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Here's Why You Don't Feel Jet-Lagged When You Run a Fever


A clump of just a few thousand brain cells, no bigger than a mustard seed, controls the daily ebb and flow of most bodily processes in mammals — sleep/wake cycles, most notably. Now, Johns Hopkins scientists report direct evidence in mice for how those cell clusters control sleep and relay light cues about night and day throughout the body.


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Vision Research Funding Partnership Event Takes Place Today

Leaders of organizations that fund vision research convene in Washington, D.C. to increase collaboration and maximize the impact of research funding for sight-t

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Novel genetic locations associated with primary open-angle glaucoma identified

An international genetic study using multiancestry biobanks has identified novel genetic locations associated with primary open-angle glaucoma (POAG), the most common type of glaucoma and the leading cause of irreversible blindness globally.

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Large, diverse genetic study of glaucoma impl

<p>An international genetic study using multiancestry biobanks has identified novel genetic locations associated with primary open-angle glaucoma (POAG), the most common type of glaucoma and the leading cause of irreversible blindness globally. The findings, published Feb. 20 in <a href="https://www.cell.com/cell-reports-medicine/fulltext/S2666-3791(24)00053-3" target="_blank">Cell Reports Medicine</a>, detail ancestry- and sex-specific genetic loci associated with POAG and implicate vascular and cancer-related genes in POAG risk.&nbsp;</p>


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Prime Editing System Partially Restores Vision in Mice

Prime Editing System Partially Restores Vision in Mice
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Figure accessibility in journals: analysis of alt-text in 2021–23

Figure accessibility in journals: analysis of alt-text in 2021–23
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Impaired intracellular Ca2+ signaling contributes to age-related cerebral small vessel disease in Col4a1 mutant mice

Impaired intracellular Ca2+ signaling contributes to age-related cerebral small vessel disease in Col4a1 mutant mice
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Stanford Medicine researchers build an eye 'aging clock' that could lead to treatments for ocular diseases | News Center

Stanford Medicine researchers build an eye 'aging clock' that could lead to treatments for ocular diseases | News Center
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Stanford Medicine researchers find new way to measure ocular aging

Using a technique they developed for studying eye fluid, Stanford Medicine researchers and their collaborators have found a way to measure ocular aging, opening avenues for treatment of numerous eye diseases.

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