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Bacterial swimming and oxygen transport near contact lines

机译:接触线附近的细菌游泳和氧气传输

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Aerobic bacteria often live in thin fluid layers near solid-air-water contact lines, in which the biology of chemotaxis, metabolism, and cell-cell signaling is intimately connected to the physics of buoyancy, diffusion, and mixing. Using the geometry of a sessile drop, we demonstrate in suspensions of Bacillus subtilis the self-organized generation of a persistent hydrodynamic vortex that traps cells near the contact line. Arising from upward oxygentaxis and downward gravitational forcing, these dynamics are related to the Boycott effect in sedimentation and are explained quantitatively by a mathematical model consisting of oxygen diffusion and consumption, chemotaxis, and viscous fluid dynamics. The vortex is shown to advectively enhance uptake of oxygen into the suspension, and the wedge geometry leads to a singularity in the chemotactic dynamics near the contact line.
机译:有氧细菌通常生活在固体-水-水接触线附近的薄流体层中,其中趋化性,新陈代谢和细胞信号传导的生物学与浮力,扩散和混合的物理学紧密相关。使用无柄滴的几何形状,我们证明了在枯草芽孢杆菌的悬浮液中,自组织产生了持久的流体动力涡流,该涡流会诱捕接触线附近的细胞。这些动力学是由向上的趋向性和向下的引力引起的,它们与沉淀中的抵制效应有关,并通过由氧扩散和消耗,趋化性和粘性流体动力学组成的数学模型进行了定量解释。涡流表现为对流性地增加了对悬浮液中氧气的吸收,并且楔形几何形状导致接触线附近趋化动力学的奇异性。

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