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Aging|November 29, 2018
Cell and tissue type independent age-associated DNA methylation changes are not rare but commonTianyu Zhu, Shijie C Zheng, Dirk S Paul, et al.Gene|December 5, 2006
Repetitive sequence environment distinguishes housekeeping genesC Daniel Eller, Moira Regelson, Barry Merriman, et al.Developmental Psychobiology|January 10, 2021
Early life adversity, pubertal timing, and epigenetic age acceleration in adulthoodElissa J Hamlat, Aric A Prather, Steve Horvath, et al.Clinical Epigenetics|March 23, 2021
DNA methylation biomarker for cumulative lead exposure is associated with Parkinson's diseaseKimberly C Paul, Steve Horvath, Irish Del Rosario, et al.Social Science & Medicine (1982)|August 6, 2024
Grandparents' educational attainment is associated with grandchildren's epigenetic-based age acceleration in the National Growth and Health StudyAgus Surachman, Elissa Hamlat, Anthony S Zannas, et al.Plos One|March 3, 2012
Resting-state quantitative electroencephalography reveals increased neurophysiologic connectivity in depressionAndrew F Leuchter, Ian A Cook, Aimee M Hunter, et al.Genome Medicine|May 28, 2013
Genes and pathways underlying regional and cell type changes in Alzheimer's diseaseJeremy A Miller, Randall L Woltjer, Jeff M Goodenbour, et al.Stem Cells and Development|May 6, 2011
Functional modules distinguish human induced pluripotent stem cells from embryonic stem cellsAnyou Wang, Kevin Huang, Yin Shen, et al.Neuron|February 14, 2012
Molecular microcircuitry underlies functional specification in a basal ganglia circuit dedicated to vocal learningAustin T Hilliard, Julie E Miller, Elizabeth R Fraley, et al.Geroscience|June 3, 2023
DNA methylation clocks for clawed frogs reveal evolutionary conservation of epigenetic agingJoseph A Zoller, Eleftheria Parasyraki, Ake T Lu, et al.Pageof 52