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Three-dimensional two-component velocity measurement of the flow field induced by the Vorticella picta microorganism using a confocal microparticle image velocimetry technique

机译:使用共聚焦微粒图像测速技术对皮氏弧菌微生物诱导的流场进行三维两分量速度测量

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摘要

Understanding the biological feeding strategy and characteristics of a microorganism as an actuator requires the detailed and quantitative measurement of flow velocity and flow rate induced by the microorganism. Although some velocimetry methods have been applied to examine the flow, the measured dimensions were limited to at most two-dimensional two-component measurements. Here we have developed a method to measure three-dimensional two-component flow velocity fields generated by the microorganism Vorticella picta using a piezoscanner and a confocal microscope. We obtained the two-component velocities of the flow field in a two-dimensional plane denoted as the XY plane, with an observation area of 455×341 μm2 and the resolution of 9.09 μm per each velocity vector by a confocal microparticle image velocimetry technique. The measurement of the flow field at each height took 37.5 ms, and it was repeated in 16 planes with a 2.50 μm separation in the Z direction. We reconstructed the three-dimensional two-component flow velocity field. From the reconstructed data, the flow velocity field [u(x,y,z),v(x,y,z)] in an arbitrary plane can be visualized. The flow rates through YZ and ZX planes were also calculated. During feeding, we examined a suction flow to the mouth of the Vorticella picta and measured it to be to 300 pl∕s.
机译:理解微生物作为致动器的生物喂养策略和特征需要对微生物诱导的流速和流速进行详细和定量的测量。尽管已将某些测速法应用于检查流量,但测量尺寸仅限于二维二维分量测量。在这里,我们已经开发出一种方法,可以使用压电扫描仪和共聚焦显微镜来测量由微生物短螺旋体产生的三维二维流场。我们在二维平面(称为XY平面)中获得了流场的两分量速度,观察面积为455×341μm 2 ,每个速度矢量的分辨率为9.09μm通过共聚焦微粒图像测速技术。在每个高度的流场测量耗时37.5 ms,并且在16个平面中重复进行,在Z方向的间距为2.50μm。我们重建了三维二维分量流场。根据重构数据,可以看到任意平面中的流速场[u(x,y,z),v(x,y,z)]。还计算了通过YZ和ZX平面的流速。在喂食过程中,我们检查了流向皮氏弧菌的口的吸入流,并将其测量为300 pl ∕ s。

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