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Genetics and energetics of sleep homeostasis and circadian rhythms
In the study of sleep two main regulatory processes have to be considered: a homeostatic process that is activated by and counters the effects of sleep loss and a circadian process that determines the time–of–day sleep preferably occurs. The fine–tuned interaction between the two permits us to stay awake and alert throughout the day and to remain asleep at night. To gain inside into the molecular correlates of the homeostatic process and its interaction with the circadian process we apply a combination of forward, molecular, and reverse genetic approaches in the mouse.
Genetics and energetics of sleep homeostasis and circadian rhythms
In the study of sleep two main regulatory processes have to be considered: a homeostatic process that is activated by and counters the effects of sleep loss and a circadian process that determines the time–of–day sleep preferably occurs. The fine–tuned interaction between the two permits us to stay awake and alert throughout the day and to remain asleep at night. To gain inside into the molecular correlates of the homeostatic process and its interaction with the circadian process we apply a combination of forward, molecular, and reverse genetic approaches in the mouse.
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Cell Systemsno. 7 (2024): 610-627.e8
NATURE REVIEWS NEUROSCIENCEno. 1 (2024): 43-59
Current Biologyno. 2 (2024): 427-433.e5
Cell systemsno. 7 (2024): 610-627.e8
Proceedings of the National Academy of Sciences of the United States of Americano. 3 (2024)
Elsevier eBookspp.603-613, (2023)
bioRxiv (Cold Spring Harbor Laboratory) (2023)
JOURNAL OF SLEEP RESEARCH (2022)
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#Papers: 199
#Citation: 9638
H-Index: 54
G-Index: 97
Sociability: 6
Diversity: 0
Activity: 1
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