Focused ultrasound (FUS) exposure in the presence of microbubbles (MBs) has been successfully used in the delivery of various sizes of therapeutic molecules across the blood-brain barrier (BBB). While acoustic pressure is correlated with the BBB opening size, real-time control of BBB opening to avoid vascular and neural damage is still a challenge. This arises mainly from the variability of FUS-MB interactions due to the variations of animal-specific metabolic environment and specific experimental setup. In this study, we demonstrate a closed-loop cavitation control framework to induce BBB opening for delivering large therapeutic molecules without causing macro tissue damages. To this end, we performed in mice long-term (5 min) cavitation m...
Therapeutic ultrasound and microbubble technologies seek to drive systemically administered microbub...
Pulsed ultrasound combined with microbubbles use can disrupt the blood–brain barrier (BBB) temporari...
Non-linear emissions from microbubbles introduced to the vasculature for exposure to focused ultraso...
Focused ultrasound (FUS) exposure in the presence of microbubbles (MBs) has been successfully used i...
Focused ultrasound (FUS) in combination with microbubbles has been established as a promising techni...
Abstract Cavitation events seeded by microbubbles have been previously reported to be associated wit...
Ultrasound-induced blood-brain barrier (BBB) opening using microbubbles is a promising technique for...
Treatment of brain diseases remains extremely challenging partly due to the fact that critical drug ...
International audienceFocused ultrasound is a non-invasive and highly promising method for targeted ...
The key to effective treatment of neurological diseases resides in the safe opening of the blood-bra...
Focused ultrasound (FUS) in the presence of systemically administered microbubbles has been shown to...
Focused ultrasound (FUS) in combination with microbubbles is capable of noninvasive, site-targeted d...
<div><p>The use of focused ultrasound (FUS) with microbubbles has been proven to induce transient bl...
Focused Ultrasound (FUS) coupled with intravenous administration of microbubbles (MB) is a non-invas...
We report a study on two methods that enable spatial control and induced cavitation on targeted micr...
Therapeutic ultrasound and microbubble technologies seek to drive systemically administered microbub...
Pulsed ultrasound combined with microbubbles use can disrupt the blood–brain barrier (BBB) temporari...
Non-linear emissions from microbubbles introduced to the vasculature for exposure to focused ultraso...
Focused ultrasound (FUS) exposure in the presence of microbubbles (MBs) has been successfully used i...
Focused ultrasound (FUS) in combination with microbubbles has been established as a promising techni...
Abstract Cavitation events seeded by microbubbles have been previously reported to be associated wit...
Ultrasound-induced blood-brain barrier (BBB) opening using microbubbles is a promising technique for...
Treatment of brain diseases remains extremely challenging partly due to the fact that critical drug ...
International audienceFocused ultrasound is a non-invasive and highly promising method for targeted ...
The key to effective treatment of neurological diseases resides in the safe opening of the blood-bra...
Focused ultrasound (FUS) in the presence of systemically administered microbubbles has been shown to...
Focused ultrasound (FUS) in combination with microbubbles is capable of noninvasive, site-targeted d...
<div><p>The use of focused ultrasound (FUS) with microbubbles has been proven to induce transient bl...
Focused Ultrasound (FUS) coupled with intravenous administration of microbubbles (MB) is a non-invas...
We report a study on two methods that enable spatial control and induced cavitation on targeted micr...
Therapeutic ultrasound and microbubble technologies seek to drive systemically administered microbub...
Pulsed ultrasound combined with microbubbles use can disrupt the blood–brain barrier (BBB) temporari...
Non-linear emissions from microbubbles introduced to the vasculature for exposure to focused ultraso...