Publication | Closed Access
Quantifying elasticity and viscosity from measurement of shear wave speed dispersion
410
Citations
16
References
2004
Year
Biomedical AcousticsMedical UltrasoundEngineeringFluid MechanicsMechanical EngineeringGelatin PhantomsBiomedical EngineeringDispersionRheological MeasurementPower UltrasoundMechanicsBiomechanicsRheologyRadiologyStress WaveUltrasonicsHarmonic Radiation ForceUltrasoundRheological Constitutive EquationViscoplastic FluidElastographyShear ElasticityAcoustic Microscopy
The propagation speed of shear waves depends on frequency and the medium’s complex stiffness, encompassing both elasticity and viscosity. The study presents a method to determine shear elasticity and viscosity of a homogeneous medium by measuring shear wave speed dispersion. The method employs harmonic radiation force to generate cylindrical shear waves at multiple frequencies, measures their speed via phase shift over distance, and fits the data to a theoretical model to extract complex stiffness. Experiments in gelatin phantoms validate the method and show promising results, while practical considerations and challenges for medical applications are discussed.
The propagation speed of shear waves is related to frequency and the complex stiffness (shear elasticity and viscosity) of the medium. A method is presented to solve for shear elasticity and viscosity of a homogeneous medium by measuring shear wave speed dispersion. Harmonic radiation force, introduced by modulating the energy density of incident ultrasound, is used to generate cylindrical shear waves of various frequencies in a homogeneous medium. The speed of shear waves is measured from phase shift detected over the distance propagated. Measurements of shear wave speed at multiple frequencies are fit with the theoretical model to solve for the complex stiffness of the medium. Experiments in gelatin phantoms show promising results validated by an independent method. Practical considerations and challenges in possible medical applications are discussed.
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