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).
2. Q. Yang et al., Cortical waves mediate the cellular response to electric fields. eLife 11, e73198 (2022).
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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