It has been established that while the inherent presence of bubbles increases heat generation due to scattering and absorption, inertial cavitation is responsible for elevated heating during high-intensity focused ultrasound (HIFU) application. The contribution of bubble-induced heating can be an important factor to consider, as it can be several times greater than the expected heat deposition from absorption of energy from the primary ultrasound field. The temperature and cavitation signal near the focus were measured for 5.5-s continuous-wave 1.1-MHz HIFU sonications in tissue mimicking phantoms. The measured temperature was corrected for heating predicted from the primary ultrasound absorption to isolate the temperature rise from the bu...
Fast heat deposition during high‐intensity focused ultrasound (HIFU) therapy is often accompanied by...
Fast heat deposition during high‐intensity focused ultrasound (HIFU) therapy is often accompanied by...
The onset and presence of inertial cavitation and near-boiling temperatures in high-intensity focus...
It has been established that while the inherent presence of bubbles increases heat generation due t...
It has been established that while the inherent presence of bubbles increases heat generation due to...
For high-intensity focused ultrasound (HIFU) to continue to gain acceptance for cancer treatment it...
For high-intensity focused ultrasound (HIFU) to continue to gain acceptance for cancer treatment it...
A complete understanding of high-intensity focused ultrasound-induced temperature changes in tissue ...
Time-resolved measurements of the temperature field in an agar-based tissue-mimicking phantom inson...
High-intensity focused ultrasound (HIFU) is effective in both thermal ablations and soft-tissue frag...
Acoustic cavitation has been shown to play a key role in a wide array of novel therapeutic ultrasoun...
Acoustic cavitation has been shown to play a key role in a wide array of novel therapeutic ultrasou...
High-intensity focused ultrasound (HIFU) is effective in both thermal ablations and soft-tissue frag...
Acoustic cavitation has been shown to play a key role in a wide array of novel therapeutic ultrasou...
One of the limitations of HIFU treatment for tissue necrosis is the difficulty in achieving a predic...
Fast heat deposition during high‐intensity focused ultrasound (HIFU) therapy is often accompanied by...
Fast heat deposition during high‐intensity focused ultrasound (HIFU) therapy is often accompanied by...
The onset and presence of inertial cavitation and near-boiling temperatures in high-intensity focus...
It has been established that while the inherent presence of bubbles increases heat generation due t...
It has been established that while the inherent presence of bubbles increases heat generation due to...
For high-intensity focused ultrasound (HIFU) to continue to gain acceptance for cancer treatment it...
For high-intensity focused ultrasound (HIFU) to continue to gain acceptance for cancer treatment it...
A complete understanding of high-intensity focused ultrasound-induced temperature changes in tissue ...
Time-resolved measurements of the temperature field in an agar-based tissue-mimicking phantom inson...
High-intensity focused ultrasound (HIFU) is effective in both thermal ablations and soft-tissue frag...
Acoustic cavitation has been shown to play a key role in a wide array of novel therapeutic ultrasoun...
Acoustic cavitation has been shown to play a key role in a wide array of novel therapeutic ultrasou...
High-intensity focused ultrasound (HIFU) is effective in both thermal ablations and soft-tissue frag...
Acoustic cavitation has been shown to play a key role in a wide array of novel therapeutic ultrasou...
One of the limitations of HIFU treatment for tissue necrosis is the difficulty in achieving a predic...
Fast heat deposition during high‐intensity focused ultrasound (HIFU) therapy is often accompanied by...
Fast heat deposition during high‐intensity focused ultrasound (HIFU) therapy is often accompanied by...
The onset and presence of inertial cavitation and near-boiling temperatures in high-intensity focus...