Dresden 2020 – wissenschaftliches Programm

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BP: Fachverband Biologische Physik

BP 18: Poster VI

Dienstag, 17. März 2020, 14:00–16:00, P2/2OG

Cell Adhesion and Migration & Multicellular Systems (BP 16.1 – BP 16.27)

14:00 BP 18.1 Altering the early development of Caenorhabditis Elegans via laser ablation — •Vincent Borne, Philipp Strunz, and Matthias Weiss
14:00 BP 18.2 Morphodynamics in the Foraging of Physarum polycephalum — •Lisa Schick, Mirna Kramar, and Karen Alim
14:00 BP 18.3 Network adaptation to transient stroke — •Leonie Bastin, Komal Bhattacharyya, and Karen Alim
14:00 BP 18.4 Modelling cell monolayers with an elastic phase field approach — •Robert Chojowski, Ulrich S. Schwarz, and Falko Ziebert
14:00 BP 18.5 Stochastic Cell-Cell Interactions in Confined Systems — •Nicolas Arlt, David Brückner, Alexandra Fink, Joachim Rädler, and Chase Broedersz
14:00 BP 18.6 Collective cell migration in 3D micro-tumours — •Tom Brandstätter, David Brückner, Yu Long Han, Ming Guo, and Chase Broedersz
14:00 BP 18.7 Unravelling the biomolecular mechanism of light-switchable adhesion of Chlamydomonas to surfaces — •Antoine Girot, Rodrigo Catalán, Alexandros Fragkopoulos, Anaëlle Chrétien, Line Holtzer, and Oliver Bäumchen
14:00 BP 18.8 Mechanisms behind growth and locomotion of Physarum polycephalum — •Nico Schramma and Karen Alim
14:00 BP 18.9 Energetic cost of morphological states of Physarum polycephalum — •Leonie Kemeter, Mirna Kramar, and Karen Alim
14:00 BP 18.10 The effect of blue light on Physarum polycephalum cytoplasm flow for different topologies — •Siyu Chen, Felix Bäuerle, Jean-Daniel Julien, and Karen Alim
14:00 BP 18.11 Flow reorganisation in the brain microvasculature during a stroke — •Agnese Codutti and Karen Alim
14:00 BP 18.12 Parameter Optimization of a Cellular Potts Model using Multiple Micro-Pattern Cell Migration Experiments — •Sophia Anna Schaffer, Andriy Goychuk, Christoph Schreiber, Erwin Frey, and Joachim Rädler
14:00 BP 18.13 Evaluation of cancer spheroid growth in synthetic hydrogels with light sheet microscopy — •Viktoria Zieger, Timo Betz, and Bart E. Vos
14:00 BP 18.14 The effect of lidocaine and calcium signaling on the adhesion of Chlamydomonas to surfaces — •Marzieh Karimi, Henning Lührs, Antoine Girot, and Oliver Bäumchen
14:00 BP 18.15 Fluid flow controls morphological changes — •Noah Ziethen and Karen Alim
14:00 BP 18.16 Quantification of the collective dynamics of endothelial cells in a two-dimensional confluent layer — •Anselm Hohlstamm, Mats Leif Moskopp, Andreas Deussen, and Peter Dieterich
14:00 BP 18.17 The Physics of Carcinomas: A multi-scale analysis on primary tumor tissues — •Frank Sauer, Steffen Grosser, Erik W. Morawetz, Thomas Fuhs, Frederic Renner, Benjamin Wolf, Sonja Kallendrusch, Hannah-Marie Scholz Margraf, Jürgen Lippoldt, Heiko Tzschätzsch, Jürgen Braun, Ingolf Sack, Claudia T. Mierke, Ingo Bechmann, Susanne Briest, Lars-Christian Horn, Michael Höckel, Bahriye Aktas, and Josef A. Käs
14:00 BP 18.18 Stick-slip motion for a cellular glider with translational and rotational friction — •Pintu Patra, Anna Battista, and Ulrich S. Schwarz
14:00 BP 18.19 One-dimensional active gel models for optogenetic control of cell locomotion — •Oliver Max Drozdowski, Falko Ziebert, and Ulrich Sebastian Schwarz
14:00 BP 18.20 Spatio-temporal characteristics of eukaryotic single-cell motility on fibronectin coated micro-lanes — •Johannes Heyn, Christoph Schreiber, and Joachim Rädler
14:00 BP 18.21 Quantitative Phase Imaging for Studying Cell Migration and Bone Resorption in Periodontitis — •Felix Peter Sanchez Klose, Agnes Dahlstrand Rudin, Karin Christenson, Maria Ransjö, and Johan Bylund
14:00 BP 18.22 Engineering motile amoeboid cells toward precise and targeted microtransport — •Setareh Sharifi Panah, Oliver Nagel, Valentino Lepro, Robert Grossmann, and Carsten Beta
14:00 BP 18.23 Physical interaction of tumor spheroids with the ECM — •Eliane Blauth, Steffen Grosser, Frank Sauer, and Josef A. Käs
  14:00 BP 18.24 The contribution has been withdrawn.
14:00 BP 18.25 Active gel model of onset of the movement in one-dimensional cell motility — •Yuan-Heng Tseng and Hsuan-Yi Chen
14:00 BP 18.26 Motility of aggregated Neisseria gonorrhoeae cells influences cell death and response to antibiotic treatment — •Marc Hennes, Tom Cronenberg, and Berenike Maier
14:00 BP 18.27 A large scan are AFM with convolutional neural network image segmentation for live cell measurements — •Todor Krastev and Tilman E. Schäffer
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