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Full-field tracking and measuring of particle motion in capillary vessels by using time-varying laser speckle

机译:时变激光散斑对毛细血管中颗粒运动的全场跟踪和测量

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We propose a random perturbation model to describe the variation of laser speckle patterns caused by moving particles in capillary vessels. When passing through probing volume, moving particles encode random perturbations into observed laser speckle patterns. We extract the perturbation envelopes of time-varying laser speckles for tracking the motion of single particle. And, the full-field transverse velocities of flowing particles are obtained by using cross-correlation between the perturbation envelopes. The proposed method is experimentally verified by the use of polymer-microsphere suspension in a glass capillary.
机译:我们提出了一个随机扰动模型来描述由毛细血管中移动的粒子引起的激光散斑图案的变化。通过探测体积时,运动的粒子将随机扰动编码为观察到的激光斑点图案。我们提取随时间变化的激光散斑的扰动包络,以跟踪单个粒子的运动。并且,通过使用扰动包络之间的互相关来获得流动粒子的全场横向速度。通过在玻璃毛细管中使用聚合物微球悬浮液,对所提出的方法进行了实验验证。

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