We present a high-resolution DNA-sizing technique based on the principles of flow cytometry, using a high numerical aperture objective and epi-illumination. The new technique, designed for small fluorescing samples/particles (sub-micron diameter) suspended in a weakly fluorescent medium, makes use of an additional focus for high-precision particle localisation. This way, only those particles are considered that flow exactly through a well-defined volume. Results are presented for fluorescent beads, as well as for YOYO-stained plasmids containing 5,500 basepairs. The latter were measured with 6.2% resolution, setting a new limit to flow-based sizing of DNA
A new flow configuration allows a flow cytometer of high resolution and stability to be assembled fr...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
Fluorescent cytometry refers to the quantification of cell physical properties and surface biomarker...
We describe an approach to determine DNA frag-ment sizes based on the ¯uorescence detection of singl...
Microscopic visualization of DNA molecules is a simple, intuitive, and powerful method. Nonetheless,...
We have developed microfabricated devices to size and sort microscopic objects, based on measurement...
fluorescence microscopy A new concept based on microstructuring techniques is presented to achieve s...
We have microfabricated devices to size and sort microscopic biological objects, ranging from cells ...
We have microfabricated devices to size and sort microscopic biological objects, ranging from cells ...
We have microfabricated devices to size and sort microscopic biological objects, ranging from cells ...
A method based on flow cytometry was developed which allows measurement of particle size distributio...
We describe an approach to determine DNA fragment sizes based on the fluorescence detection of singl...
Determining the sizes and measuring the quantities of DNA molecules are fundamental tasks in molecul...
The optical resolution of conventional far field fluorescence light microscopy is restricted to abou...
Accurate sizing in flow using optical methods generally requires high resolution optics and speciall...
A new flow configuration allows a flow cytometer of high resolution and stability to be assembled fr...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
Fluorescent cytometry refers to the quantification of cell physical properties and surface biomarker...
We describe an approach to determine DNA frag-ment sizes based on the ¯uorescence detection of singl...
Microscopic visualization of DNA molecules is a simple, intuitive, and powerful method. Nonetheless,...
We have developed microfabricated devices to size and sort microscopic objects, based on measurement...
fluorescence microscopy A new concept based on microstructuring techniques is presented to achieve s...
We have microfabricated devices to size and sort microscopic biological objects, ranging from cells ...
We have microfabricated devices to size and sort microscopic biological objects, ranging from cells ...
We have microfabricated devices to size and sort microscopic biological objects, ranging from cells ...
A method based on flow cytometry was developed which allows measurement of particle size distributio...
We describe an approach to determine DNA fragment sizes based on the fluorescence detection of singl...
Determining the sizes and measuring the quantities of DNA molecules are fundamental tasks in molecul...
The optical resolution of conventional far field fluorescence light microscopy is restricted to abou...
Accurate sizing in flow using optical methods generally requires high resolution optics and speciall...
A new flow configuration allows a flow cytometer of high resolution and stability to be assembled fr...
Super-resolution techniques have begun to transform biological and biomedical research by allowing r...
Fluorescent cytometry refers to the quantification of cell physical properties and surface biomarker...