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Nonlinear radial oscillations of encapsulated microbubbles subject to ultrasound: The effect of membrane constitutive law

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Autor
Tsiglifis, K.; Pelekasis, N. A.
Fecha
2008
DOI
10.1121/1.2909553
Materia
Acoustics
Constitutive models
Hardening
Motion estimation
Nonlinear programming
Photoacoustic effect
Resonance
Shells (structures)
Strain hardening
(001) parameter
Acoustic disturbances
Acoustical Society of America (ASA)
Constitutive laws
elastic shells
In order
Kelvin-Voigt
Micro bubbles
Micro-bubbles
Radial oscillations
Resonance frequencies
Shell materials
Strain softening
Strain softening (IGC:F6)
Strain-hardening
Total-scattering cross-section (TSCS)
Visco-elastic properties
Membranes
contrast medium
algorithm
article
elasticity
encapsulation
erythrocyte membrane
Fourier transformation
lipid bilayer
liquid
material state
mathematical model
membrane structure
motion
oscillation
priority journal
sound pressure
stress strain relationship
ultrasound
viscosity
Gases
Microbubbles
Models, Theoretical
Pressure
Statistics as Topic
Ultrasonics
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Resumen
The nonlinear radial oscillations of bubbles that are encapsulated in an elastic shell are investigated numerically subject to three different constitutive laws describing the viscoelastic properties of the shell: the Mooney-Rivlin (MR), the Skalak (SK), and the Kelvin-Voigt (KV) models are used in order to describe strain-softening, strain-hardening and small displacement (Hookean) behavior of the shell material, respectively. Due to the isotropic nature of the acoustic disturbances, the area dilatation modulus is the important parameter. When the membrane is strain softening (MR) the resonance frequency decreases with increasing sound amplitude, whereas the opposite happens when the membrane is strain hardening (SK). As the amplitude of the acoustic disturbance increases the total scattering cross section of a microbubble with a SK membrane tends to decrease, whereas that of a KV or a MR membrane tends to increase. The importance of strain-softening behavior in the abrupt onset of volume pulsations, that is often observed with small insonated microbubbles at moderately large sound amplitudes, is discussed. © 2008 Acoustical Society of America.
URI
http://hdl.handle.net/11615/33917
Colecciones
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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