2014Unpublished venueRequires access

Activation of Control Pins for Routing of Test Droplets within a Bi-partitioned Digital Microfluidic Biochip

Somak Das, Sudip Roy, Sowvik Dey

Open publisher page 5 citations

Abstract

Digital micro fluidics based biochips is expected to play an important role towards point-of-care diagnostics, drug discovery, prevention of bio-terrorism and other biochemical applications. Design and testing of biochips always remained a challenging area of research. Structural testing of these bio-MEMS is ensured by smooth movements of test droplets within the micro fluidic array. Partitioning the digital micro fluidic array into clusters reduces the testing time. This paper proposes a novel scheme of activation of electrode-control pins based on existing allocation methods enabling movement of test droplets within a bi-partitioned digital micro fluidic biochip.

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What this paper is about

Digital micro fluidics based biochips is expected to play an important role towards point-of-care diagnostics, drug discovery, prevention of bio-terrorism and other biochemical applications. Design and testing of biochips always remained a challenging area of research. Structural testing of these bio-MEMS is ensured by smooth movements of test droplets within the micro fluidic array. Partitioning the digital micro fluidic array into clusters reduces the testing time. This paper proposes a novel scheme of activation of electrode-control pins based on existing allocation methods enabling movement of test droplets within a bi-partitioned digital micro fluidic biochip.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Digital micro fluidics based biochips is expected to play an important role towards point-of-care diagnostics, drug discovery, prevention of bio-terrorism and other biochemical applications. Design and testing of biochips always remained a challenging area of research. Structural testing of these bio-MEMS is ensured by smooth movements of test droplets within the micro fluidic array. Partitioning the digital micro fluidic array into clusters reduces the testing time. This paper proposes a novel scheme of activation of electrode-control pins based on existing allocation methods enabling movement of test droplets within a bi-partitioned digital micro fluidic biochip.

Key concepts: Biochip, Fluidics, Microfluidics, Digital microfluidics, Lab-on-a-chip, Routing (electronic design automation), Nanotechnology, Computer science

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