A circadian pacemaker in free-living chipmunks: essential for survival?
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Evolution of time-keeping mechanisms: early emergence and adaptation to photoperiodGolden hamsters are nocturnal in captivity but diurnal in natureEvolution of temporal order in living organisms.Using light to tell the time of day: sensory coding in the mammalian circadian visual networkCircadian influences on myocardial infarctionSEARCH: Spatially Explicit Animal Response to Composition of HabitatLife in a dark biosphere: a review of circadian physiology in "arrhythmic" environments.The cost of circadian desynchrony: Evidence, insights and open questionsInteractive drivers of activity in a free-ranging estuarine predator.Daily rhythms of serum lipids in dogs: influences of lighting and fasting cyclesCK2 phosphorylation of CCA1 is necessary for its circadian oscillator function in Arabidopsis.Two Arabidopsis circadian oscillators can be distinguished by differential temperature sensitivityCircadian rhythms have broad implications for understanding brain and behaviorLife-history traits of Drosophila melanogaster populations exhibiting early and late eclosion chronotypesChanges in Trap Temperature as a Method to Determine Timing of Capture of Small Mammals.An Evolutionary Fitness Enhancement Conferred by the Circadian System in CyanobacteriaCombination of light and melatonin time cues for phase advancing the human circadian clockIntrinsic period and light intensity determine the phase relationship between melatonin and sleep in humansCircadian disruption and metabolic disease: findings from animal models.The itty-bitty time machine genetics of the cyanobacterial circadian clock.Variation in nocturnality and circadian activity rhythms between photoresponsive F344 and nonphotoresponsive Sprague Dawley rats.Timing as a sexually selected trait: the right mate at the right moment.Chronobiology of interspecific interactions in a changing world.Methods in field chronobiology.Circadian rhythms confer a higher level of fitness to Arabidopsis plants.Circadian Rhythms and Redox State in Plants: Till Stress Do Us Part.Normal vision can compensate for the loss of the circadian clock.Photoperiodic Programming of the SCN and Its Role in Photoperiodic Output.Fitness costs of disrupting circadian rhythms in malaria parasites
P2860
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P2860
A circadian pacemaker in free-living chipmunks: essential for survival?
description
scientific article published on 01 February 2000
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована в лютому 2000
@uk
name
A circadian pacemaker in free-living chipmunks: essential for survival?
@en
A circadian pacemaker in free-living chipmunks: essential for survival?
@nl
type
label
A circadian pacemaker in free-living chipmunks: essential for survival?
@en
A circadian pacemaker in free-living chipmunks: essential for survival?
@nl
prefLabel
A circadian pacemaker in free-living chipmunks: essential for survival?
@en
A circadian pacemaker in free-living chipmunks: essential for survival?
@nl
P2093
P356
P1476
A circadian pacemaker in free-living chipmunks: essential for survival?
@en
P2093
J K Walker
P J DeCoursey
P304
P356
10.1007/S003590050017
P407
P577
2000-02-01T00:00:00Z