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Science (New York, N.Y.)|November 18, 2021
Antiaging diets: Separating fact from fictionMitchell B Lee, Cristal M Hill, Alessandro Bitto, et al.Cell Metabolism|July 10, 2012
Replicative and chronological aging in Saccharomyces cerevisiaeValter D Longo, Gerald S Shadel, Matt Kaeberlein, et al.Molecular and Cellular Biology|October 23, 2002
High osmolarity extends life span in Saccharomyces cerevisiae by a mechanism related to calorie restrictionMatt Kaeberlein, Alex A Andalis, Gerald R Fink, et al.Cold Spring Harbor Perspectives in Medicine|November 4, 2015
Biochemical Genetic Pathways that Modulate Aging in Multiple SpeciesAlessandro Bitto, Adrienne M Wang, Christopher F Bennett, et al.Mechanisms of Ageing and Development|February 22, 2005
Genes determining yeast replicative life span in a long-lived genetic backgroundMatt Kaeberlein, Kathryn T Kirkland, Stanley Fields, et al.Translational Medicine of Aging|November 26, 2020
Computational tools for geroscienceJoseph C P Kruempel, Marshall B Howington, Scott F LeiserGeroscience|February 17, 2021
Cell-to-cell variation in gene expression and the aging processAlexander R Mendenhall, George M Martin, Matt Kaeberlein, et al.The Journals of Gerontology. Series A, Biological Sciences and Medical Sciences|March 4, 2008
A method for high-throughput quantitative analysis of yeast chronological life spanChristopher J Murakami, Christopher R Burtner, Brian K Kennedy, et al.Mechanisms of Ageing and Development|July 21, 2011
Trinations aging symposiumMatt Kaeberlein, Brian K Kennedy, Xinguang Liu, et al.Science Translational Medicine|November 15, 2013
Preserving youth: does rapamycin deliver?Simon C Johnson, George M Martin, Peter S Rabinovitch, et al.Pageof 27