This paper describes a fluidic microsystem fabricated in SU-8 for suitable on-chip liquid handling and mixing. Its application is the concentration measurement of biomolecules in biological fluids. The SU-8 fabrication process is a low-cost process, biocompatible, UV lithography semiconductor compatible and not requires expensive masks. Moreover, SU-8 process allows deeps microchannels with very low roughness and suitable for optical absorption measurement.Fundação para a Ciência e Tecnologia - SFRH/BD/1281/2000, POCTI/33747/ESE/1999. FEDER
Abstract—An integrated optical detection microsystem, which includes photodetectors and a light-to-f...
peer reviewedThis article presents a review of device processing technologies used in the fabricatio...
This paper describes a three-dimensional fluid dynamic model that is suitable for accurate simulatio...
This paper describes a fluidic microsystem fabricated in SU-8 for suitable on-chip liquid handling ...
Summary: This paper describes a fluidic microsystem fabricated in SU-8 for suitable on-chip liquid h...
This paper describes a fluidic microsystem fabricated in SU-8 epoxy photoresist suitable for on-chip...
This paper describes an easy-to-fabricate and low-cost SU-8 microfluidic mixer suitable for enabling...
microfluidic mixer for use in lab-on-a-chip devices for biological fluids analyse
Abstract—This paper presents a multichip module microsystem for biological fluid analysis. It is com...
This paper reports a lab-on-a-chip for application in clinical analysis, especially in the spectroph...
This paper reports a lab-on-a-chip for application in clinical analysis, especially in the spectroph...
This paper presents a multichip module microsystem for biological fluid analysis. It is composed of ...
This paper presents a MCM (Multi-Chip-Module) microsystem for biological fluids analysis. It is comp...
An integrated optical detection microsystem, which includes photodetectors and a light-to-frequency ...
This paper describes a biological microsystem (bio-system) for measuring uric acid concentration in ...
Abstract—An integrated optical detection microsystem, which includes photodetectors and a light-to-f...
peer reviewedThis article presents a review of device processing technologies used in the fabricatio...
This paper describes a three-dimensional fluid dynamic model that is suitable for accurate simulatio...
This paper describes a fluidic microsystem fabricated in SU-8 for suitable on-chip liquid handling ...
Summary: This paper describes a fluidic microsystem fabricated in SU-8 for suitable on-chip liquid h...
This paper describes a fluidic microsystem fabricated in SU-8 epoxy photoresist suitable for on-chip...
This paper describes an easy-to-fabricate and low-cost SU-8 microfluidic mixer suitable for enabling...
microfluidic mixer for use in lab-on-a-chip devices for biological fluids analyse
Abstract—This paper presents a multichip module microsystem for biological fluid analysis. It is com...
This paper reports a lab-on-a-chip for application in clinical analysis, especially in the spectroph...
This paper reports a lab-on-a-chip for application in clinical analysis, especially in the spectroph...
This paper presents a multichip module microsystem for biological fluid analysis. It is composed of ...
This paper presents a MCM (Multi-Chip-Module) microsystem for biological fluids analysis. It is comp...
An integrated optical detection microsystem, which includes photodetectors and a light-to-frequency ...
This paper describes a biological microsystem (bio-system) for measuring uric acid concentration in ...
Abstract—An integrated optical detection microsystem, which includes photodetectors and a light-to-f...
peer reviewedThis article presents a review of device processing technologies used in the fabricatio...
This paper describes a three-dimensional fluid dynamic model that is suitable for accurate simulatio...