Amita Sehgal
Affiliations: | University of Pennsylvania, Philadelphia, PA, United States |
Area:
circadian rhythms, sleepWebsite:
http://www.med.upenn.edu/ins/faculty/sehgal.htmGoogle:
"Amita Sehgal"Mean distance: 15.22 (cluster 11) | S | N | B | C | P |
Cross-listing: FlyTree - Chronobiology Tree
Children
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Sign in to add collaboratorJohn B. Hogenesch | collaborator | 2006- | University of Pennsylvania Perelman School of Medicine |
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Publications
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Li Y, Chouhan NS, Zhang SL, et al. (2024) Modulation of RNA processing genes during sleep-dependent memory. Elife. 12 |
Noya SB, Sengupta A, Yue Z, et al. (2024) Balancing brain metabolic states during sickness and recovery sleep. The European Journal of Neuroscience |
Schwarz JE, Mrčela A, Lahens NF, et al. (2024) Evidence for a role of human blood-borne factors in mediating age-associated changes in molecular circadian rhythms. Elife. 12 |
Byrns CN, Perlegos AE, Miller KN, et al. (2024) Author Correction: Senescent glia link mitochondrial dysfunction and lipid accumulation. Nature |
Valencia ML, Sofela FA, Jongens TA, et al. (2024) Do metabolic deficits contribute to sleep disruption in monogenic intellectual disability syndromes? Trends in Neurosciences |
Iascone DM, Zhang X, Brafford P, et al. (2024) Hypermetabolic state is associated with circadian rhythm disruption in mouse and human cancer cells. Proceedings of the National Academy of Sciences of the United States of America. 121: e2319782121 |
Byrns CN, Perlegos AE, Miller KN, et al. (2024) Senescent glia link mitochondrial dysfunction and lipid accumulation. Nature |
Malik DM, Rhoades SD, Kain P, et al. (2024) Altered Metabolism during the Dark Period in Drosophila Short Sleep Mutants. Journal of Proteome Research |
O'Hara MK, Saul C, Handa A, et al. (2024) The NFκB Dif is required for behavioral and molecular correlates of sleep homeostasis in Drosophila. Sleep |
Schwarz JE, Sengupta A, Guevara C, et al. (2024) Age-regulated cycling metabolites are relevant for behavior. Aging Cell. e14082 |