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The European Journal of Neuroscience|February 19, 2008
A TTX-sensitive local circuit is involved in the expression of PK2 and BDNF circadian rhythms in the mouse suprachiasmatic nucleusKenkichi Baba, Daisuke Ono, Sato Honma, et al.
Journal of Molecular Endocrinology|October 18, 2018
Cryptochrome deficiency enhances transcription but reduces protein levels of pineal AanatYujiro Yamanaka, Yoshiko Yamada, Ken-Ichi Honma, et al.
Nature Neuroscience|April 16, 2002
Clock mutation lengthens the circadian period without damping rhythms in individual SCN neuronsWataru Nakamura, Sato Honma, Tetsuo Shirakawa, et al.
Journal of Biological Rhythms|June 28, 2003
Period and phase adjustments of human circadian rhythms in the real worldKen-ichi Honma, Satoko Hashimoto, Mitsuyuki Nakao, et al.
Brain Research. Molecular Brain Research|May 12, 2004
Circadian rhythms in behavior and clock gene expressions in the brain of mice lacking histidine decarboxylaseHiroshi Abe, Sato Honma, Hiroshi Ohtsu, et al.
Trends in Neurosciences|April 20, 2016
Deconstructing Circadian Rhythmicity with Models and ManipulationsScott D Pauls, Ken-Ichi Honma, Sato Honma, et al.
Journal of Biological Rhythms|October 12, 2021
The Food-entrainable Oscillator Is a Complex of Non-SCN Activity Bout Oscillators Uncoupled From the SCN Circadian PacemakerShinya Nishide, Yohko Suzuki, Daisuke Ono, et al.
Genes to Cells : Devoted to Molecular & Cellular Mechanisms|September 10, 2010
Loss of circadian rhythm and light-induced suppression of pineal melatonin levels in Cry1 and Cry2 double-deficient miceYujiro Yamanaka, Yohko Suzuki, Takeshi Todo, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 28, 2007
Separate oscillating cell groups in mouse suprachiasmatic nucleus couple photoperiodically to the onset and end of daily activityNatsuko Inagaki, Sato Honma, Daisuke Ono, et al.
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