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Titlebook: Neuroendocrine Clocks and Calendars; Francis J. P. Ebling,Hugh D. Piggins Book 2020 The Editor(s) (if applicable) and The Author(s), under

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Tanycytes and Their Pivotal Role in Seasonal Physiological Adaptations,em cell niche in the adult brain, their role as part of the blood brain barrier in transporting nutrients and hormones into the brain, and their role in regulating neuroendocrine secretion in the median eminence by virtue of their anatomical proximity to neuronal terminals.
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Clocks and Calendars in Birds,Possibly facilitated by the multiple pacemaker system, avian circadian clocks are remarkably plastic, especially during migration seasons when many species spontaneously assume nocturnal activity. The annual cycles of birds are underpinned by an interaction of circannual rhythms with strong photoper
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Seasons, Clocks and Mood,tive disorder, major depressive disorder or bipolar disorder. The circadian genes encoding proteins for repression of transcription, as “the breaks” of the circadian transcription-to-translation feedback loops, are essential to the functions of circadian clocks. Here, the cryptochrome circadian regu
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Circadian Timekeeping in the Suprachiasmatic Nucleus: Genes, Neurotransmitters, Neurons, and Astroc tissues, but three properties beyond its TTFLs make the SCN the principal pacemaker. First, it is the sole component of the mammalian circadian system to receive retinal input and is therefore directly entrained to the cycle of day and night. The TTFLs of SCN cells are therefore a high-fidelity, in
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Book 2020is on the remarkable studies in the last few decades that have unravelled the molecular and cellular machinery underpinning circadian and circannual timing. Topics covered include the role of melatonin in communicating seasonal information to the brain and pituitary gland, the neuroanatomical pathwa
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