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激光多谱勒流量测定与激光散斑对比分析的等效性和差异性。

On the equivalence and differences between laser Doppler flowmetry and laser speckle contrast analysis.

机构信息

Linköping University, Department of Biomedical Engineering, 581 85 Linköping, SwedenbPerimed AB, Datavägen 9A, 175 43 Järfälla-Stockholm, Sweden.

Linköping University, Department of Biomedical Engineering, 581 85 Linköping, Sweden.

出版信息

J Biomed Opt. 2016 Dec 1;21(12):126018. doi: 10.1117/1.JBO.21.12.126018.

Abstract

Laser Doppler flowmetry (LDF) and laser speckle contrast analysis (LASCA) both utilize the spatiotemporal properties of laser speckle patterns to assess microcirculatory blood flow in tissue. Although the techniques analyze the speckle pattern differently, there is a close relationship between them. We present a theoretical overview describing how the LDF power spectrum and the LASCA contrast can be calculated from each other, and how both these can be calculated from an optical Doppler spectrum containing various degrees of Doppler shifted light. The theoretical relationships are further demonstrated using time-resolved speckle simulations. A wide range of Monte Carlo simulated tissue models is then used to show how perfusion estimates for LDF and LASCA are affected by changes in blood concentration and speed distribution, as well as by geometrical and optical properties. We conclude that perfusion estimates from conventional single exposure time LASCA are in general more sensitive to changes in optical and geometrical properties and are less accurate in the prediction of real perfusion changes, especially speed changes. Since there is a theoretical one-to-one relationship between Doppler power spectrum and contrast, one can conclude that those drawbacks with the LASCA technique can be overcome using a multiple exposure time setup.

摘要

激光散斑对比分析(LASCA)和激光多普勒流量metry(LDF)都利用激光散斑图案的时空特性来评估组织中的微循环血流。虽然这两种技术分析散斑图案的方式不同,但它们之间存在密切的关系。我们提出了一个理论概述,描述了如何从彼此的激光散斑对比和 LDF 功率谱中计算出来,以及如何从包含各种程度的多普勒频移光的光多普勒谱中计算出来。理论关系进一步通过时间分辨散斑模拟进行了演示。然后,使用范围广泛的蒙特卡罗模拟组织模型来显示 LDF 和 LASCA 的灌注估计如何受到血液浓度和速度分布变化以及几何和光学特性的影响。我们得出的结论是,传统的单次曝光时间 LASCA 的灌注估计通常对光学和几何特性的变化更敏感,并且在预测真实的灌注变化,尤其是速度变化方面,精度较低。由于多普勒功率谱和对比度之间存在理论上的一一对应关系,因此可以得出结论,使用多次曝光时间设置可以克服 LASCA 技术的那些缺点。

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