We have developed a large-bandwidth two-particle microrheology technique to measure loss and storage moduli of viscoelastic materials from 0.1 Hz to about 100 kHz using laser trapping and interferometry. We found that quantitative agreement between one- and two-particle microrheology exist in entangled solutions of wormlike micelles chosen as a simple model viscoelastic system. These results validate both experimental method and data interpretation. The consistent results also prove that in a simple system, where the solution length scales are much smaller than the micron probe size, one-particle microrheology can accurately measure bulk viscoelastic parameter
Optical tracer-microrheology has been applied to study the rheological properties of a concentrated ...
We present a comprehensive overview of microrheology, emphasizing the underlying theory, practical a...
Microrheology is the study of the flow and deformation of fluids on the micrometre scale. It has man...
We have measured the frequency-dependent shear modulus of entangled solutions of wormlike micelles b...
We present here a comparison between three rheological techniques to verify a recently developed opt...
We study the Brownian motion of microbeads immersed in water and in a viscoelastic wormlike micelles...
The Brownian motions of microscopic particles in viscous or viscoelastic fluids can be used to measu...
We present an experimental procedure to perform broadband microrheological measurements with optical...
We present an experimental procedure to perform broadband microrheological measurements with optical...
We present an experimental procedure to perform broadband microrheological measurements with optical...
Quantitatively measuring the mechanical properties of soft matter over a wide range of length and ti...
Quantitatively measuring the mechanical properties of soft matter over a wide range of length and ti...
The field of microrheology is concerned with how materials store and dissipate mechanical energy as ...
We present a light-scattering technique for the measurement of the microrheological properties of vi...
We exploit the power of microrheology to measure the viscoelasticity of entangled F-actin solutions ...
Optical tracer-microrheology has been applied to study the rheological properties of a concentrated ...
We present a comprehensive overview of microrheology, emphasizing the underlying theory, practical a...
Microrheology is the study of the flow and deformation of fluids on the micrometre scale. It has man...
We have measured the frequency-dependent shear modulus of entangled solutions of wormlike micelles b...
We present here a comparison between three rheological techniques to verify a recently developed opt...
We study the Brownian motion of microbeads immersed in water and in a viscoelastic wormlike micelles...
The Brownian motions of microscopic particles in viscous or viscoelastic fluids can be used to measu...
We present an experimental procedure to perform broadband microrheological measurements with optical...
We present an experimental procedure to perform broadband microrheological measurements with optical...
We present an experimental procedure to perform broadband microrheological measurements with optical...
Quantitatively measuring the mechanical properties of soft matter over a wide range of length and ti...
Quantitatively measuring the mechanical properties of soft matter over a wide range of length and ti...
The field of microrheology is concerned with how materials store and dissipate mechanical energy as ...
We present a light-scattering technique for the measurement of the microrheological properties of vi...
We exploit the power of microrheology to measure the viscoelasticity of entangled F-actin solutions ...
Optical tracer-microrheology has been applied to study the rheological properties of a concentrated ...
We present a comprehensive overview of microrheology, emphasizing the underlying theory, practical a...
Microrheology is the study of the flow and deformation of fluids on the micrometre scale. It has man...