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tag sleep wake cycle evolution disease medicine

A Good Night’s Sleep
Edyta Zielinska | Sep 1, 2012 | 2 min read
Sleep-wake cycles affect how well our bodies fight disease.
You Are When You Eat
Iris Kulbatski, PhD | Nov 20, 2023 | 3 min read
Intermittent fasting regulates biological time and improves disrupted sleep in an Alzheimer’s disease model.
Restless Nights Predict Alzheimer’s?
Dan Cossins | Oct 18, 2012 | 2 min read
Researchers find that disrupted sleep-wake cycles could reflect or even contribute to the neurodegenerative disease.
Opinion: The Biological Function of Dreams
Robert Stickgold and Antonio Zadra | Dec 1, 2020 | 3 min read
The scenarios that run through our sleeping brains may help us explore possible solutions to concerns from our waking lives.
Who Sleeps?
The Scientist and Jerome Siegel | Mar 1, 2016 | 10+ min read
Once believed to be unique to birds and mammals, sleep is found across the metazoan kingdom. Some animals, it seems, can’t live without it, though no one knows exactly why.
Book Excerpt from When Brains Dream
Robert Stickgold and Antonio Zadra | Dec 1, 2020 | 8 min read
Ferreting out the biological function of dreaming is a frontier in neuroscience.
How a Sleep-Associated Hormone Affects Murine Tooth Development
Mallory Locklear | Aug 22, 2016 | 3 min read
Disrupting the light/dark cycles of pregnant mice, researchers observe detrimental effects in the mouths of the animals’ pups.
Scientists Engineer Dreams to Understand the Sleeping Brain
Catherine Offord | Dec 1, 2020 | 10+ min read
Technologies such as noninvasive brain stimulation and virtual reality gaming offer insights into how dreams arise and what functions they might serve.
Image of someone scratching their skin.
A Chronic Itch: Burrowing Beneath the Skin
Brian S. Kim, MD | Sep 8, 2023 | 9 min read
We have barely scratched the surface of itch science and what it indicates about our health.
Brain cell in purple on a black background. Arc mRNAs are labeled green and are mainly localized in the cell nucleus and in the dendrites.
Short-lived Molecules Support Long-term Memory 
Alejandra Manjarrez, PhD | Jun 6, 2023 | 3 min read
A gene essential for information storage in the brain engages an autoregulatory feedback loop to consolidate memory.

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