Publication | Open Access
Influence of swimming strategy on microorganism separation by asymmetric obstacles
81
Citations
28
References
2013
Year
EngineeringRectification EffectBioroboticsFluid MechanicsBiomedical EngineeringActive FluidComputational MechanicsSoft MatterRun Orientation MemoryBiohybrid SystemCollective MotionBio-inspired RoboticsWater TreatmentMicrobial EcologyEnvironmental MicrobiologyMicrofluidicsBiophysicsAsymmetric ObstaclesActive MatterPattern FormationMicrobiologySelf-propulsionRectification EfficiencyMedicine
It has been shown that a nanoliter chamber separated by a wall of asymmetric obstacles can lead to an inhomogeneous distribution of self-propelled microorganisms. Although it is well established that this rectification effect arises from the interaction between the swimmers and the noncentrosymmetric pillars, here we demonstrate numerically that its efficiency is strongly dependent on the detailed dynamics of the individual microorganism. In particular, for the case of run-and-tumble dynamics, the distribution of run lengths, the rotational diffusion, and the partial preservation of run orientation memory through a tumble are important factors when computing the rectification efficiency. In addition, we optimize the geometrical dimensions of the asymmetric pillars in order to maximize the swimmer concentration and we illustrate how it can be used for sorting by swimming strategy in a long array of parallel obstacles.
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