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Chronobiology International|January 1, 1997
The role of extracellular sodium in the mechanism of a neuronal in vitro circadian pacemakerS B Khalsa, S Michel, G D BlockThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 1, 1991
Does low intracellular pH stop the motion of the Bulla circadian pacemaker?S B Khalsa, M R Ralph, G D BlockBrain Research|June 18, 1990
Chloride conductance contributes to period determination of a neuronal circadian pacemakerS B Khalsa, M R Ralph, G D BlockJournal of Biological Rhythms|January 1, 1993
The role of extracellular calcium in generating and in phase-shifting the Bulla ocular circadian rhythmS B Khalsa, M R Ralph, G D BlockJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|December 1, 1992
Evidence that potassium channels mediate the effects of serotonin on the ocular circadian pacemaker of AplysiaC S Colwell, S Michel, G D BlockThe American Journal of Physiology|November 1, 1996
Evidence for a central role of transcription in the timing mechanism of a circadian clockS B Khalsa, D Whitmore, B Bogart, et al.Journal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|October 1, 1994
Calcium plays a central role in phase shifting the ocular circadian pacemaker of AplysiaC S Colwell, D Whitmore, S Michel, et al.Progress in Brain Research|January 1, 1996
Circadian rhythm generation, expression and entrainment in a molluscan model systemG D Block, M Geusz, S B Khalsa, et al.Brain Research|May 23, 1997
Circadian rhythms in mouse suprachiasmatic nucleus explants on multimicroelectrode platesE D Herzog, M E Geusz, S B Khalsa, et al.Journal of Neurobiology|June 22, 2000
Rhythmic coupling among cells in the suprachiasmatic nucleusC S ColwellPageof 11