Sorting and sizing of DNA molecules within the human genome project has enabled the genetic mapping of various illnesses. By employing tiny lab-on-a-chip devices for such DNA analysis, integrated DNA sequencing and genetic diagnostics have become feasible. However, such diagnostic chips typically lack integrated sensing capability. We address this issue by combining microfluidic capillary electrophoresis with laser-induced fluorescence detection resulting in optofluidic integration towards an on-chip bio-analysis tool [1,2]. We achieve a spatial separation resolution of 12 μm, which can enable a 20-fold enhancement in electropherogram peak resolution, leading to plate numbers exceeding one million. We demonstrate a high sizing/calibration a...
Modulation-frequency-encoded fluorescence excitation enables the identification of end-labeled DNA s...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
By applying integrated-waveguide laser excitation to an optofluidic chip, fluorescently labeled DNA ...
Sorting and sizing of DNA molecules within the human genome project has enabled the genetic mapping ...
Abstract: Sorting and sizing of DNA molecules within the human genome project has enabled the geneti...
By capillary electrophoresis (CE) in miniaturized lab-on-a-chip devices, integrated DNA sequencing a...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
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...
We report on the monolithic integration of optical waveguides and microfluidics in a fused-silica la...
Implementing capillary electrophoresis with high base-pair resolution and integrated multi-wavelengt...
Femtosecond-laser-written integrated waveguides enable multi-wavelength fluorescence sensing of flow...
We present a simple approach in electrophoretic DNA separation and fluorescent monitoring that allow...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
Microfabrication techniques have become increasingly popular in the development of next generation D...
Modulation-frequency-encoded fluorescence excitation enables the identification of end-labeled DNA s...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
By applying integrated-waveguide laser excitation to an optofluidic chip, fluorescently labeled DNA ...
Sorting and sizing of DNA molecules within the human genome project has enabled the genetic mapping ...
Abstract: Sorting and sizing of DNA molecules within the human genome project has enabled the geneti...
By capillary electrophoresis (CE) in miniaturized lab-on-a-chip devices, integrated DNA sequencing a...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
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...
We report on the monolithic integration of optical waveguides and microfluidics in a fused-silica la...
Implementing capillary electrophoresis with high base-pair resolution and integrated multi-wavelengt...
Femtosecond-laser-written integrated waveguides enable multi-wavelength fluorescence sensing of flow...
We present a simple approach in electrophoretic DNA separation and fluorescent monitoring that allow...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
Microfabrication techniques have become increasingly popular in the development of next generation D...
Modulation-frequency-encoded fluorescence excitation enables the identification of end-labeled DNA s...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
By applying integrated-waveguide laser excitation to an optofluidic chip, fluorescently labeled DNA ...