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Methods in Molecular Biology (Clifton, N.J.)|August 16, 2018
Processing and Analysis of Hi-C Data on BacteriaAndreas Hofmann, Dieter W HeermannSeminars in Cell & Developmental Biology|October 16, 2007
Computational modeling of the chromatin fiberJörg Langowski, Dieter W HeermannJournal of Physics. Condensed Matter : an Institute of Physics Journal|January 8, 2015
The interaction of DNA with multi-Cys2His2 zinc finger proteinsLei Liu, Dieter W HeermannPlos One|June 1, 2012
Expression-dependent folding of interphase chromatinHansjoerg Jerabek, Dieter W HeermannNature Communications|February 4, 2026
An experimentally-informed polymer model reveals high resolution organization of genomic lociRahul Mittal, Dieter W Heermann, Arnab BhattacherjeePhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|October 13, 2007
Monte Carlo simulations reveal the straightening of an end-grafted flexible chain with a rigid side chainMarcel Hellmann, Matthias Weiss, Dieter W HeermannEuropean Biophysics Journal : EBJ|June 19, 2009
Brownian dynamics simulations reveal regulatory properties of higher-order chromatin structuresJens Odenheimer, Dieter W Heermann, Gregor KrethJournal of Biological Physics|January 25, 2013
Dynamic simulation of active/inactive chromatin domainsJens Odenheimer, Gregor Kreth, Dieter W HeermannPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|December 21, 2011
Looped star polymers show conformational transition from spherical to flat toroidal shapesPascal Reiss, Miriam Fritsche, Dieter W HeermannJournal of Biological Physics|August 12, 2009
Superdiffusion in a model for diffusion in a molecularly crowded environmentDietrich Stauffer, Christian Schulze, Dieter W HeermannPageof 7