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Microrheology probes length scale dependent rheology
J. Liu
, M. L. Gardel
, K. Kroy
, E. Frey
, B. D. Hoffman
, J. C. Crocker
,
A. R. Bausch
, D. A. Weitz
Chair of Cellular Biophysics
Broad Institute of Harvard University
University of Leipzig
University of Munich
University of Pennsylvania
Research output
:
Contribution to journal
›
Article
›
peer-review
182
Scopus citations
Overview
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Keyphrases
Rheology
100%
Microrheology
100%
Scale-dependent
100%
Probe Length
100%
Wide Frequency Range
50%
Two-particle
50%
Particle Motion
50%
Relaxation Mechanism
50%
Viscoelasticity
50%
Filamentous Actin (F-actin)
50%
Filament Length
50%
Single Probe
50%
Correlated Motion
50%
Biochemistry, Genetics and Molecular Biology
Motion
100%
Flow Kinetics
100%
Solution and Solubility
50%
Actin
50%
Viscoelasticity
50%
Engineering
Length Scale
100%
Rheology
100%
Viscoelasticity
50%