Simulation of day-length encoding in the SCN: from single-cell to tissue-level organization.
about
Evolution of time-keeping mechanisms: early emergence and adaptation to photoperiodSynchronization of Biological Clock Neurons by Light and Peripheral Feedback Systems Promotes Circadian Rhythms and HealthPhase shifting capacity of the circadian pacemaker determined by the SCN neuronal network organization.Separate oscillating cell groups in mouse suprachiasmatic nucleus couple photoperiodically to the onset and end of daily activity.Reciprocity between phase shifts and amplitude changes in the mammalian circadian clock.Individual differences in circadian waveform of Siberian hamsters under multiple lighting conditions.Modeling the behavior of coupled cellular circadian oscillators in the suprachiasmatic nucleus.Tracking the seasons: the internal calendars of vertebrates.Circadian regulation of mouse suprachiasmatic nuclei neuronal states shapes responses to orexin.Physiology of circadian entrainment.The Potential of Circadian Realignment in Rheumatoid Arthritis.The role of the hypothalamic-pituitary-adrenal axis in modulating seasonal changes in immunity.Twice daily melatonin peaks in Siberian but not Syrian hamsters under 24 h light:dark:light:dark cycles.On the evolution of memory: a time for clocks.Different mechanisms of adjustment to a change of the photoperiod in the suprachiasmatic and liver circadian clocks.Clustering predicted by an electrophysiological model of the suprachiasmatic nucleus.Gate cells see the light.Correlation with behavioral activity and rest implies circadian regulation by SCN neuronal activity levels.Spatiotemporal heterogeneity in the electrical activity of suprachiasmatic nuclei neurons and their response to photoperiod.On the analysis of complex biological supply chains: From Process Systems Engineering to Quantitative Systems Pharmacology.Modeling the Influence of Seasonal Differences in the HPA Axis on Synchronization of the Circadian Clock and Cell Cycle.The proportion of light-responsive neurons determines the limit cycle properties of the suprachiasmatic nucleus.Enhanced phase resetting in the synchronized suprachiasmatic nucleus network.
P2860
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P2860
Simulation of day-length encoding in the SCN: from single-cell to tissue-level organization.
description
2006 nî lūn-bûn
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2006年の論文
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2006年学术文章
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2006年学术文章
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2006年学术文章
@zh-cn
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@zh-hans
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2006年学术文章
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2006年學術文章
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name
Simulation of day-length encod ...... to tissue-level organization.
@en
Simulation of day-length encod ...... to tissue-level organization.
@nl
type
label
Simulation of day-length encod ...... to tissue-level organization.
@en
Simulation of day-length encod ...... to tissue-level organization.
@nl
prefLabel
Simulation of day-length encod ...... to tissue-level organization.
@en
Simulation of day-length encod ...... to tissue-level organization.
@nl
P2093
P2860
P356
P1476
Simulation of day-length encod ...... to tissue-level organization.
@en
P2093
Johanna H Meijer
Jos Rohling
Lex Wolters
P2860
P304
P356
10.1177/0748730406290317
P577
2006-08-01T00:00:00Z