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Robust quantitative single-exposure laser speckle imaging with true flow speckle contrast in the temporal and spatial domains

机译:在时域和空域中具有真实流斑点对比度的强大定量单次曝光激光斑点成像

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摘要

A systematic and robust laser speckle contrast imaging (LSCI) method and procedure is presented covering the LSCI system calibration, static scattering removal, and measurement noise estimation and correction to obtain a true flow speckle contrast Kf2and the flow speed from single-exposure LSCI measurements. We advocate the use of K2 as the speckle contrast instead of the conventional contrast K, as the former relates simply to the flow velocity and is with additive noise alone. We demonstrate the efficacy of the proposed true flow speckle contrast by imaging phantom flow at varying speeds, showing that (1) the proposed recipe greatly enhances the linear sensitivity of the flow index (inverse decorrelation time) and the linearity covers the full span of flow speeds from 0 to 40 mm/s; and (2) the true flow speed can be recovered regardless of the overlying static scattering layers and the type of speckle statistics (temporal or spatial). The fundamental difference between the apparent temporal and spatial speckle contrasts is further revealed. The flow index recovered in the spatial domain is much more susceptible to static scattering and exhibit a shorter linearity range than that obtained in the temporal domain. The proposed LSCI analysis framework paves the way to estimate the true flow speed in the wide array of laser speckle contrast imaging applications.
机译:提出了一种系统且鲁棒的激光斑点对比成像(LSCI)方法和过程,涵盖了LSCI系统校准,静态散射消除以及测量噪声估计和校正,以获得真实的流动斑点对比 K f 2 和单次LSCI测量的流速。我们提倡使用 K < / mi> 2 作为斑点对比度而不是常规对比度K,因为前者仅与流速有关,并且仅具有附加噪声。我们通过以不同速度对幻影流进行成像来证明所提出的真流散斑对比度的功效,表明(1)所提出的配方极大地提高了流动指数的线性灵敏度(逆相关时间),并且线性涵盖了整个流动范围速度从0到40 mm / s; (2)不论上覆的静态散射层和散斑统计数据的类型(时间或空间)如何,都可以恢复真实的流速。明显的时间和空间斑点对比之间的根本区别进一步揭示。在空间域中恢复的流动指数比在时间域中获得的流动指数更容易受到静态散射的影响,并且呈现出较短的线性范围。拟议的LSCI分析框架为估算各种激光散斑对比度成像应用中的真实流速铺平了道路。

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