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Article

Intestine-to-neuronal signaling alters risk-taking behaviors in food-deprived <i>Caenorhabditis elegans</i>

2017-06-26

Abstract excerpt

Animals integrate changes in external and internal environments to generate behavior. While neural circuits detecting external cues have been mapped, less is known about how internal states like hunger are integrated into behavioral outputs. We use the nematode C. elegans to decode how changes in internal nutritional status affects chemosensory behaviors. We show that acute food deprivation leads to a reversible...

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Literature Corpus work
7541b06e-4676-5588-a8fa-437610200770
DOI
10.1101/156109
Open publication

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Intestine-to-neuronal signaling alters risk-taking behaviors in food-deprived <i>Caenorhabditis elegans</i>DOI 10.1101/156109
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