[[abstract]]©2007 IEEE - Single beam based optical tweezers has been applied to many biomedical applications in trapping macromolecules and cells. Due to the finite penetration ability of laser in tissue and only utilization in opaque particles, these limitations reduce the potential of optical tweezers in-vivo performance. Consequently, some researchers theoretically demonstrated to manipulate micro-size particles by acoustic tweezers to avoid mentioned problems. To allow particles trapping at desired positions in-vivo, the location of the trapping region is an essential issue for the acoustic tweezers. In this study, we propose a theoretical time-course model for acoustic tweezers to predict the particle spatial track versus time and furt...
The feasibility of single beam acoustic tweezers (SBAT) was first theoretically and experimentally d...
Combining several methods for contact free micro-manipulation of small particles such as cells or mi...
We present numerical methods for modeling the dynamics of arbitrarily shaped particles trapped withi...
[[abstract]]©2008 IEEE - The optical tweezers has been a very useful tool in biological research. Ho...
Both optical tweezers and acoustic tweezers have been demonstrated for trapping small particles in d...
Both optical tweezers and acoustic tweezers have been demonstrated for trapping small particles in d...
2011-2012 > Academic research: refereed > Refereed conference paperAccepted ManuscriptPublishe
We demonstrate the trapping of elastic particles by the large gradient force of a single acoustical ...
Since the first demonstration of acoustic tweezers, various applications have required the simultane...
The concept of a single-beam acoustical tweezer device which can simultaneously trap microparticles ...
We report a method to evaluate the performances of a single-beam acoustic tweezer using a high-frequ...
The combination of a bulk acoustic wave device and an optical trap allows for studying the buildup t...
International audienceStudies on radiation pressure in acoustics and optics have enriched one anothe...
2014-2015 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
La pression de radiation acoustique est la force moyenne qu'une onde peut exercer sur un obstacle. I...
The feasibility of single beam acoustic tweezers (SBAT) was first theoretically and experimentally d...
Combining several methods for contact free micro-manipulation of small particles such as cells or mi...
We present numerical methods for modeling the dynamics of arbitrarily shaped particles trapped withi...
[[abstract]]©2008 IEEE - The optical tweezers has been a very useful tool in biological research. Ho...
Both optical tweezers and acoustic tweezers have been demonstrated for trapping small particles in d...
Both optical tweezers and acoustic tweezers have been demonstrated for trapping small particles in d...
2011-2012 > Academic research: refereed > Refereed conference paperAccepted ManuscriptPublishe
We demonstrate the trapping of elastic particles by the large gradient force of a single acoustical ...
Since the first demonstration of acoustic tweezers, various applications have required the simultane...
The concept of a single-beam acoustical tweezer device which can simultaneously trap microparticles ...
We report a method to evaluate the performances of a single-beam acoustic tweezer using a high-frequ...
The combination of a bulk acoustic wave device and an optical trap allows for studying the buildup t...
International audienceStudies on radiation pressure in acoustics and optics have enriched one anothe...
2014-2015 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
La pression de radiation acoustique est la force moyenne qu'une onde peut exercer sur un obstacle. I...
The feasibility of single beam acoustic tweezers (SBAT) was first theoretically and experimentally d...
Combining several methods for contact free micro-manipulation of small particles such as cells or mi...
We present numerical methods for modeling the dynamics of arbitrarily shaped particles trapped withi...