Femtosecond-laser-written waveguides were integrated with fluidic microchannels in a commercial lab-on-a-chip. High-spatial-resolution monitoring of fluorescently labeled DNA molecules during capillary electrophoresis separation is demonstrated, as an intermediate step toward point-of-care diagnostic bioassays for DNA analysis
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
By applying integrated-waveguide laser excitation to an optofluidic chip, fluorescently labeled DNA ...
Fluorescence detection is known to be one of the most sensitive among the different optical sensing ...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
This paper describes results obtained with a lab-on-a-chip with monolithically integrated optical wa...
Femtosecond-laser-written optical waveguides were monolithically integrated into a commercial lab-on...
Monolithic integration of optical waveguides in a commercial lab-on-a-chip by femtosecond-laser mate...
The substitution of conventional bench-top instrumentation by fully integrated lab-on-chip systems c...
We report on the monolithic integration of optical waveguides and microfluidics in a fused-silica la...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
Capillary electrophoresis separation in an on-chip integrated microfluidic channel is typically moni...
We report on monolithic optical sensor integration in a lab-on-a-chip toward on-chip diagnosis of al...
Femtosecond-laser-written optical waveguides are integrated into a commercial capillary electrophore...
We use direct femtosecond laser writing to integrate optical waveguides into a commercial fused sili...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
By applying integrated-waveguide laser excitation to an optofluidic chip, fluorescently labeled DNA ...
Fluorescence detection is known to be one of the most sensitive among the different optical sensing ...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
Using femtosecond laser writing, optical waveguides were monolithically integrated into a commercial...
This paper describes results obtained with a lab-on-a-chip with monolithically integrated optical wa...
Femtosecond-laser-written optical waveguides were monolithically integrated into a commercial lab-on...
Monolithic integration of optical waveguides in a commercial lab-on-a-chip by femtosecond-laser mate...
The substitution of conventional bench-top instrumentation by fully integrated lab-on-chip systems c...
We report on the monolithic integration of optical waveguides and microfluidics in a fused-silica la...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
Capillary electrophoresis separation in an on-chip integrated microfluidic channel is typically moni...
We report on monolithic optical sensor integration in a lab-on-a-chip toward on-chip diagnosis of al...
Femtosecond-laser-written optical waveguides are integrated into a commercial capillary electrophore...
We use direct femtosecond laser writing to integrate optical waveguides into a commercial fused sili...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
By applying integrated-waveguide laser excitation to an optofluidic chip, fluorescently labeled DNA ...
Fluorescence detection is known to be one of the most sensitive among the different optical sensing ...