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Measurement of fluid flow generated by artificial cilia

机译:人造纤毛产生的流体流量的测量

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摘要

We observed and measured the fluid flow that was generated by an artificial cilium. The cilium was composed of superparamagnetic microspheres, in which magnetic dipole moments were induced by an external magnetic field. The interaction between the dipole moments resulted in formation of long chains—cilia, and the same external magnetic field was also used to drive the cilia in a periodic manner. Asymmetric periodic motion of the cilium resulted in generation of fluid flow and net pumping of the surrounding fluid. The flow and pumping performance were closely monitored by introducing small fluorescent tracer particles into the system. By detecting their motion, the fluid flow around an individual cilium was mapped and the flow velocities measured. We confirm that symmetric periodic beating of one cilium results in vortical motion only, whereas asymmetry is required for additional translational motion. We determine the effect of asymmetry on the pumping performance of a cilium, verify the theoretically predicted optimal pumping conditions, and determine the fluid behaviour around a linear array of three neighbouring cilia. In this case, the contributions of neighbouring cilia enhance the maximal flow velocity compared with a single cilium and contribute to a more uniform translational flow above the surface.
机译:我们观察并测量了由人工纤毛产生的流体流量。纤毛由超顺磁性微球组成,在该微球中,磁偶极矩由外部磁场感应。偶极矩之间的相互作用导致长链纤毛的形成,并且相同的外部磁场也用于周期性地驱动纤毛。纤毛的不对称周期性运动导致流体流动的产生和周围流体的净泵送。通过将小的荧光示踪剂颗粒引入系统中来密切监测流量和泵送性能。通过检测它们的运动,可以绘制出围绕单个纤毛的流体流动图,并测量流速。我们确认,一个纤毛的对称周期性跳动只会导致漩涡运动,而其他平移运动则需要非对称性。我们确定不对称性对纤毛抽运性能的影响,验证理论上预测的最佳抽运条件,并确定三个相邻纤毛的线性阵列周围的流体行为。在这种情况下,与单个纤毛相比,相邻纤毛的贡献增强了最大流速,并有助于表面上方更均匀的平移流动。

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