Biological Active Matter III
FOCUS · M11 · ID: 1067920
Presentations
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Configurational entropy as a driver of tissue structural heterogeneityVasudha Srivastava, Jennifer L. Hu, Sundus F. Shalabi, James C. Garbe, Boris Veytsman, Martha R.Stampfer, Matt Thomson, Greg Huber, Mark A. LaBarge, ZevJ. Gartner
ORAL · Invited
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Presenters
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Zev J Gartner
University of California, San Francisco
Authors
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Zev J Gartner
University of California, San Francisco
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Strain Response to Energy Consumption in Contractile Acto-Myosin Gels
ORAL
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Presenters
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Francis M Cavanna
University of Texas at Austin
Authors
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Francis M Cavanna
University of Texas at Austin
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José R Alvarado
University of Texas at Austin
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Emergent Programmable Behavior and Chaos in Dynamically Driven Active Filaments
ORAL
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Publication: Krishnamurthy, D. and Prakash, M. (2022) 'Emergent Programmable Behavior and Chaos in Dynamically Driven Active Filaments', bioRxiv. Available at: https://doi.org/10.1101/2022.06.05.494577
Presenters
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Deepak Krishnamurthy
University of California, Berkeley
Authors
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Deepak Krishnamurthy
University of California, Berkeley
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Manu Prakash
Stanford University
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Sensing Physical Signals with Cytoskeletal Dynamics
ORAL
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Publication: 1. A. L. Bull et al., Actin Dynamics as a Multiscale Integrator of Cellular Guidance Cues. Frontiers in Cell and Developmental Biology 10, (2022).<br>2. Q. Yang et al., Cortical waves mediate the cellular response to electric fields. eLife 11, e73198 (2022).<br>
Presenters
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Wolfgang Losert
University of Maryland College Park, University of Maryland, College Park
Authors
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Wolfgang Losert
University of Maryland College Park, University of Maryland, College Park
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Geometric trade-off between contractile force and fluid drag determines the motility of actomyosin droplets
ORAL
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Publication: [1] R. Sakamoto, Z. Izri, Y. Shimamoto, M. Miyazaki, and Y. T. Maeda. Geometric trade-off between contractile force and viscous drag determines the actomyosin-based motility of a cell-sized droplet., Proc. Natl. Acad. Sci. U.S.A. 119, e2121147119 (2022).
Presenters
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Ryota Sakamoto
Yale University
Authors
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Ryota Sakamoto
Yale University
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Ziane Izri
University of Minnesota
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Yuta Shimamoto
National Institute of Genetics
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Makito Miyazaki
Kyoto University
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Yusuke T Maeda
Kyushu University
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F-actin architecture governs self-organized criticality in the cytoskeleton
ORAL
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Presenters
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Zachary G Sun
Yale University
Authors
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Zachary G Sun
Yale University
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Michael P Murrell
Yale University
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Motor-driven advection competes with macromolecular crowding to drive spatiotemporally heterogeneous transport in cytoskeleton composites
ORAL
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Presenters
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Janet Y Sheung
Scripps College
Authors
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Janet Y Sheung
Scripps College
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Jonathan Garamella
University of San Diego
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Stella Kahl
Scripps College
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Brian Y Lee
Claremont McKenna College
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Nadia Schwartz Bolef
Scripps College
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Daisy H Achiriloaie
Scripps College, Department of Physics, W. M. Keck Science Department, Scripps College
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Jennifer L Ross
Syracuse University
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Ryan J McGorty
University of San Diego, Department of Physics and Biophysics, University of San Diego
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Rae M Robertson-Anderson
University San Diego, University of San Diego, Department of Physics and Biophysics, University of San Diego
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Competition of convection and diffusion in the self-mixing of microtubule-kinesin active fluid with non-uniform activity: Experiment
ORAL
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Publication: Bate et al. Self-mixing in microtubule-kinesin active fluid from nonuniform to uniform distributions of activities, 23 May 2022, PREPRINT (Version 1) available at Research Square [https://doi.org/10.21203/rs.3.rs-1682654/v1]
Presenters
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Teagan Bate
Worcester Polytechnic Institute
Authors
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Teagan Bate
Worcester Polytechnic Institute
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Megan Varney
Worcester Polytechnic Institute
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Ezra Taylor
Worcester Polytechnic Institute
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Joshua Dickie
Worcester Polytechnic Institute
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Chih-Che Chueh
National Cheng Kung University
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Michael M Norton
Rochester Institute of Technology
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Kun-Ta Wu
Worcester Polytechnic Institute
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Competition of convection and diffusion in the self-mixing of microtubule-kinesin active fluid with non-uniform activity: Simulation
ORAL
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Publication: Bate et al. Self-mixing in microtubule-kinesin active fluid from nonuniform to uniform distributions of activities, 23 May 2022, PREPRINT (Version 1) available at Research Square [https://doi.org/10.21203/rs.3.rs-1682654/v1]
Presenters
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Joshua H Dickie
Worcester Polytechnic Institute
Authors
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Joshua H Dickie
Worcester Polytechnic Institute
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Teagan Bate
Worcester Polytechnic Institute
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Megan Varney
Worcester Polytechnic Institute
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Ezra Taylor
Worcester Polytechnic Institute
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Chih-Che Chueh
National Cheng Kung University
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Michael M Norton
Rochester Institute of Technology
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Kun-Ta Wu
Worcester Polytechnic Institute
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Kinesin-driven microtubule flows drive elastic structural transitions in actin networks
ORAL
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Presenters
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John P Berezney
Brandeis University
Authors
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John P Berezney
Brandeis University
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Itamar Kolvin
University of California, Santa Barbara
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Seth Fraden
Brandeis University, Brandeis Univ, Department of Physics & MRSEC, Brandeis University, Waltham, MA
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Zvonimir Dogic
University of California, Santa Barbara
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Extensile to contractile transition in active networks of microtubule and molecular motors
ORAL
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Presenters
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Guillaume Duclos
Brandeis Univ, Brandeis University
Authors
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Guillaume Duclos
Brandeis Univ, Brandeis University
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Bibi Najma
Brandeis University
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Peter J Foster
Brandeis University
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Aparna Baskaran
Brandeis Univ, Brandeis University
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Toward Rational Design of Biotic-Abiotic Machines
ORAL
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Presenters
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Jonathan A Michel
Rochester Institute of Technology
Authors
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Jonathan A Michel
Rochester Institute of Technology
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Michael J Rust
University of Chicago
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Jennifer L Ross
Syracuse University
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Megan T Valentine
University of California, Santa Barbara
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Rae M Robertson-Anderson
University San Diego, University of San Diego, Department of Physics and Biophysics, University of San Diego
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Tim J Atherton
Tufts University
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Moumita Das
Rochester Institute of Technology
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Extracting Active Fluctuating forces from Fluctuating motions of an active particle in viscoelastic medium a quadratic confinement
ORAL
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Presenters
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Simin Xia
Lehigh University
Authors
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Simin Xia
Lehigh University
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Chong Shen
Lehigh University
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H Daniel Ou-Yang
Lehigh Univ, Lehigh University
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