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Regensburg 2013 – wissenschaftliches Programm

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BP: Fachverband Biologische Physik

BP 25: Posters: Cytoskeleton

Mittwoch, 13. März 2013, 17:30–19:30, Poster C

17:30 BP 25.1 Molecular Motors Can Sharpen the Length Distribution of Treadmilling Filaments — •Christoph Erlenkämper, Denis Johann, and Karsten Kruse
17:30 BP 25.2 A phase-field model for amoeboid motility — •Alexander Dreher, Igor Aronson, and Karsten Kruse
17:30 BP 25.3 A mechanism of stress generation in contractile rings — •Anne Wald, Viktoria Wollrab, Daniel Riveline, and Karsten Kruse
17:30 BP 25.4 Depolymerization of Microtubules by Diffusing Motor Proteins — •Emanuel Reithmann, Louis Reese, and Erwin Frey
17:30 BP 25.5 Dynamics and length distribution of microtubules under force and confinementBjörn Zelinski, •Nina Müller, and Jan Kierfeld
17:30 BP 25.6 Feedback mechanism for microtubule polymerization regulation — •Maria Zeitz and Jan Kierfeld
17:30 BP 25.7 Actomyosin Detection at Fluorescence Interference Contrast Checkpoints for Automated Biocomputation Readout — •Mercy Lard, Lasse ten Siethoff, Malin Persson, Alf Månsson, and Heiner Linke
17:30 BP 25.8 Single-molecule motility of kinesin-5 motors between cross-linked microtubules — •Alice Wiesbaum, Christina Thiede, Olga Zaitsava, Vladimir Fridman, Marcel Janson, Larisa Gheber, and Christoph Schmidt
17:30 BP 25.9 Measurement of F-actin localization tubes and their orientation distribution in three dimensions — •Evelin Jaschinski, Inka Kirchenbüchler, Ronald Springer, and Rudolf Merkel
17:30 BP 25.10 Investigation of desmin intermediate filament assembly by atomic force microscopy — •Mareike Dieding, Volker Walhorn, Andreas Brodehl, Hendrik Milting, and Dario Anselmetti
17:30 BP 25.11 Keratin 8/18 Networks and their Interplay with Plectin — •Ines Martin, Soufi Nafeey, Tobias Paust, Michael Beil, Harald Herrmann, and Othmar Marti
17:30 BP 25.12 Investigating Intermediate Filament (dis-)assembly Processes with Microfluidics — •Bernd Nöding, Viktor Schröder, Judith Breuer, Susanne Bauch, and Sarah Köster
17:30 BP 25.13 Passive Microrheology: A model-based approach to determine mechanical properties of assembled networks — •Tobias Paust, Ines Martin, Michael Beil, and Othmar Marti
17:30 BP 25.14 Conception and construction of a microfluidic chamber for the optical tweezers — •Samuel Vollmer, Tobias Paust, and Othmar Marti
17:30 BP 25.15 Laser ablation on actomyosin network — •Arnab Saha, Guillaume Salbreux, Frank Jülicher, and Stephan Grill
17:30 BP 25.16 Correlating the signaling cascade with movement in Dictyostelium discoideum — •Christoph Blum, Vladimir Zykov, Kaumudi Prabhakara, Marco Tarantola, and Eberhard Bodenschatz
17:30 BP 25.17 Rheology of cytoskeletal in-vitro networks — •Meenakshi Prabhune, Knut Heidemann, Florian Rehfeldt, Max Wardetzky, and Christoph Schmidt
17:30 BP 25.18 Biopolymer Networks: Simulations of Rigid Rods Connected by Wormlike Chains — •Knut M Heidemann, Meenakshi M Prabhune, Florian Rehfeldt, Christoph F Schmidt, and Max Wardetzky
17:30 BP 25.19 Actin Dynamics in Myosin II-null Dictyostelium DiscoideumHsin-Fang Hsu, •Christian Westendorf, Carsten Beta, and Eberhard Bodenschatz
17:30 BP 25.20 Active Biopolymer Networks — •Adam Walker, Nikta Fakhri, Kerstin von Roden, and Christoph F. Schmidt
17:30 BP 25.21 Calmodulin regulates motility, dimerisation and phospholipid-binding of the unique myosin motor in Leishmania, myosin-XXI — •Christopher Batters, Heike Ellrich, Constanze Helbig, Katy Anne Woodall, Christian Hundschell, and Claudia Veigel
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