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Journal of Biological Rhythms|December 10, 2022
Inducible Reporter Lines for Tissue-specific Monitoring of Drosophila Circadian Clock Transcriptional ActivityLilyan M Mather, Meghan E Cholak, Connor M Morfoot, et al.Journal of Biological Rhythms|July 24, 2020
Novel Approaches for Assessing Circadian Rhythmicity in Humans: A ReviewDerk-Jan Dijk, Jeanne F DuffyJournal of Biological Rhythms|April 27, 2023
A Subset of Circadian Neurons Expressing dTRPA1 Enables Appropriate Phasing of Activity Rhythms in Drosophila melanogaster Under Warm TemperaturesAishwariya Srikala Iyengar, Sushma Rao, Vasu SheebaJournal of Biological Rhythms|August 5, 2020
The Clock-Controlled lncRNA-AK028245 Participates in the Immune Response via Immune Response Factors OTUD7B and A20Fang Qi, Zhou Jiang, Wang Hou, et al.Journal of Biological Rhythms|April 21, 2021
Negative Energy Balance Enhances Ultradian Rhythmicity in Spring-Programmed VolesLaura van Rosmalen, Roelof A HutJournal of Biological Rhythms|May 30, 2006
Genetic evidence for a neurovestibular influence on the mammalian circadian pacemakerPatrick M Fuller, Charles A FullerJournal of Biological Rhythms|May 30, 2006
The thalamic intergeniculate leaflet mediates locomotor activity-induced reversal of phenotype in photoperiod nonresponsive Siberian hamstersDavid A Freeman, Brett J W Teubner, Bruce D GoldmanJournal of Biological Rhythms|January 1, 1991
"Demasking" the temperature rhythm after simulated time zone transitionsS Folkard, D S Minors, J M WaterhouseJournal of Biological Rhythms|January 1, 1991
A re-examination of the role of the nucleus in generating the circadian rhythm in AcetabulariaJ C WoolumJournal of Biological Rhythms|January 1, 1991
Light and norepinephrine similarly prevent damping of the melatonin rhythm in cultured chick pineal cells: regulation of coupling between the pacemaker and overt rhythms?M ZatzPageof 170