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Cardiovascular changes during daily torpor in the laboratory mouse.
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P2860
P1476
Cardiovascular changes during daily torpor in the laboratory mouse
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P2093
Margaret J Gutilla
Steven J Swoap
P2860
P304
P356
10.1152/AJPREGU.00131.2009
P577
2009-07-08T00:00:00Z