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Updated: Jun 18, 2026

Introducing Shear Stress in the Study of Bacterial Adhesion
Published on: September 2, 2011
Characterization of hydrodynamic surface interactions of Escherichia coli cell bodies in shear flow
1Electrical Engineering Department, Yale University, New Haven, Connecticut 06520-8284, USA.
Abstract:
We experimentally demonstrate that nonflagellated Escherichia coli strains follow modified Jeffery orbits in shear flow near a surface. We fully characterize their Jeffery orbits as a function of their aspect ratios and distance from that surface. Thanks to the linearity of Navier-Stokes equations under low-Reynolds-number conditions, the hydrodynamic body-wall interactions described here can be superimposed with flagellar motility and Brownian motion to construct models that explain the full picture of bacterial motility near a surface under shear flow.

