A detailed understanding of the response of single microbubbles subjected to ultrasound is fundamental to a full understanding of the contrast-enhancing abilities of microbubbles in medical ultrasound imaging, in targeted molecular imaging with ultrasound, and in ultrasound-mediated drug delivery with microbubbles. Here, single microbubbles are isolated and their ultrasound-induced radial dynamics recorded with an ultra-high-speed camera at up to 25 million frames per second. The sound emission is recorded simultaneously with a calibrated single element transducer. It is shown that the sound emission can be predicted directly from the optically recorded radial dynamics, and vice versa, that the nanometer-scale radial dynamics can be predict...
Sub-capillary sized microbubbles offer improved techniques for diagnosis and therapy of vascular rel...
We present a new optical characterization of the behavior of single ultrasound contrast bubbles. The...
Radial modulation imaging is a new promising technique to improve contrast-enhanced ultrasound image...
In this study we present a combined optical sizing and acoustical characterization technique for the...
textabstractThe imaging of smaller vessels and organ perfusion has high clinical value for the di¬ag...
Ultrasound (US) contrast agents consist of microbubbles ranging from 1 to 10 μm in size. The acousti...
This thesis describes the characterization of the dynamics and the acoustic responses of single BR14...
Microbubble contrast agents were originally developed to enhance echogenicity in diagnostic sonograp...
The acoustic response of individual targeted microbubbles, sized optically, to high-frequency ultras...
Ultrasound contrast agents (UCA) populations are typically polydisperse and contain microbubbles wit...
Optical tweezers enable non-destructive, contact-free manipulation of ultrasound contrast agent (UCA...
The majority of studies investigating the physics of ultrasound-triggered microbubble behaviour have...
Nonlinear microbubble oscillations can be exploited by signal processing to provide contrast enhance...
Ultrasound contrast agents have the ability to provide locally increased echogenicity, improving the...
Sub-capillary sized microbubbles offer improved techniques for diagnosis and therapy of vascular rel...
Sub-capillary sized microbubbles offer improved techniques for diagnosis and therapy of vascular rel...
We present a new optical characterization of the behavior of single ultrasound contrast bubbles. The...
Radial modulation imaging is a new promising technique to improve contrast-enhanced ultrasound image...
In this study we present a combined optical sizing and acoustical characterization technique for the...
textabstractThe imaging of smaller vessels and organ perfusion has high clinical value for the di¬ag...
Ultrasound (US) contrast agents consist of microbubbles ranging from 1 to 10 μm in size. The acousti...
This thesis describes the characterization of the dynamics and the acoustic responses of single BR14...
Microbubble contrast agents were originally developed to enhance echogenicity in diagnostic sonograp...
The acoustic response of individual targeted microbubbles, sized optically, to high-frequency ultras...
Ultrasound contrast agents (UCA) populations are typically polydisperse and contain microbubbles wit...
Optical tweezers enable non-destructive, contact-free manipulation of ultrasound contrast agent (UCA...
The majority of studies investigating the physics of ultrasound-triggered microbubble behaviour have...
Nonlinear microbubble oscillations can be exploited by signal processing to provide contrast enhance...
Ultrasound contrast agents have the ability to provide locally increased echogenicity, improving the...
Sub-capillary sized microbubbles offer improved techniques for diagnosis and therapy of vascular rel...
Sub-capillary sized microbubbles offer improved techniques for diagnosis and therapy of vascular rel...
We present a new optical characterization of the behavior of single ultrasound contrast bubbles. The...
Radial modulation imaging is a new promising technique to improve contrast-enhanced ultrasound image...