Rheology of semiflexible bundle networks with transient linkers.
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Response of biopolymer networks governed by the physical properties of cross-linking moleculesThe dynamics of filament assembly define cytoskeletal network morphology.Intact Telopeptides Enhance Interactions between Collagens.Discontinuous bundling transition in semiflexible polymer networks induced by Casimir interactions.Multiscale model predicts increasing focal adhesion size with decreasing stiffness in fibrous matrices.Filament turnover tunes both force generation and dissipation to control long-range flows in a model actomyosin cortex.Weak reversible cross links may decrease the strength of aligned fiber bundles.Beam finite-element model of a molecular motor for the simulation of active fibre networks.
P2860
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P2860
Rheology of semiflexible bundle networks with transient linkers.
description
2014 nî lūn-bûn
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Rheology of semiflexible bundle networks with transient linkers.
@en
Rheology of semiflexible bundle networks with transient linkers.
@nl
type
label
Rheology of semiflexible bundle networks with transient linkers.
@en
Rheology of semiflexible bundle networks with transient linkers.
@nl
prefLabel
Rheology of semiflexible bundle networks with transient linkers.
@en
Rheology of semiflexible bundle networks with transient linkers.
@nl
P2093
P2860
P1476
Rheology of semiflexible bundle networks with transient linkers.
@en
P2093
Alex J Levine
Andreas R Bausch
Kei W Müller
Robijn F Bruinsma
Wolfgang A Wall
P2860
P304
P356
10.1103/PHYSREVLETT.112.238102
P407
P577
2014-06-10T00:00:00Z