The theoretical study of forced bubble oscillations is motivated by the importance of cavitation bubbles and oscillating encapsulated microbubbles (i.e. contrast agents) in medical sciences. In more details,theoretical studies on bubble dynamics addressing the sound-bubble interaction phenomenon provide the basis for understanding the dynamics of contrast agent microbubbles used in medical diagnosis and of non-linearly oscillating cavitation bubbles in the case of high-intensity ultrasound therapy. Moreover, the inclusion of viscoelasticity is of vital importance for an accurate theoretical analysis since most biological tissues and fluids exhibit non-Newtonian behavior
The surface stability problem of an encapsulated microbubble in an ultrasound field is numerically a...
The dynamics of a gas-filled microbubble encapsulated by a viscoelastic fluid shell immersed in a Ne...
Contrast-enhanced ultrasound imaging relies on the nonlinear scattering of microbubbles suspended in...
The theoretical study of forced bubble oscillations is motivated by the importance of cavitation bub...
This is the published version. Copyright 2005 Acoustical Society of AmericaUnderstanding the behavio...
This is the published version. Copyright © 2005 Acoustical Society of AmericaUnderstanding the behav...
Nonlinear oscillations of gas bubbles in viscoelastic non-Newtonian fluids remains a relatively unex...
The nonlinear oscillations of a spherical, acoustically forced gas bubble in nonlinear viscoelastic...
In a variety of biomedical engineering applications, cavitation occurs in soft tissue, a viscoelasti...
Encapsulated microbubbles combined with ultrasound have been widely utilized in various biomedical a...
At therapeutic intensities, the application of ultrasound is often accompanied by bubble activity. B...
When a microbubble is subject to ultrasound, non-spherical oscillation or surface modes can be gener...
The cavitation-mediated bioeffects are primarily associated with the dynamic behaviors of bubbles in...
Regular and chaotic radial oscillations of an acoustically driven gas bubble in a viscoelastic fluid...
Ultrasound-driven microbubble dynamics are central to biomedical applications, from diagnostic imagi...
The surface stability problem of an encapsulated microbubble in an ultrasound field is numerically a...
The dynamics of a gas-filled microbubble encapsulated by a viscoelastic fluid shell immersed in a Ne...
Contrast-enhanced ultrasound imaging relies on the nonlinear scattering of microbubbles suspended in...
The theoretical study of forced bubble oscillations is motivated by the importance of cavitation bub...
This is the published version. Copyright 2005 Acoustical Society of AmericaUnderstanding the behavio...
This is the published version. Copyright © 2005 Acoustical Society of AmericaUnderstanding the behav...
Nonlinear oscillations of gas bubbles in viscoelastic non-Newtonian fluids remains a relatively unex...
The nonlinear oscillations of a spherical, acoustically forced gas bubble in nonlinear viscoelastic...
In a variety of biomedical engineering applications, cavitation occurs in soft tissue, a viscoelasti...
Encapsulated microbubbles combined with ultrasound have been widely utilized in various biomedical a...
At therapeutic intensities, the application of ultrasound is often accompanied by bubble activity. B...
When a microbubble is subject to ultrasound, non-spherical oscillation or surface modes can be gener...
The cavitation-mediated bioeffects are primarily associated with the dynamic behaviors of bubbles in...
Regular and chaotic radial oscillations of an acoustically driven gas bubble in a viscoelastic fluid...
Ultrasound-driven microbubble dynamics are central to biomedical applications, from diagnostic imagi...
The surface stability problem of an encapsulated microbubble in an ultrasound field is numerically a...
The dynamics of a gas-filled microbubble encapsulated by a viscoelastic fluid shell immersed in a Ne...
Contrast-enhanced ultrasound imaging relies on the nonlinear scattering of microbubbles suspended in...