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In our project a standard microfluidic analyzer background system and its construction steps were developed to analyze biologic fluids. The obtained micro-Total-Analysis-System (μTAS) is based on the integration of different microflu-idic systems. Each part follows well-defined rules to make the integration of the large-scale production microchip technology with the cheap polymer support system possible...
The paper is presenting the development of a sensor system dedicated to monitor the environment of eukaryotic cells culture acting as biosensors for toxins detection. The system we are presenting is containing pH, and temperature sensors integrated into microfluidic channels. The sensors have the role to characterize the cells living conditions (temperature and pH) and are monitoring the cell biochip...
Here we present a biomedical system for blood cell counting, based on micro-electro-mechanical-systems (MEMS) technology, designed and realized to obtain portability and low consumptions. The system consists of an assembly of three distinct parts: a micro electro-fluidic lab-on-a-chip (LOC), a mechanical-fluidic interface (MFI) and an electronic board (EB). LOC, realized in two versions, features...
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