Active microrheology to determine viscoelastic parameters of Stokes-Oldroyd B fluids using optical tweezers
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
http://iopscience.iop.org/article/10.1088/2399-6528/ab0833/pdf
Reference36 articles.
1. Active Mechanics Reveal Molecular-Scale Force Kinetics in Living Oocytes
2. Equilibrium physics breakdown reveals the active nature of red blood cell flickering
3. Rheological properties of cells measured by optical tweezers
4. Viscoelastic Transient of Confined Red Blood Cells
5. Rheology of Human Blood Plasma: Viscoelastic Versus Newtonian Behavior
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1. Simulating Brownian motion in thermally fluctuating viscoelastic fluids by using the smoothed profile method;Journal of Computational Physics;2024-07
2. Enhanced directionality of active processes in a viscoelastic bath;New Journal of Physics;2023-09-01
3. Comparison of translational and rotational modes towards passive rheology of the cytoplasm of MCF-7 cells using optical tweezers;Frontiers in Physics;2023-01-09
4. Temporal evolution of viscoelasticity of soft colloid laden air–water interface: a multiple mode microrheology study;RSC Advances;2022
5. Single-shot wideband active microrheology using multiple-sinusoid modulated optical tweezers;Physical Review Fluids;2021-12-03
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