Kinesin and myosin motors compete to drive rich multiphase dynamics in programmable cytoskeletal composites.

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Bibliographic Details
Title: Kinesin and myosin motors compete to drive rich multiphase dynamics in programmable cytoskeletal composites.
Authors: McGorty RJ; Department of Physics and Biophysics, University of San Diego, San Diego, CA 92110, USA., Currie CJ; Department of Physics and Biophysics, University of San Diego, San Diego, CA 92110, USA., Michel J; School of Physics and Astronomy, Rochester Institute of Technology, Rochester, NY 14623, USA., Sasanpour M; Department of Physics and Biophysics, University of San Diego, San Diego, CA 92110, USA., Gunter C; Department of Mechanical Engineering, San Diego State University, San Diego, CA 92182, USA., Lindsay KA; Department of Physics, Syracuse University, Syracuse, NY 13244, USA., Rust MJ; Department of Molecular Genetics and Cell Biology, University of Chicago, Chicago, IL 60637, USA., Katira P; Department of Mechanical Engineering, San Diego State University, San Diego, CA 92182, USA., Das M; School of Physics and Astronomy, Rochester Institute of Technology, Rochester, NY 14623, USA., Ross JL; Department of Physics, Syracuse University, Syracuse, NY 13244, USA., Robertson-Anderson RM; Department of Physics and Biophysics, University of San Diego, San Diego, CA 92110, USA.
Source: PNAS nexus [PNAS Nexus] 2023 Jul 31; Vol. 2 (8), pp. pgad245. Date of Electronic Publication: 2023 Jul 31 (Print Publication: 2023).
Publication Type: Journal Article
Journal Info: Publisher: Oxford University Press on behalf of the National Academy of Sciences Country of Publication: England NLM ID: 9918367777906676 Publication Model: eCollection Cited Medium: Internet ISSN: 2752-6542 (Electronic) Linking ISSN: 27526542 NLM ISO Abbreviation: PNAS Nexus Subsets: PubMed not MEDLINE
Database: MEDLINE Ultimate
Description
ISSN:2752-6542
DOI:10.1093/pnasnexus/pgad245