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Invertebrate Reproduction & Development|July 3, 2015
Independent chemical regulation of health and senescent spans in DrosophilaRobert ArkingAnnals of the New York Academy of Sciences|January 10, 2006
Multiple longevity phenotypes and the transition from health to senescenceRobert ArkingRejuvenation Research|August 2, 2007
Human reproductive costs and the predicted response to dietary restrictionRobert ArkingThe Journals of Gerontology. Series A, Biological Sciences and Medical Sciences|August 12, 2004
The human life span is not that limited: the effect of multiple longevity phenotypesRobert Arking, Vassily Novoseltsev, Janna NovoseltsevaMechanisms of Ageing and Development|October 12, 2007
Dietary restriction in Drosophila is dependent on mitochondrial efficiency and constrained by pre-existing extended longevityJung Won Soh, Sijana Hotic, Robert ArkingExperimental Gerontology|October 10, 2012
Chemical regulation of mid- and late-life longevities in DrosophilaPhilip McDonald, Brian M Maizi, Robert ArkingAnnals of the New York Academy of Sciences|April 27, 2002
Metabolic alterations and shifts in energy allocations are corequisites for the expression of extended longevity genes in DrosophilaRobert Arking, Steven Buck, Dae-Sung Hwangbo, et al.Plos One|June 12, 2009
Exercise-training in young Drosophila melanogaster reduces age-related decline in mobility and cardiac performanceNicole Piazza, Babina Gosangi, Shawn Devilla, et al.The Journals of Gerontology. Series A, Biological Sciences and Medical Sciences|October 31, 2002
Different age-specific demographic profiles are generated in the same normal-lived Drosophila strain by different longevity stimuliRobert Arking, Janna Novoseltseva, Dae-Sung Hwangbo, et al.Aging|August 24, 2015
Endurance exercise and selective breeding for longevity extend Drosophila healthspan by overlapping mechanismsAlyson Sujkowski, Brian Bazzell, Kylie Carpenter, et al.Pageof 3