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Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|February 1, 2008
Random loop model for long polymersManfred Bohn, Dieter W Heermann, Roel van DrielProteins|June 11, 2015
A multiscale approach to simulating the conformational properties of unbound multi-C₂H₂ zinc finger proteinsLei Liu, Rebecca C Wade, Dieter W HeermannThe Journal of Physical Chemistry. B|February 9, 2026
Spectral Graph Entropy of Chromatin: A von Neumann Framework for Multiscale Polymer Organization from Hi-CKavana Priyadarshini Keshava, Dieter W Heermann, Arnab BhattacherjeeJournal of Physics. Condensed Matter : an Institute of Physics Journal|May 27, 2011
Challenges in determining anomalous diffusion in crowded fluidsMarcel Hellmann, Joseph Klafter, Dieter W Heermann, et al.The Journal of Chemical Physics|May 6, 2010
Polymer translocation through a nanopore: the effect of solvent conditionsFelix Kapahnke, Ulrich Schmidt, Dieter W Heermann, et al.Biochimica Et Biophysica Acta|September 17, 2013
A topological similarity measure for proteinsGabriell Máté, Andreas Hofmann, Nicolas Wenzel, et al.International Journal of Molecular Sciences|August 4, 2018
Using Persistent Homology as a New Approach for Super-Resolution Localization Microscopy Data Analysis and Classification of γH2AX Foci/ClustersAndreas Hofmann, Matthias Krufczik, Dieter W Heermann, et al.Methods (San Diego, Calif.)|June 9, 2012
A model for the 3D chromatin architecture of pro and eukaryotesDieter W Heermann, Hansjoerg Jerabek, Lei Liu, et al.The Journal of Chemical Physics|August 31, 2004
Reconstruction of the free energy in the metastable region using the path ensembleArmando Ticona Bustillos, Dieter W Heermann, Claudette E CordeiroJournal of Cell Science|March 8, 2011
Chromatin folding--from biology to polymer models and backMariliis Tark-Dame, Roel van Driel, Dieter W HeermannPageof 7