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Impact of velocity gradient in Poiseuille flow on the statistics of coherent radiation scattered by flowing Brownian particles in optical coherence tomography

机译:Poiseuille流中的速度梯度对光学相干断层扫描中流动的布朗粒子散射的相干辐射统计量的影响

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摘要

A closed-form expression is obtained for the temporal correlation function of the scattered radiation detected in optical coherence tomography (OCT), taking into account the flow velocity gradient across the OCT detection volume in the suspension of flowing Brownian particles. The analytical approach we use includes both the laser beam and wavefront curvature radii changing over the depth. Also, we compare our results with a previously obtained theoretical model, partially an empirical approach. Our findings suggest the importance of the flow velocity gradient for accurate measurements of flow velocity vector, particle diffusivity, shear-induced diffusion, and potentially other OCT applications.
机译:考虑到在流动布朗粒子悬浮液中跨OCT检测体积的流速梯度,获得了光学相干断层扫描(OCT)中检测到的散射辐射的时间相关函数的封闭形式。我们使用的分析方法包括激光束和波前曲率半径随深度的变化。另外,我们将我们的结果与先前获得的理论模型(部分为经验方法)进行比较。我们的发现表明,流速梯度对于精确测量流速矢量,颗粒扩散率,剪切引起的扩散以及可能的其他OCT应用非常重要。

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