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  1. Research | 27 August 2018

    The DNA methylation landscape of glioblastoma disease progression shows extensive heterogeneity in time and space

    • Johanna Klughammer
    • , Barbara Kiesel
    • , Thomas Roetzer
    • , Nikolaus Fortelny
    • , Amelie Nemc
    • , Karl-Heinz Nenning
    • , Julia Furtner
    • , Nathan C. Sheffield
    • , Paul Datlinger
    • , Nadine Peter
    • , Martha Nowosielski
    • , Marco Augustin
    • , Mario Mischkulnig
    • , Thomas Ströbel
    • , Donat Alpar
    • , Bekir Ergüner
    • , Martin Senekowitsch
    • , Patrizia Moser
    • , Christian F. Freyschlag
    • , Johannes Kerschbaumer
    • , Claudius Thomé
    • , Astrid E. Grams
    • , Günther Stockhammer
    • , Melitta Kitzwoegerer
    • , Stefan Oberndorfer
    • , Franz Marhold
    • , Serge Weis
    • , Johannes Trenkler
    • , Johanna Buchroithner
    • , Josef Pichler
    • , Johannes Haybaeck
    • , Stefanie Krassnig
    • , Kariem Mahdy Ali
    • , Gord von Campe
    • , Franz Payer
    • , Camillo Sherif
    • , Julius Preiser
    • , Thomas Hauser
    • , Peter A. Winkler
    • , Waltraud Kleindienst
    • , Franz Würtz
    • , Tanisa Brandner-Kokalj
    • , Martin Stultschnig
    • , Stefan Schweiger
    • , Karin Dieckmann
    • , Matthias Preusser
    • , Georg Langs
    • , Bernhard Baumann
    • , Engelbert Knosp
    • , Georg Widhalm
    • , Christine Marosi
    • , Johannes A. Hainfellner
    • , Adelheid Woehrer
    •  & Christoph Bock
    Nature Medicine 24 , 1611–1624
    Rights & permissionsfor article The DNA methylation landscape of glioblastoma disease progression shows extensive heterogeneity in time and space . Opens in a new window.

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