Neurophysiology of Sleep and Wakefulness: Basic Science and Clinical Implications
Нейрофизиология сна и бодрствования: фундаментальные основы и клинические аспекты
2008-12-01
SCID: 54.1/28gnmv37
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ascending arousal systemcircadian rhythm sleep disorderssleep-wake statessuprachiasmatic nucleusventrolateral preoptic nucleus
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Abstract (AI)
Increased attention to the prevalence of excessive sleepiness has led to a clear need to treat this symptom, thus reinforcing the need for a greater understanding of the neurobiology of sleep and wakefulness. Although the physiological mechanisms of sleep and wakefulness are highly interrelated, recent research reveals that there are distinct differences in the active brain processing and the specific neurochemical systems involved in the two states. In this review, we will examine the specific neuronal pathways, transmitters, and receptors composing the ascending arousal system that flow from the brainstem through the thalamus, hypothalamus, and basal forebrain to the cerebral cortex. We will also discuss the mutually inhibitory interaction between the core neuronal components of this arousal system and the sleep-active neurons in the ventrolateral preoptic nucleus, which serves as a brainstem-switch, regulating the stability of the sleep-wake states. In addition, we will review the role of homeostatic and circadian processes in the sleep-wake cycle, including the influence of the suprachiasmatic nucleus on coordination of sleep-wake systems. Finally, we will summarize how the above processes are reflected in disorders of sleep and wakefulness, including insomnia, narcolepsy, disorders associated with fragmented sleep, circadian rhythm sleep disorders, and primary neurological disorders such as Parkinson's and Alzheimer's diseases.
Key Findings
1
Disrupted sleep-wake mechanisms are reflected in insomnia, narcolepsy, fragmented sleep, circadian rhythm sleep disorders, and neurological diseases including Parkinson’s and Alzheimer’s diseases.
2
Homeostatic and circadian processes jointly regulate the sleep-wake cycle, with the suprachiasmatic nucleus coordinating circadian influences across sleep-wake systems.
3
Mutual inhibition between arousal-system neurons and sleep-active neurons in the ventrolateral preoptic nucleus functions as a switch that stabilizes transitions between sleep and wakefulness.
4
Sleep and wakefulness involve distinct patterns of active brain processing and rely on partially different neurochemical systems despite being physiologically interrelated.
5
The ascending arousal system comprises neuronal pathways, transmitters, and receptors extending from the brainstem through the thalamus, hypothalamus, and basal forebrain to the cerebral cortex.
Research Object
neurobiological sleep–wake regulation system, including the ascending arousal pathways and sleep-active neurons
Research Subject
the neuronal, neurochemical, homeostatic, and circadian mechanisms governing the stability and transitions of sleep–wake states, and their disruption in sleep and neurological disorders
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2008-12-01
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