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Journal Article
Anderson, Mark T., Dewenter, Lena, Maier, Berenike ORCID: 0000-0001-6971-9927 and Seifert, H. Steven (2014). Seminal Plasma Initiates a Neisseria gonorrhoeae Transmission State. mBio, 5 (2). WASHINGTON: AMER SOC MICROBIOLOGY. ISSN 2150-7511
Brenzinger, Susanne, Dewenter, Lena, Delalez, Nicolas J., Leicht, Oliver, Berndt, Volker, Paulick, Anja, Berry, Richard M., Thanbichler, Martin, Armitage, Judith P., Maier, Berenike ORCID: 0000-0001-6971-9927 and Thormann, Kai M. (2016). Mutations targeting the plug-domain of the Shewanella oneidensis proton-driven stator allow swimming at increased viscosity and under anaerobic conditions. Mol. Microbiol., 102 (5). S. 925 - 939. HOBOKEN: WILEY-BLACKWELL. ISSN 1365-2958
Dewenter, Lena, Oldewurtel, Enno R., Kouzel, Nadzeya, Volkmann, Thorsten, Henseler, Katja and Maier, Berenike (2016). Differential Interaction Forces Govern Bacterial Sorting and Stability in Early Biofilms. Biophys. J., 110 (3). S. 469A - 470. CAMBRIDGE: CELL PRESS. ISSN 1542-0086
Dewenter, Lena, Volkmann, Thorsten E. and Maier, Berenike ORCID: 0000-0001-6971-9927 (2015). Oxygen governs gonococcal microcolony stability by enhancing the interaction force between type IV pili. Integr. Biol., 7 (10). S. 1161 - 1171. OXFORD: OXFORD UNIV PRESS. ISSN 1757-9708
Marathe, Rahul, Meel, Claudia, Schmidt, Nora C., Dewenter, Lena, Kurre, Rainer, Greune, Lilo, Schmidt, M. Alexander, Mueller, Melanie J. I., Lipowsky, Reinhard ORCID: 0000-0001-8417-8567, Maier, Berenike ORCID: 0000-0001-6971-9927 and Klumpp, Stefan ORCID: 0000-0003-0584-2146 (2014). Bacterial twitching motility is coordinated by a two-dimensional tug-of-war with directional memory. Nat. Commun., 5. LONDON: NATURE PUBLISHING GROUP. ISSN 2041-1723
Oldewurtel, Enno R., Kouzel, Nadzeya, Dewenter, Lena, Henseler, Katja and Maier, Berenike ORCID: 0000-0001-6971-9927 (2015). Differential interaction forces govern bacterial sorting in early biofilms. eLife, 4. CAMBRIDGE: ELIFE SCIENCES PUBLICATIONS LTD. ISSN 2050-084X
Thesis Abstract
Dewenter, Lena (2016). How type IV pilus interaction forces control bacterial systems. Thesis Abstract, Universität zu Köln.