International audienceSingle-cell manipulation is considered a key technology in biomedical research. However, the lack of intuitive and effective systems makes this technology less accessible. We propose a new tele–robotic solution for dexterous cell manipulation through optical tweezers. A slave-device consists of a combination of robot-assisted stages and a high-speed multi-trap technique. It allows for the manipulation of more than 15 optical traps in a large workspace with nanometric resolution. A master-device (6+1 degree of freedom (DoF)) is employed to control the 3D position of optical traps in different arrangements for specific purposes. Precision and efficiency studies are carried out with trajectory control tasks. Three state-o...
This thesis is focused on the creation of a real-time 3-D single cell manipulation system based on p...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
Optical tweezers (OT) is a popular tool for manipu-lating biological objects especially cells [1], [...
Single-cell manipulation is considered a key technology in biomedical research. However, the lack of...
This article reviews the autonomous manipulation strategies of biological cells utilizing optical tw...
Recent technological advances in micro-robotic systems have demonstrated much potential for biomedic...
Current control techniques for optical tweezers work only when the cell is located in a small neighb...
Current manipulation techniques of optical tweezers treat the position of the laser beam as the con...
Optical tweezers (OT) can be viewed as a robot that uses a highly focused laser beam for precise man...
International audienceOptical tweezers have received significant attention in the past few decades a...
AbstractThe contact-free, non-invasive manipulation provided by optical trapping enables us not only...
Optical tweezers (OT) have demonstrated its capabilities in manipulating cells and performing sophis...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
Optical tweezers (OT) represent a versatile tool for micro‐manipulation. To avoid damages to living ...
This thesis is focused on the creation of a real-time 3-D single cell manipulation system based on p...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
Optical tweezers (OT) is a popular tool for manipu-lating biological objects especially cells [1], [...
Single-cell manipulation is considered a key technology in biomedical research. However, the lack of...
This article reviews the autonomous manipulation strategies of biological cells utilizing optical tw...
Recent technological advances in micro-robotic systems have demonstrated much potential for biomedic...
Current control techniques for optical tweezers work only when the cell is located in a small neighb...
Current manipulation techniques of optical tweezers treat the position of the laser beam as the con...
Optical tweezers (OT) can be viewed as a robot that uses a highly focused laser beam for precise man...
International audienceOptical tweezers have received significant attention in the past few decades a...
AbstractThe contact-free, non-invasive manipulation provided by optical trapping enables us not only...
Optical tweezers (OT) have demonstrated its capabilities in manipulating cells and performing sophis...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
Optical tweezers (OT) represent a versatile tool for micro‐manipulation. To avoid damages to living ...
This thesis is focused on the creation of a real-time 3-D single cell manipulation system based on p...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
Optical tweezers (OT) is a popular tool for manipu-lating biological objects especially cells [1], [...