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Jeonghun Nam

Researcher at Korea University

Publications -  57
Citations -  1641

Jeonghun Nam is an academic researcher from Korea University. The author has contributed to research in topics: Surface acoustic wave & Microchannel. The author has an hindex of 18, co-authored 57 publications receiving 1300 citations. Previous affiliations of Jeonghun Nam include National University of Singapore.

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Journal ArticleDOI

Separation of platelets from whole blood using standing surface acoustic waves in a microchannel

TL;DR: Conclusively, the present technique using SSAWs can directly separate platelets from undiluted whole blood with higher purity than other methods.
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Continuous separation of microparticles in a microfluidic channel via the elasto-inertial effect of non-Newtonian fluid

TL;DR: In this article, a simple and label-free method for separating microparticles with high purity using the elasto-inertial characteristic of a non-Newtonian fluid in microchannel flow was presented.
Journal Article

Continuous Separation of Microparticles in a Microfluidic Channel via the Elasto-inertial Effect of Non-Newtonian Fluid

TL;DR: Conclusively, the microparticle separation technique using elasto-inertial forces in non-Newtonian fluid is an effective method for separating and collecting microparticles on the basis of size differences with high purity.
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Density-dependent separation of encapsulated cells in a microfluidic channel by using a standing surface acoustic wave

TL;DR: It is demonstrated that a SSAW can successfully separate monodisperse particles by their density, and with the present technique for separating cell-encapsulating beads, the current cell engineering technology can be significantly advanced.
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Magnetic separation of malaria-infected red blood cells in various developmental stages.

TL;DR: The present technique, using permanent magnets and ferromagnetic wire in a microchannel, can effectively separate i-RBCs in various developmental stages so that it could provide a potential tool for studying the invasion mechanism of the malarial parasite, as well as performing antimalarial drug assays.