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Journal of Biological Rhythms|April 6, 2012
Phase-shifting the fruit fly clock without cryptochromeChrista Kistenpfennig, Jay Hirsh, Taishi Yoshii, et al.Scientific Reports|May 2, 2018
Author Correction: The characterization of the circadian clock in the olive fly Bactrocera oleae (Diptera: Tephritidae) reveals a Drosophila-like organizationEnrico Bertolini, Christa Kistenpfennig, Pamela Menegazzi, et al.Journal of Biological Rhythms|November 29, 2017
A Tug-of-War between Cryptochrome and the Visual System Allows the Adaptation of Evening Activity to Long Photoperiods in Drosophila melanogasterChrista Kistenpfennig, Mayumi Nakayama, Ruri Nihara, et al.Scientific Reports|January 18, 2018
The characterization of the circadian clock in the olive fly Bactrocera oleae (Diptera: Tephritidae) reveals a Drosophila-like organizationEnrico Bertolini, Christa Kistenpfennig, Pamela Menegazzi, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|April 17, 2015
Cryptochrome-dependent and -independent circadian entrainment circuits in DrosophilaTaishi Yoshii, Christiane Hermann-Luibl, Christa Kistenpfennig, et al.Journal of Comparative Physiology. A, Neuroethology, Sensory, Neural, and Behavioral Physiology|May 14, 2017
Drosophila Rhodopsin 7 can partially replace the structural role of Rhodopsin 1, but not its physiological functionRudi Grebler, Christa Kistenpfennig, Dirk Rieger, et al.Journal of Biological Rhythms|August 26, 2017
A New Rhodopsin Influences Light-dependent Daily Activity Patterns of Fruit FliesChrista Kistenpfennig, Rudi Grebler, Maite Ogueta, et al.Pageof 1