Physical Review Letters · 2016 · 103 citations · 50 references
Interactions between microorganisms and their complex flowing environments are essential in many biological systems. We develop a model for microswimmer dynamics in non-Newtonian Poiseuille flows. We predict that swimmers in shear-thickening (-thinning) fluids migrate upstream more (less) quickly than in Newtonian fluids and demonstrate that viscoelastic normal stress differences reorient swimmers causing them to migrate upstream at the centerline, in contrast to well-known boundary accumulation in quiescent Newtonian fluids. Based on these observations, we suggest a sorting mechanism to select microbes by swimming speed.
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M. G. Brereton · Physics Bulletin · 1978 · 3.3K citations
Hydrodynamic Attraction of Swimming Microorganisms by Surfaces
Allison P. Berke, Linda Turner, Howard C. Berg et al. · Physical Review Letters · 2008 · 836 citations · Full text
Engineering, Confined Water Hydrodynamics, Fluid Mechanics +13
Particle Motions in a Viscous Fluid
L. Gary Leal · Annual Review of Fluid Mechanics · 1980 · 514 citations
S. A. Berger, L-D. Jou · Annual Review of Fluid Mechanics · 2000 · 494 citations