This work presents a portable lab-on-chip system, based on thin film electronic devices and an all-glass microfluidic network, for the real-time monitoring of enzymatic chemiluminescent reactions. The microfluidic network is patterned, through wet etching, in a 1.1 mm-thick glass substrate that is subsequently bonded to a 0.5 mm-thick glass substrate. The electronic devices are amorphous silicon p-i-n photosensors, deposited on the outer side of the thinner glass substrate. The photosensors, the microfluidic network and the electronic boards reading out the photodiodes’ current are enclosed in a small metallic box (10×8×15×cm3) in order to ensure shielding from electromagnetic interferences. Preliminary tests have been performed immobilizin...
This paper presents a microfluidic system for determining the protein concentrations in human biolog...
A simple and versatile analytical device designed to perform, even simultaneously, different types o...
We have investigated and implemented several general strategies in the development of microfluidics-...
This work presents a portable lab-on-chip system, based on thin film electronic devices and an all-g...
A lab-on-chip system, integrating an all-glass microfluidics and on-chip optical detection, was deve...
A lab-on-chip system, integrating an all-glass microfluidics and on-chip optical detection, was deve...
On-chip optical detection of chemiluminescent reactions is presented. The device is based on the int...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
This work reports on design and fabrication of a compact lab-on-chip system, based on detection of e...
This work reports on design and fabrication of a compact lab-on-chip system, based on detection of e...
We propose a disposable multiwell microcartridge with integrated amorphous silicon photosensors arra...
We propose a disposable multiwell microcartridge with integrated amorphous silicon photosensors arra...
Enzymatic luminescent systems are a promising tool for rapid detection of heavy metals ions for wate...
This paper presents a microfluidic system for determining the protein concentrations in human biolog...
A simple and versatile analytical device designed to perform, even simultaneously, different types o...
We have investigated and implemented several general strategies in the development of microfluidics-...
This work presents a portable lab-on-chip system, based on thin film electronic devices and an all-g...
A lab-on-chip system, integrating an all-glass microfluidics and on-chip optical detection, was deve...
A lab-on-chip system, integrating an all-glass microfluidics and on-chip optical detection, was deve...
On-chip optical detection of chemiluminescent reactions is presented. The device is based on the int...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
This work reports on design and fabrication of a compact lab-on-chip system, based on detection of e...
This work reports on design and fabrication of a compact lab-on-chip system, based on detection of e...
We propose a disposable multiwell microcartridge with integrated amorphous silicon photosensors arra...
We propose a disposable multiwell microcartridge with integrated amorphous silicon photosensors arra...
Enzymatic luminescent systems are a promising tool for rapid detection of heavy metals ions for wate...
This paper presents a microfluidic system for determining the protein concentrations in human biolog...
A simple and versatile analytical device designed to perform, even simultaneously, different types o...
We have investigated and implemented several general strategies in the development of microfluidics-...