In most manipulation techniques for optical tweezers, open-loop controllers are developed to move the laser source without consideration of the dynamic interaction between the cell and the manipulator of laser source. This paper presents a simple PD control scheme for manipulation of cell using optical tweezers. We formulate a closed-loop setpoint control problem for optical tweezers and show that simple control law is effective for closed-loop manipulation, taking into consideration of the dynamic interaction between the laser beam and the cell. The use of closed-loop feedback control helps to enhance the trapping and also reduces the possibility of photodamage. The setpoint controller is also extended to a region reaching controller, whe...
Rapid advances in the research and development of robotic and automation technologies have completel...
This article reviews the autonomous manipulation strategies of biological cells utilizing optical tw...
Optical tweezers has enabled application and measurement of forces in a highly quantitative way and ...
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...
Current robotic manipulation techniques for optical tweezers assume that the trapping stiffness of o...
In this paper, an observer based adaptive control method is proposed for optical manipulation of ce...
In existing control methods for optical tweezers, the trapping stiffness is usually assumed to be co...
While several automatic manipulation techniques have recently been developed for optical tweezer sys...
In existing control techniques for optical tweezers, a target particle is directly trapped and manip...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
International audienceOptical tweezers have received significant attention in the past few decades a...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
Optical Tweezers can be used not only for the positioning of cells but also for moving them over cen...
Optical tweezers (OT) have demonstrated its capabilities in manipulating cells and performing sophis...
Rapid advances in the research and development of robotic and automation technologies have completel...
This article reviews the autonomous manipulation strategies of biological cells utilizing optical tw...
Optical tweezers has enabled application and measurement of forces in a highly quantitative way and ...
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...
Current robotic manipulation techniques for optical tweezers assume that the trapping stiffness of o...
In this paper, an observer based adaptive control method is proposed for optical manipulation of ce...
In existing control methods for optical tweezers, the trapping stiffness is usually assumed to be co...
While several automatic manipulation techniques have recently been developed for optical tweezer sys...
In existing control techniques for optical tweezers, a target particle is directly trapped and manip...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
International audienceOptical tweezers have received significant attention in the past few decades a...
With such advantages as nonphysical cell contact and a relatively high efficiency, the application o...
Optical Tweezers can be used not only for the positioning of cells but also for moving them over cen...
Optical tweezers (OT) have demonstrated its capabilities in manipulating cells and performing sophis...
Rapid advances in the research and development of robotic and automation technologies have completel...
This article reviews the autonomous manipulation strategies of biological cells utilizing optical tw...
Optical tweezers has enabled application and measurement of forces in a highly quantitative way and ...