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血管结构对激光散斑对比成像的影响。

Effect of vascular structure on laser speckle contrast imaging.

作者信息

Jafari Chakameh Z, Sullender Colin T, Miller David R, Mihelic Samuel A, Dunn Andrew K

机构信息

Department of Electrical and Computer Engineering, The University of Texas at Austin, Austin, Texas 78712, USA.

Department of Biomedical Engineering, The University of Texas at Austin, Austin, Texas 78712, USA.

出版信息

Biomed Opt Express. 2020 Sep 24;11(10):5826-5841. doi: 10.1364/BOE.401235. eCollection 2020 Oct 1.

Abstract

Laser speckle contrast imaging (LSCI) is a powerful tool for non-invasive, real-time imaging of blood flow in tissue. However, the effect of tissue geometry on the form of the electric field autocorrelation function and speckle contrast values is yet to be investigated. In this paper, we present an ultrafast forward model for simulating a speckle contrast image with the ability to rapidly update the image for a desired illumination pattern and flow perturbation. We demonstrate the first simulated speckle contrast image and compare it against experimental results. We simulate three mouse-specific cerebral cortex decorrelation time images and implement three different schemes for analyzing the effects of homogenization of vascular structure on correlation decay times. Our results indicate that dissolving structure and assuming homogeneous geometry creates up to ∼ 10x shift in the correlation function decay times and alters its form compared with the case for which the exact geometry is simulated. These effects are more pronounced for point illumination and detection imaging schemes, highlighting the significance of accurate modeling of the three-dimensional vascular geometry for accurate blood flow estimates.

摘要

激光散斑对比成像(LSCI)是一种用于对组织内血流进行无创、实时成像的强大工具。然而,组织几何形状对电场自相关函数形式和散斑对比值的影响尚未得到研究。在本文中,我们提出了一种超快正向模型,用于模拟散斑对比图像,能够针对所需的照明模式和血流扰动快速更新图像。我们展示了首个模拟散斑对比图像,并将其与实验结果进行比较。我们模拟了三张小鼠特定脑皮质去相关时间图像,并实施了三种不同方案来分析血管结构均匀化对相关衰减时间的影响。我们的结果表明,与模拟精确几何形状的情况相比,溶解结构并假设几何形状均匀会使相关函数衰减时间产生高达约10倍的偏移,并改变其形式。这些影响在点照明和检测成像方案中更为明显,凸显了准确建模三维血管几何形状对于准确估计血流的重要性。

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