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Elasticity / Deformation / Solid mechanics / Non-Newtonian fluids / Microrheology / Viscoelasticity / Rheology / Kelvin–Voigt material / Creep / Mechanics / Materials science / Physics


Modeling cell rheology with the Subcellular Element Model
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Document Date: 2010-04-12 17:02:55


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File Size: 3,95 MB

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Tempe / /

Company

IOP Publishing Ltd / /

Currency

USD / /

Facility

Arizona State University / /

IndustryTerm

sized systems / cytoskeletal network / apparent power law / cubic lattice network / power law stress stiffening / magnetic bead microrheology protocol / elastic network / random viscoelastic networks / elastic networks / deterministic ordered viscoelastic networks / weak power law rheology / off-lattice simulation algorithm / power law / viscoelastic networks / random amorphous viscoelastic network / amorphous network / real biological systems / weak apparent power law / measurement protocol / entangled network / weak power law exponents / random amorphous networks / multicellular systems / ordered viscoelastic networks / viscoelastic network / weak power law / energy / /

Organization

USA School of Life Sciences / Department of Physics / Arizona State University / /

ProvinceOrState

Arizona / /

Technology

measurement protocol / magnetic bead microrheology protocol / off-lattice simulation algorithm / gene expression / polymerization / /

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