Acoustic inertial cavitation (IC) is a crucial phenomenon for many ultrasound (US)-related applications. This study aimed to investigate the roles of textural and surface properties of NPs in IC generation by combining typical IC detection methods with various types of silica model NPs. Acoustic passive cavitation detection, optical high-speed photography, and US imaging have been used to quantify IC activities (referred to as the IC dose, ICD) and describe the physical characteristics of IC activities from NPs. The results showed that the ICDs from NPs were positively correlated to their surface hydrophobicity and that their external surface hydrophobicity plays a much more crucial role than do the textural properties. The high-speed photo...
The laser generation of vapor bubbles around plasmonic nanoparticles can be enhanced through the app...
As-prepared mesoporous silicon nanoparticles, which were synthesized by electrochemical etching of c...
The generation, and stability of nanobubbles are of particular interest for fundamental research and...
Acoustic inertial cavitation (IC) is a crucial phenomenon for many ultrasound (US)-related applicati...
Reliable instigation of cavitation in-vivo during ultrasound therapy is notoriously difficult. Lower...
Inertial cavitation, namely the rapid expansion and subsequent violent collapse of micron-sized cavi...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
The current contrast agents utilized in ultrasound (US) imaging are based on microbubbles which suff...
Cavitation nuclei are often used to seed and promote acoustic cavitation in therapeutic applications...
For the first time, we apply a high-speed imaging technique to record the activity of acoustically d...
Our group has recently developed novel nano-sized drug carriers that spatially target a tumour and r...
Here we proposed a model that describes the nucleation of cavitation bubbles on nano/microparticle s...
Our group has recently developed novel nano-sized drug carriers that spatially target a tumor and re...
Recent work has shown that incorporating solid nanoparticles into the coatings of contrast agent mic...
The laser generation of vapor bubbles around plasmonic nanoparticles can be enhanced through the app...
As-prepared mesoporous silicon nanoparticles, which were synthesized by electrochemical etching of c...
The generation, and stability of nanobubbles are of particular interest for fundamental research and...
Acoustic inertial cavitation (IC) is a crucial phenomenon for many ultrasound (US)-related applicati...
Reliable instigation of cavitation in-vivo during ultrasound therapy is notoriously difficult. Lower...
Inertial cavitation, namely the rapid expansion and subsequent violent collapse of micron-sized cavi...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
The current contrast agents utilized in ultrasound (US) imaging are based on microbubbles which suff...
Cavitation nuclei are often used to seed and promote acoustic cavitation in therapeutic applications...
For the first time, we apply a high-speed imaging technique to record the activity of acoustically d...
Our group has recently developed novel nano-sized drug carriers that spatially target a tumour and r...
Here we proposed a model that describes the nucleation of cavitation bubbles on nano/microparticle s...
Our group has recently developed novel nano-sized drug carriers that spatially target a tumor and re...
Recent work has shown that incorporating solid nanoparticles into the coatings of contrast agent mic...
The laser generation of vapor bubbles around plasmonic nanoparticles can be enhanced through the app...
As-prepared mesoporous silicon nanoparticles, which were synthesized by electrochemical etching of c...
The generation, and stability of nanobubbles are of particular interest for fundamental research and...