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Nucleus (Austin, Tex.)|July 9, 2011
Binding kinetics of human ISWI chromatin-remodelers to DNA repair sites elucidate their target location mechanismFabian Erdel, Karsten RippeProceedings of the National Academy of Sciences of the United States of America|November 7, 2012
Quantifying transient binding of ISWI chromatin remodelers in living cells by pixel-wise photobleaching profile evolution analysisFabian Erdel, Karsten RippeThe FEBS Journal|August 4, 2011
Chromatin remodelling in mammalian cells by ISWI-type complexes--where, when and why?Fabian Erdel, Karsten RippeBiophysical Journal|April 10, 2018
Formation of Chromatin Subcompartments by Phase SeparationFabian Erdel, Karsten RippeJournal of Physics. Condensed Matter : an Institute of Physics Journal|January 8, 2015
The viscoelastic properties of chromatin and the nucleoplasm revealed by scale-dependent protein mobilityFabian Erdel, Michael Baum, Karsten RippeAnnals of the New York Academy of Sciences|September 17, 2013
Establishing epigenetic domains via chromatin-bound histone modifiersFabian Erdel, Katharina Müller-Ott, Karsten RippeEuropean Biophysics Journal : EBJ|June 23, 2009
Analysis of protein mobilities and interactions in living cells by multifocal fluorescence fluctuation microscopyGerrit Heuvelman, Fabian Erdel, Malte Wachsmuth, et al.Methods in Molecular Biology (Clifton, N.J.)|August 14, 2019
Light-Induced Transcription Activation for Time-Lapse Microscopy Experiments in Living CellsJorge Trojanowski, Anne Rademacher, Fabian Erdel, et al.Nature Communications|July 25, 2014
Retrieving the intracellular topology from multi-scale protein mobility mapping in living cellsMichael Baum, Fabian Erdel, Malte Wachsmuth, et al.Methods in Molecular Biology (Clifton, N.J.)|October 13, 2022
Assessing the Phase Separation Propensity of Proteins in Living Cells Through Optodroplet FormationAnne Rademacher, Fabian Erdel, Robin Weinmann, et al.Pageof 17