The circadian control of sleep.
Explore this paper's citation graph
Summary
The role of clock genes in the regulation of sleep has attracted considerable interest, and here, an overview of the interplay between specific elements of the molecular clock with the sleep regulatory system is provided.
- Type
- review
- Published
- 2013-01-01
- Cited by
- 59
- References
- 149
- OpenAlex
- https://openalex.org/W18724642
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41329195
Keywords
Free-running sleep, Circadian rhythm, Neuroscience, Sleep (system call), Melatonin
References
- Effects of circadian phase and duration of sleep deprivation on sleep and EEG power spectra in the cat.
- Altered Patterns of Sleep and Behavioral Adaptability in NPAS2-Deficient Mice
- The sleep-promoting action of ramelteon (TAK-375) in freely moving cats.
- The Pineal Organ, Its Hormone Melatonin, and the Photoneuroendocrine System
- Timing of REM sleep is coupled to the circadian rhythm of body temperature in man.
- Ramelteon in the treatment of chronic insomnia: systematic review and meta‐analysis
- Endogenous melatonin is not obligatory for the regulation of the rat sleep-wake cycle.
- Contribution of the circadian pacemaker and the sleep homeostat to sleep propensity, sleep structure, electroencephalographic slow waves, and sleep spindle activity in humans
- Loss of circadian rhythm and light‐induced suppression of pineal melatonin levels in Cry1 and Cry2 double‐deficient mice
- Genetic determinants of sleep regulation in inbred mice.
- Recovery sleep following sleep deprivation in intact and suprachiasmatic nuclei-lesioned rats.
- Mammalian Cry1 and Cry2 are essential for maintenance of circadian rhythms
- The suprachiasmatic nucleus regulates sleep timing and amount in mice.
- Cellular mechanisms of circadian pacemaking: beyond transcriptional loops.
- A role for cryptochromes in sleep regulation
- THE TIME COURSE OF ADENOSINE, NITRIC OXIDE (NO) AND INDUCIBLE NO SYNTHASE CHANGES IN THE BRAIN WITH SLEEP LOSS AND THEIR ROLE IN THE NREM SLEEP HOMEOSTATIC CASCADE
- NPAS2: An Analog of Clock Operative in the Mammalian Forebrain
- Three transmembrane conformations and sequence-dependent displacement of the S4 domain in shaker K+ channel gating.
- Melanopsin: an exciting photopigment.
- Attenuated Circadian Rhythms in Mice Lacking the Prokineticin 2 Gene
Cited by
- Sleep environments and sleep physiology: A review.
- Melatonin and sleep
- Differential monocular vs. binocular pupil responses from melanopsin-based photoreception in patients with anterior ischemic optic neuropathy
- Orangutans (Pongo spp.) have deeper, more efficient sleep than baboons (Papio papio) in captivity.
- Lempel-Ziv complexity of cortical activity during sleep and waking in rats
- The neurobiology, investigation, and treatment of chronic insomnia.
- How to fix a broken clock
- Melatonin is required for the circadian regulation of sleep
- NREM and REM Sleep
- Explaining general anesthesia: A two‐step hypothesis linking sleep circuits and the synaptic release machinery
- Circadian dysregulation of clock genes: clues to rapid treatments in major depressive disorder
- Translational neurophysiological markers for activity of the metabotropic glutamate receptor (mGluR2) modulator JNJ-40411813: Sleep EEG correlates in rodents and healthy men.
- Neurobiology: What Drives Flies to Sleep?
- Sleep intensity and the evolution of human cognition
- HUMAN SLEEP-WAKING CYCLE AND BIORHYTHMS WITH THE DIFFERENT REGIMENS OF NATURAL LIGHT-DARK ALTERNA- TION
- Sleep homeostasis, habits and habituation.
- Light-dependent regulation of sleep/wake states by prokineticin 2 in zebrafish
- A point mutation in the ion conduction pore of AMPA receptor GRIA3 causes dramatically perturbed sleep patterns as well as intellectual disability
- The impact of social media volume and addiction on medical student sleep quality and academic performance: A cross-sectional observational study
- Neurobiological Role of Hypocretin in Regulation of Psychiatric Disorders