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- W1991013863 abstract "A new non-invasive real-time system for the monitoring and control of microfluidodynamic phenomena is proposed. Thegeneral purpose design of such system is suitable for in vitro and in vivo experimental setup and therefore formicrofluidic application in the biomedical field such as lab-on-chip and for research studies in the field ofmicrocirculation. The system consists of an ad hoc optical setup for image magnification providing images suitable forimage acquisition and processing. The optic system was designed and developed using discrete opto-mechaniccomponents mounted on a breadboard in order to provide an optic path accessible at any point where the informationneeds to be acquired. The optic sensing, acquisition, and processing were performed using an integrated vision systembased on the Cellular Nonlinear Networks (CNNs) analogic technology called Focal Plane Processor (FPP, Eye-RIS,Anafocus) and inserted in the optic path. Ad hoc algorithms were implemented for the real-time analysis and extractionof fluido-dynamic parameters in micro-channels. They were tested on images recorded during in vivo microcirculationexperiments on hamsters and then they were applied on images optically acquired and processed in real-time during invitro experiments on a continuous microfluidic device (serpentine mixer, ThinXXS) with a two-phase fluid." @default.
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- W1991013863 date "2007-05-18" @default.
- W1991013863 modified "2023-09-26" @default.
- W1991013863 title "Real-time monitoring system for microfluidics" @default.
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- W1991013863 doi "https://doi.org/10.1117/12.721902" @default.
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