Home /Research /Mixing enhancement by biologically inspired convection in a micro-chamber using alternating current galvanotactic control of the <i>Tetrahymena pyriformis</i>
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Mixing enhancement by biologically inspired convection in a micro-chamber using alternating current galvanotactic control of the <i>Tetrahymena pyriformis</i>

Ji-Hoon Kim, Yonghee Jang, Doyoung Byun, Dal Hyung Kim, Min Jun Kim

Year
2013
Citations
7

Abstract

Recently, there has been increasing interest in the swimming behavior of microorganisms and biologically inspired micro-robots. In this study, we investigated biologically induced convection flow with living microorganism using galvanotaxis. We fabricated and evaluated our micro-mixer with motile cells. For the cell based active micro-mixers, two miscible fluids were used to measure the mixing index. Under alternating current (AC) electric fields with varying frequency, a group of motile Tetrahymena pyriformis cells generated reciprocal motion with circulating flows around their pathline, enhancing the mixing ratio.

Keywords

Tetrahymena pyriformisMixing (physics)Streamlines, streaklines, and pathlinesMicromixingConvectionElectric fieldMechanicsMaterials scienceBiological systemTetrahymena

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