Modulation-frequency-encoded fluorescence excitation enables the identification of end-labeled DNA samples of different genetic origin during their electrophoretic separation, opening perspectives for intrinsic size calibration, malign / healthy sample comparison, and exploitation of multiplex ligation-dependent probe amplification
Abstract—A spectral-multiplexed fluorescence contact imaging microsystem for DNA analysis is present...
High-resolution electrophoretic separation and integrated-waveguide excitation of fluorescent DNA mo...
High-speed multiwavelength fluorescence measurements are of paramount importance in microfluidic ana...
By capillary electrophoresis (CE) in miniaturized lab-on-a-chip devices, integrated DNA sequencing a...
Implementing capillary electrophoresis with high base-pair resolution and integrated multi-wavelengt...
Abstract: Sorting and sizing of DNA molecules within the human genome project has enabled the geneti...
Sorting and sizing of DNA molecules within the human genome project has enabled the genetic mapping ...
We present a simple approach in electrophoretic DNA separation and fluorescent monitoring that allow...
DNA sequencing in a lab-on-a-chip aims at providing cheap, high-speed analysis of low reagent volume...
Applying capillary electrophoresis, we separate and detect two sets of fluorescent-labeled DNA molec...
Applying capillary electrophoresis, we separate and detect two sets of fluorescent-labeled DNA molec...
After electrophoretic separation of dye-labeled DNA molecules of 17 different sizes, integrated-wave...
Applying capillary electrophoresis, we separate and detect two sets of fluorescent-labeled DNA molec...
We present recent progress in the field of sensing fluorescently labeled biomolecules, as separated ...
We report on monolithic optical sensor integration in a lab-on-a-chip toward on-chip diagnosis of al...
Abstract—A spectral-multiplexed fluorescence contact imaging microsystem for DNA analysis is present...
High-resolution electrophoretic separation and integrated-waveguide excitation of fluorescent DNA mo...
High-speed multiwavelength fluorescence measurements are of paramount importance in microfluidic ana...
By capillary electrophoresis (CE) in miniaturized lab-on-a-chip devices, integrated DNA sequencing a...
Implementing capillary electrophoresis with high base-pair resolution and integrated multi-wavelengt...
Abstract: Sorting and sizing of DNA molecules within the human genome project has enabled the geneti...
Sorting and sizing of DNA molecules within the human genome project has enabled the genetic mapping ...
We present a simple approach in electrophoretic DNA separation and fluorescent monitoring that allow...
DNA sequencing in a lab-on-a-chip aims at providing cheap, high-speed analysis of low reagent volume...
Applying capillary electrophoresis, we separate and detect two sets of fluorescent-labeled DNA molec...
Applying capillary electrophoresis, we separate and detect two sets of fluorescent-labeled DNA molec...
After electrophoretic separation of dye-labeled DNA molecules of 17 different sizes, integrated-wave...
Applying capillary electrophoresis, we separate and detect two sets of fluorescent-labeled DNA molec...
We present recent progress in the field of sensing fluorescently labeled biomolecules, as separated ...
We report on monolithic optical sensor integration in a lab-on-a-chip toward on-chip diagnosis of al...
Abstract—A spectral-multiplexed fluorescence contact imaging microsystem for DNA analysis is present...
High-resolution electrophoretic separation and integrated-waveguide excitation of fluorescent DNA mo...
High-speed multiwavelength fluorescence measurements are of paramount importance in microfluidic ana...