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  2. Neuroscience of sleep - Wikipedia

    en.wikipedia.org/wiki/Neuroscience_of_sleep

    NREM Stage 1 (N1 – light sleep, somnolence, drowsy sleep – 5–10% of total sleep in adults): This is a stage of sleep that usually occurs between sleep and wakefulness, and sometimes occurs between periods of deeper sleep and periods of REM. The muscles are active, and the eyes roll slowly, opening and closing moderately.

  3. Adenosine A2A receptor - Wikipedia

    en.wikipedia.org/wiki/Adenosine_A2A_receptor

    The adenosine A2A receptor has also been shown to play a regulatory role in the adaptive immune system. In this role, it functions similarly to programmed cell death-1 (PD-1) and cytotoxic t-lymphocyte associated protein-4 ( CTLA-4 ) receptors, namely to suppress immunologic response and prevent associated tissue damage.

  4. Adenosine - Wikipedia

    en.wikipedia.org/wiki/Adenosine

    Adenosine is a key factor in regulating the body's sleep-wake cycle. [39] Adenosine levels rise during periods of wakefulness and lowers during sleep. Higher adenosine levels correlate with a stronger feeling of sleepiness , also known as sleep drive or sleep pressure. [ 40 ]

  5. Sleep - Wikipedia

    en.wikipedia.org/wiki/Sleep

    Adenosine levels increase in the cortex and basal forebrain during prolonged wakefulness, and decrease during the sleep-recovery period, potentially acting as a homeostatic regulator of sleep. [40] [41] Coffee, tea, and other sources of caffeine temporarily block the effect of adenosine, prolong sleep latency, and reduce total sleep time and ...

  6. Yes, nearly everyone snores, but you can stop it. Here's how.

    www.aol.com/yes-nearly-everyone-snores-stop...

    She says this means looking into structural/anatomical factors, obesity, nasal congestion, poor muscle tone, whether you're a mouth breather or nose breather, your sleep position at night, and ...

  7. Adenosine receptor - Wikipedia

    en.wikipedia.org/wiki/Adenosine_receptor

    Caffeine keeps you awake by blocking adenosine receptors. Each type of adenosine receptor has different functions, although with some overlap. [3] For instance, both A 1 receptors and A 2A play roles in the heart, regulating myocardial oxygen consumption and coronary blood flow, while the A 2A receptor also has broader anti-inflammatory effects throughout the body. [4]