Cytoskeletal polymer networks: viscoelastic properties are determined by the microscopic interaction potential of cross-links.
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Alpha-actinin binding kinetics modulate cellular dynamics and force generationThe cytoskeleton and neurite initiationStructural and viscoelastic properties of actin networks formed by espin or pathologically relevant espin mutantsMorphology and viscoelasticity of actin networks formed with the mutually interacting crosslinkers: palladin and alpha-actinin.Impact of heating on passive and active biomechanics of suspended cells.Dynamic role of cross-linking proteins in actin rheology.The Elastic Behaviour of Sintered Metallic Fibre Networks: A Finite Element Study by Beam Theory.Microrheology of highly crosslinked microtubule networks is dominated by force-induced crosslinker unbinding.Determinants of fluidlike behavior and effective viscosity in cross-linked actin networks.Actin dynamics, architecture, and mechanics in cell motility.Polymer physics of the cytoskeleton.The physical origins of transit time measurements for rapid, single cell mechanotyping.Mechanical bone growth stimulation by magnetic fibre networks obtained through a competent finite element technique.Shear thickening of F-actin networks crosslinked with non-muscle myosin IIB.Structural and viscoelastic properties of actin/filamin networks: cross-linked versus bundled networks.Mechanochemical model of cell migration on substrates of varying stiffness.Bundling in brushes of directed and semiflexible polymers.Nonlinear Actin Deformations Lead to Network Stiffening, Yielding, and Nonuniform Stress Propagation.Filament turnover tunes both force generation and dissipation to control long-range flows in a model actomyosin cortex.Mechanical Properties of the Cytoskeleton and Cells.A chemo-mechanical constitutive model for transiently cross-linked actin networks and a theoretical assessment of their viscoelastic behaviour.Corticosterone treatment results in enhanced release of peptidergic vesicles in astrocytes via cytoskeletal rearrangements.Synthetic Transient Crosslinks Program the Mechanics of Soft, Biopolymer-Based Materials.Stress-enhanced gelation: a dynamic nonlinearity of elasticity.Theory of Semiflexible Filaments and NetworksThe influence of disorder on deformations in semiflexible networks
P2860
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P2860
Cytoskeletal polymer networks: viscoelastic properties are determined by the microscopic interaction potential of cross-links.
description
2009 nî lūn-bûn
@nan
2009年の論文
@ja
2009年論文
@yue
2009年論文
@zh-hant
2009年論文
@zh-hk
2009年論文
@zh-mo
2009年論文
@zh-tw
2009年论文
@wuu
2009年论文
@zh
2009年论文
@zh-cn
name
Cytoskeletal polymer networks: ...... tion potential of cross-links.
@en
Cytoskeletal polymer networks: ...... tion potential of cross-links.
@nl
type
label
Cytoskeletal polymer networks: ...... tion potential of cross-links.
@en
Cytoskeletal polymer networks: ...... tion potential of cross-links.
@nl
prefLabel
Cytoskeletal polymer networks: ...... tion potential of cross-links.
@en
Cytoskeletal polymer networks: ...... tion potential of cross-links.
@nl
P2860
P1433
P1476
Cytoskeletal polymer networks: ...... ction potential of cross-links
@en
P2093
A R Bausch
M M A E Claessens
P2860
P304
P356
10.1016/J.BPJ.2009.03.038
P407
P577
2009-06-01T00:00:00Z