Trapping and manipulation of microparticles using optical tweezers is usually performed within a sample cell formed by two parallel microscope cover slides. In this paper we discuss and demonstrate trapping and manipulation conditions when the cell has more complex configurations like microchannels or capillary tubes. The microchannels are fabricated on the surface of the cover slide by means of lithographic techniques. Experimental results of trapping and micromanipulation for silica microspheres and biological samples immersed in water show the usefulness of our study for microfluidics and biological applications
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
We demonstrate an optofluidic device which utilizes the optical scattering and gradient forces for p...
In existing control techniques for optical tweezers, a target particle is directly trapped and manip...
Trapping and manipulation of microparticles using optical tweezers is usually performed within a sam...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
Three projects are described in this thesis that combine microfabrication techniques with optical mi...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
An optical tweezers technique is used for ultraprecise micromanipulation to measure positions of mic...
The method of optical manipulation of micro particles using optical tweezers was discovered many yea...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
An array of four independent laser traps is combined with a polydimethylsiloxane microfluidic chip t...
AbstractThe contact-free, non-invasive manipulation provided by optical trapping enables us not only...
Abstract—In this paper, we introduce chemical etching-based processes for fabricating micromanipulat...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
We demonstrate an optofluidic device which utilizes the optical scattering and gradient forces for p...
In existing control techniques for optical tweezers, a target particle is directly trapped and manip...
Trapping and manipulation of microparticles using optical tweezers is usually performed within a sam...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
Three projects are described in this thesis that combine microfabrication techniques with optical mi...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
An optical tweezers technique is used for ultraprecise micromanipulation to measure positions of mic...
The method of optical manipulation of micro particles using optical tweezers was discovered many yea...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
An array of four independent laser traps is combined with a polydimethylsiloxane microfluidic chip t...
AbstractThe contact-free, non-invasive manipulation provided by optical trapping enables us not only...
Abstract—In this paper, we introduce chemical etching-based processes for fabricating micromanipulat...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
We demonstrate an optofluidic device which utilizes the optical scattering and gradient forces for p...
In existing control techniques for optical tweezers, a target particle is directly trapped and manip...