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Patterns of Collective Bacterial Motion in Microfluidic Devices

机译:微流体装置中细菌的集体运动模式

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We have studied active and passive forms of pattern formation and synchronized motion in high-density bacterial cell suspensions with phase contrast and epifluorescent videomicroscopy. We have shown that in high-density cultures of non-motile cells sedimentation patterns form. By comparing bacterial and colloidal suspensions we suggest that hydrodynamic interactions between sedimenting bacteria lead to patterns that one may consider a passive form of collective motion. Furthermore, we used microfluidic devices to investigate how solid boundaries influence the motion patterns of flagellated swimming bacteria in high-density cultures. We studied the emergence and dynamics of collective swimming of Escherichia coli. Using microfabricated chambers, we were able to control and stabilize the swimming patterns formed. Our results suggest that the physical features of the environment (solid boundaries and geometric constrictions) have strong effects on the swimming behavior and pattern formation of motile bacteria. Such effects may need to be considered when culturing bacteria in microchambers and micro-reactors.
机译:我们已经研究了高密度细菌细胞悬液中模式形成和同步运动的主动和被动形式,以及相衬和落射荧光显微镜。我们已经表明,在非运动细胞的高密度培养中,会形成沉淀模式。通过比较细菌悬浮液和胶体悬浮液,我们建议沉淀细菌之间的水动力相互作用会导致人们认为是集体运动的一种被动形式。此外,我们使用微流体装置来研究固体边界如何影响高密度培养物中鞭毛游泳细菌的运动模式。我们研究了大肠杆菌集体游泳的出现和动力学。使用微细加工室,我们能够控制和稳定所形成的游泳模式。我们的结果表明,环境的物理特征(牢固的边界和几何收缩)对游动行为和运动菌的模式形成有很大影响。在微腔室和微反应器中培养细菌时,可能需要考虑这种影响。

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