806 results on '"Honma, Ken-ichi"'
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2. Circadian Rhythm Measurements in Humans
3. CHRONO and DEC1/DEC2 compensate for lack of CRY1/CRY2 in expression of coherent circadian rhythm but not in generation of circadian oscillation in the neonatal mouse SCN
4. Two oscillatory components detected by forced splitting of the sleep-wake cycle in humans
5. A critical role of Ca2+/calmodulin‐dependent protein kinase II in coupling between evening and morning circadian oscillators in the suprachiasmatic nucleus.
6. Ultradian calcium rhythms in the paraventricular nucleus and subparaventricular zone in the hypothalamus
7. A novel method for measurements of sleep/wake states, feeding and drinking behaviors using the tracking technique of 3D positions in freely moving mice
8. Role of GABA in the regulation of the central circadian clock of the suprachiasmatic nucleus
9. Dissociation of Per1 and Bmal1 circadian rhythms in the suprachiasmatic nucleus in parallel with behavioral outputs
10. Synchronous circadian voltage rhythms with asynchronous calcium rhythms in the suprachiasmatic nucleus
11. Differential responses to artificial photoperiods of the rising and falling phases of human melatonin rhythm are consistent with a dual oscillator hypothesis
12. The Suprachiasmatic Nucleus at 50: Looking Back, Then Looking Forward.
13. Deconstructing Circadian Rhythmicity with Models and Manipulations
14. Circadian rhythms in Per1, PER2 and Ca2+ of a solitary SCN neuron cultured on a microisland
15. GABA in the suprachiasmatic nucleus refines circadian output rhythms in mice
16. Coupling Controls the Synchrony of Clock Cells in Development and Knockouts
17. Cellular Clocks in AVP Neurons of the SCN Are Critical for Interneuronal Coupling Regulating Circadian Behavior Rhythm
18. Oscillator Cell Networks in the Hypothalamic Suprachiasmatic Nucleus, the Mammalian Circadian Clock
19. Bioluminescent Imaging for Assessing Heterogeneous Cell Functions in the Mammalian Central Circadian Clock
20. Two coupled circadian oscillations regulate Bmal1-ELuc and Per2-SLR2 expression in the mouse suprachiasmatic nucleus
21. Maternal Deprivation in Neonatal Period and Biological Rhythms
22. Monitoring the Clock Neuron’s Tick: Circadian Rhythm Analysis Using a Multi-Electrode Array Dish
23. Monitoring circadian time in rat plasma using a secreted Cypridina luciferase reporter
24. Fast synchronous oscillations of firing rate in cultured rat suprachiasmatic nucleus neurons: Possible role in circadian synchronization in the intact nucleus
25. Topological specificity and hierarchical network of the circadian calcium rhythm in the suprachiasmatic nucleus
26. Human blood metabolite timetable indicates internal body time
27. Single-cell resolution fluorescence imaging of circadian rhythms detected with a Nipkow spinning disk confocal system
28. A fixed single meal in the subjective day prevents free-running of the human sleep-wake cycle but not of the circadian pacemaker under temporal isolation
29. Feedback from Sleep—Wake Rhythm onto the Circadian Pacemaker in Humans
30. A fixed single meal in the subjective day prevents free-running of the human sleep-wake cycle but not of the circadian pacemaker under temporal isolation
31. A fixed single meal in the subjective day prevents free-running of the human sleep-wake cycle but not of the circadian pacemaker under temporal isolation
32. Separate Oscillating Cell Groups in Mouse Suprachiasmatic Nucleus Couple Photoperiodically to the Onset and End of Daily Activity
33. Mistimed wheel running interferes with re-entrainment of circadian Per1 rhythms in the mouse skeletal muscle and lung
34. In vitro differentiation of chondrogenic ATDC5 cells is enhanced by culturing on synthetic hydrogels with various charge densities
35. Corrigendum: Roles of Neuropeptides, VIP and AVP, in the Mammalian Central Circadian Clock
36. Circadian PER2::LUC rhythms in the olfactory bulb of freely moving mice depend on the suprachiasmatic nucleus but not on behaviour rhythms
37. Spatiotemporal profiles of arginine vasopressin transcription in cultured suprachiasmatic nucleus
38. Glucocorticoids Reset the Nasal Circadian Clock in Mice
39. Beautiful hypothesis and an ugly little fact
40. The Food-entrainable Oscillator Is a Complex of Non-SCN Activity Bout Oscillators Uncoupled From the SCN Circadian Pacemaker
41. JNK regulates the photic response of the mammalian circadian clock
42. On the role of calcium and potassium currents in circadian modulation of firing rate in rat suprachiasmatic nucleus neurons: Multielectrode dish analysis
43. Physical exercise accelerates reentrainment of human sleep-wake cycle but not of plasma melatonin rhythm to 8-h phase-advanced sleep schedule
44. Abstracts for the 6th Congress of Asian Sleep Research Society
45. Effects of intracranial surgery on pineal lipid droplets, on other structures, and on melatonin secretion
46. sj-pdf-1-jbr-10.1177_07487304211047937 – Supplemental material for The Food-entrainable Oscillator Is a Complex of Non-SCN Activity Bout Oscillators Uncoupled From the SCN Circadian Pacemaker
47. Phase Gradients and Anisotropy of the Suprachiasmatic Network: Discovery of Phaseoids
48. Clock mechanisms for seasonal adaptation: Morning and evening oscillators in the suprachiasmatic nucleus
49. Circadian behavioral rhythms in Cry1/Cry2 double-deficient mice induced by methamphetamine
50. Methamphetamine induces circadian oscillation in the brain outside the suprachiasmatic nucleus in rats
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