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Hydrodynamic Surface Interactions Enable Escherichia Coli to Seek Efficient Routes to Swim Upstream

机译:水动力表面相互作用使大肠埃希氏菌能够寻找有效途径向上游游泳

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摘要

Escherichia coli in shear flow near a surface are shown to exhibit a steady propensity to swim towards the left (within the relative coordinate system) of that surface. This phenomenon depends solely on the local shear rate on the surface, and leads to cells eventually aligning and swimming upstream preferentially along a left sidewall or crevice in a wide range of flow conditions. The results indicate that flow-assisted translation and upstream swimming along surfaces might be relevant in various models of bacterial transport, such as in pyelonephritis and bacterial migration in wet soil and aquatic environments in general.
机译:大肠杆菌在表面附近的剪切流中显示出向该表面的左侧(在相对坐标系内)游动的稳定倾向。这种现象仅取决于表面上的局部剪切速率,并导致细胞最终在宽范围的流动条件下优先排列并沿左侧壁或缝隙向上游游动。结果表明,在各种细菌运输模型中,如在肾盂肾炎和一般在湿润的土壤和水生环境中的细菌迁移,流动辅助的平移和沿表面的上游游动可能是相关的。

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