We have developed a micromachined flow cell consisting of a flow channel integrated with micropipettes. The flow cell is used in combination with an optical trap setup (optical tweezers) to study mechanical and structural properties of λ-DNA molecules. The flow cell was realized using silicon micromachining including the so-called buried channel technology to fabricate the micropipettes, the wet etching of glass to create the flow channel, and the powder blasting of glass to make the fluid connections. The volume of the flow cell is 2 μl. The pipettes have a length of 130 μm, a width of 5-10 μm, a round opening of 1 μm and can be processed with different shapes. Using this flow cell we stretched single molecules (λ-DNA) showing typical forc...
The dynamics of individual DNA molecules were analyzed under the nonhomogeneous shear flow in a rect...
AbstractWe have developed an integrated laser trap/flow control video microscope for mechanical mani...
Research in the field of Micro/nanofluidics has been extensively carried out for the last few years....
We have developed a micromachined flow cell consisting of a flow channel integrated with micropipett...
Abstract—We have developed a micromachined flow cell consisting of a flow channel integrated with mi...
We have developed a micromachined flow cell consisting of a flow channel integrated with micropipett...
Microfluidic flow cells are used in single-molecule experiments, enabling measurements to be made wi...
Micropipette aspiration measures the mechanical properties of single cells. A traditional micropipet...
In recent years there has been a growing interest in the use of optical manipulation techniques, suc...
The biomechanical properties of single cells show great potential for early disease diagnosis and ef...
A microfluidic laminar flow cell (LFC) forms an indispensable component in single-molecule experimen...
This dissertation focuses on developing microfabricated components for stretching, immobilizing and ...
This is the final report of a three-year, Laboratory Directed Research and Development (LDRD) projec...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
The dynamics of individual DNA molecules were analyzed under the nonhomogeneous shear flow in a rect...
AbstractWe have developed an integrated laser trap/flow control video microscope for mechanical mani...
Research in the field of Micro/nanofluidics has been extensively carried out for the last few years....
We have developed a micromachined flow cell consisting of a flow channel integrated with micropipett...
Abstract—We have developed a micromachined flow cell consisting of a flow channel integrated with mi...
We have developed a micromachined flow cell consisting of a flow channel integrated with micropipett...
Microfluidic flow cells are used in single-molecule experiments, enabling measurements to be made wi...
Micropipette aspiration measures the mechanical properties of single cells. A traditional micropipet...
In recent years there has been a growing interest in the use of optical manipulation techniques, suc...
The biomechanical properties of single cells show great potential for early disease diagnosis and ef...
A microfluidic laminar flow cell (LFC) forms an indispensable component in single-molecule experimen...
This dissertation focuses on developing microfabricated components for stretching, immobilizing and ...
This is the final report of a three-year, Laboratory Directed Research and Development (LDRD) projec...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
The dynamics of individual DNA molecules were analyzed under the nonhomogeneous shear flow in a rect...
AbstractWe have developed an integrated laser trap/flow control video microscope for mechanical mani...
Research in the field of Micro/nanofluidics has been extensively carried out for the last few years....