Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
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Reciprocal interactions between circadian clocks and agingDoes disruption of circadian rhythms contribute to beta-cell failure in type 2 diabetes?Combined effects of exposure to dim light at night and fine particulate matter on C3H/HeNHsd miceContribution of daily and seasonal biorhythms to obesity in humansAdministration of Melatonin and Metformin Prevents Deleterious Effects of Circadian Disruption and Obesity in Male RatsNutritional ecology of obesity: from humans to companion animals.A single night light exposure acutely alters hormonal and metabolic responses in healthy participants.Light at night acutely impairs glucose tolerance in a time-, intensity- and wavelength-dependent manner in rats.Timing of light exposure affects mood and brain circuitsGestational chronodisruption impairs hippocampal expression of NMDA receptor subunits Grin1b/Grin3a and spatial memory in the adult offspring.Prolonged daily light exposure increases body fat mass through attenuation of brown adipose tissue activity.Environmental Light Exposure Is Associated with Increased Body Mass in ChildrenHypothesis: Cryptochromes and Brown Fat are Essential for Adaptation and Affect Mood and Mood-Related Behaviors.Circadian clock adjustment to plant iron status depends on chloroplast and phytochrome function.Pharmacology of myopia and potential role for intrinsic retinal circadian rhythms.Leptin-sensitive neurons in the arcuate nucleus integrate activity and temperature circadian rhythms and anticipatory responses to food restrictionDecrease in fMRI brain activation during working memory performed after sleeping under 10 lux light.Environmental control of biological rhythms: effects on development, fertility and metabolism.Light pollution: the possible consequences of excessive illumination on retina.Brief light exposure at night disrupts the circadian rhythms in eye growth and choroidal thickness in chicksLight pollution: Assessment of sky glow on two dark sky regions of Portugal.Chronic dim light at night provokes reversible depression-like phenotype: possible role for TNF.Pay attention to evening owls.Body temperature predicts the direction of internal desynchronization in humans isolated from time cues.Association between light exposure at night and nighttime blood pressure in the elderly independent of nocturnal urinary melatonin excretion.Is propensity to obesity associated with the diurnal pattern of core body temperature?Dark nights reverse metabolic disruption caused by dim light at night.Independent associations of exposure to evening light and nocturnal urinary melatonin excretion with diabetes in the elderly.Women with hereditary breast cancer predispositions should avoid using their smartphones, tablets, and laptops at night.Wheel running in the wild.Consumption of Cherry out of Season Changes White Adipose Tissue Gene Expression and Morphology to a Phenotype Prone to Fat Accumulation
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P2860
Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
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article científic
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article scientifique
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articol științific
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articolo scientifico
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artigo científico
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artigo científico
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artículo científico
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Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
@en
Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
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type
label
Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
@en
Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
@nl
prefLabel
Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
@en
Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
@nl
P2093
P1433
P1476
Circadian desynchrony and metabolic dysfunction; did light pollution make us fat?
@en
P2093
P304
P356
10.1016/J.MEHY.2011.09.023
P577
2011-10-07T00:00:00Z