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非均匀浑浊介质中激光散斑成像的空间模糊

Spatial blurring in laser speckle imaging in inhomogeneous turbid media.

作者信息

Vitomir Luka, Sprakel Joris, van der Gucht Jasper

机构信息

Wageningen University and Research Center, Department of Physical Chemistry and Soft Matter, Wageningen, 6708, WE, Netherlands.

出版信息

Sci Rep. 2017 Dec 4;7(1):16879. doi: 10.1038/s41598-017-17010-z.

Abstract

Laser speckle imaging (LSI) has developed into a versatile tool to image dynamical processes in turbid media, such as subcutaneous blood perfusion and heterogeneous dynamics in soft materials. Spatially resolved information about local dynamics is obtained by measuring time-dependent correlation functions of multiply scattered light. Due to the diffusive nature of photons in highly scattering media, the measured signal is a convolution of the local dynamics in the material and the spatial distribution of photons. This spatial averaging inevitably leads to a loss of resolution, which must be taken into account for a correct interpretation of LSI measurements. In this paper we derive analytical expressions to quantify the effects of spatial blurring in backscatter LSI for materials with heterogeneous dynamics. Using the diffusion approximation, we calculate the photon density distribution for a semi-infinite material, and we predict the effect of dynamic heterogeneity on the measured correlation function. We verify our theoretical expressions using random walk simulations. Our results show that LSI measurements in dynamically heterogeneous materials should be interpreted with caution, especially when only a single wavelength and correlation time are used to obtain the dynamical map.

摘要

激光散斑成像(LSI)已发展成为一种多功能工具,用于对浑浊介质中的动态过程进行成像,例如皮下血液灌注和软材料中的非均匀动力学。通过测量多次散射光的时间相关函数,可以获得有关局部动力学的空间分辨信息。由于光子在高散射介质中的扩散性质,测量信号是材料中局部动力学与光子空间分布的卷积。这种空间平均不可避免地导致分辨率的损失,在正确解释LSI测量结果时必须考虑到这一点。在本文中,我们推导了分析表达式,以量化具有非均匀动力学的材料在背散射LSI中空间模糊的影响。使用扩散近似,我们计算了半无限材料的光子密度分布,并预测了动态非均匀性对测量相关函数的影响。我们使用随机游走模拟验证了我们的理论表达式。我们的结果表明,在动态非均匀材料中进行LSI测量时应谨慎解释,特别是当仅使用单个波长和相关时间来获得动态图时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84a0/5715131/c1ac4eb1bdcc/41598_2017_17010_Fig1_HTML.jpg

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