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      Focusing of Particles in a Microchannel with Laser Engraved Groove Arrays

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          Abstract

          Continuous microfluidic focusing of particles, both synthetic and biological, is significant for a wide range of applications in industry, biology and biomedicine. In this study, we demonstrate the focusing of particles in a microchannel embedded with glass grooves engraved by femtosecond pulse (fs) laser. Results showed that the laser-engraved microstructures were capable of directing polystyrene particles and mouse myoblast cells (C2C12) towards the center of the microchannel at low Reynolds numbers (Re < 1). Numerical simulation revealed that localized side-to-center secondary flows induced by grooves at the channel bottom play an essential role in particle lateral displacement. Additionally, the focusing performance proved to be dependent on the angle of grooves and the middle open space between the grooves based on both experiments and simulation. Particle sedimentation rate was found to critically influence the focusing of particles of different sizes. Taking advantage of the size-dependent particle lateral displacement, selective focusing of micrometer particles was demonstrated. This study systematically investigated continuous particle focusing in a groove-embedded microchannel. We expect that this device will be used for further applications, such as cell sensing and nanoparticle separation in biological and biomedical areas.

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          Microfluidics: Fluid physics at the nanoliter scale

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            The origins and the future of microfluidics.

            The manipulation of fluids in channels with dimensions of tens of micrometres--microfluidics--has emerged as a distinct new field. Microfluidics has the potential to influence subject areas from chemical synthesis and biological analysis to optics and information technology. But the field is still at an early stage of development. Even as the basic science and technological demonstrations develop, other problems must be addressed: choosing and focusing on initial applications, and developing strategies to complete the cycle of development, including commercialization. The solutions to these problems will require imagination and ingenuity.
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              ENGINEERING FLOWS IN SMALL DEVICES

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                Author and article information

                Contributors
                Journal
                BIOSHU
                Biosensors
                Biosensors
                MDPI AG
                2079-6374
                August 2021
                August 04 2021
                : 11
                : 8
                : 263
                Article
                10.3390/bios11080263
                f209fa29-342b-44ea-90bc-eb97aedf9bac
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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