AbstractWe have developed an integrated laser trap/flow control video microscope for mechanical manipulation of single biopolymers. The instrument is automated to maximize experimental throughput. A single-beam optical trap capable of trapping micron-scale polystyrene beads in the middle of a 200-μm-deep microchamber is used, making it possible to insert a micropipette inside this chamber to hold a second bead by suction. Together, these beads function as easily exchangeable surfaces between which macromolecules of interest can be attached. A computer-controlled flow system is used to exchange the liquid in the chamber and to establish a flow rate with high precision. The flow and the optical trap can be used to exert forces on the beads, t...
We have developed a micromachined flow cell consisting of a flow channel integrated with micropipett...
Optical trapping has enabled a multitude of applications focusing, in particular, on non-invasive st...
Sischka A, Eckel R, Tönsing K, Ros R, Anselmetti D. Compact microscope-based optical tweezers system...
AbstractWe have developed an integrated laser trap/flow control video microscope for mechanical mani...
ABSTRACT We have developed an integrated laser trap/flow control video microscope for mechanical man...
An array of four independent laser traps is combined with a polydimethylsiloxane microfluidic chip t...
"We report the construction and testing of a simple and versatile optical trapping apparatus, suitab...
This is the final report of a three-year, Laboratory Directed Research and Development (LDRD) projec...
AbstractThe use of optical trapping to create extremely compliant mechanical probes has ushered in a...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
Single beam gradient force optical trapping (laser tweezers) is increasing in importance as a techni...
Thesis (S.M.)--Massachusetts Institute of Technology, Biological Engineering Division, 2006.Includes...
We have constructed an optical tweezer using two lasers (830 nm and 1064 nm) combined with micropipe...
We report the construction and testing of a simple and versatile optical trapping apparatus, suitabl...
A micron-sized dielectric particle confined in a laser trap can be employed as a probe for the measu...
We have developed a micromachined flow cell consisting of a flow channel integrated with micropipett...
Optical trapping has enabled a multitude of applications focusing, in particular, on non-invasive st...
Sischka A, Eckel R, Tönsing K, Ros R, Anselmetti D. Compact microscope-based optical tweezers system...
AbstractWe have developed an integrated laser trap/flow control video microscope for mechanical mani...
ABSTRACT We have developed an integrated laser trap/flow control video microscope for mechanical man...
An array of four independent laser traps is combined with a polydimethylsiloxane microfluidic chip t...
"We report the construction and testing of a simple and versatile optical trapping apparatus, suitab...
This is the final report of a three-year, Laboratory Directed Research and Development (LDRD) projec...
AbstractThe use of optical trapping to create extremely compliant mechanical probes has ushered in a...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
Single beam gradient force optical trapping (laser tweezers) is increasing in importance as a techni...
Thesis (S.M.)--Massachusetts Institute of Technology, Biological Engineering Division, 2006.Includes...
We have constructed an optical tweezer using two lasers (830 nm and 1064 nm) combined with micropipe...
We report the construction and testing of a simple and versatile optical trapping apparatus, suitabl...
A micron-sized dielectric particle confined in a laser trap can be employed as a probe for the measu...
We have developed a micromachined flow cell consisting of a flow channel integrated with micropipett...
Optical trapping has enabled a multitude of applications focusing, in particular, on non-invasive st...
Sischka A, Eckel R, Tönsing K, Ros R, Anselmetti D. Compact microscope-based optical tweezers system...