Mechanics and Structure of Filament Networks: Tissues and Cytoskeleton
INVITED · V09 · ID: 382015
Presentations
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The role of the Nonlinear plastic response of fibrous networks for organoid growth
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Presenters
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Andreas Bausch
TU Munich
Authors
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Andreas Bausch
TU Munich
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Finite-element Brownian dynamics simulations of biopolymer filament bundles and networks
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Presenters
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Maximilian Grill
Institute for Computational Mechanics, Technical University of Munich
Authors
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Maximilian Grill
Institute for Computational Mechanics, Technical University of Munich
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Valentin Slepukhin
University of California, Los Angeles, Department of Physics and Astronomy, UCLA
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Alex Levine
Department of Physics and Astronomy, UCLA, University of California, Los Angeles, UCLA Foundation
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Wolfgang Wall
Institute for Computational Mechanics, Technical University of Munich
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Quenched and topological disorder in filament networks and kinked bundles
Invited
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Presenters
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Valentin Slepukhin
University of California, Los Angeles, Department of Physics and Astronomy, UCLA
Authors
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Valentin Slepukhin
University of California, Los Angeles, Department of Physics and Astronomy, UCLA
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Mechanical criticality, nonlinearity, fracturing, and topological edge modes in fiber networks
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Presenters
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Xiaoming Mao
Physics, University of Michigan, University of Michigan
Authors
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Xiaoming Mao
Physics, University of Michigan, University of Michigan
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Cells utilize strain hardening and crosslinking to establish their extracellular niche in fibrous tissue
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Presenters
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Elliot Botvinick
University of California, Irvine
Authors
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Elliot Botvinick
University of California, Irvine
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Alicja Jagiello
University of California, Irvine
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Micah Lim
University of California, Irvine
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