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使用激光散斑对比分析(LASCA)监测毛细血管血流

Capillary Blood Flow Monitoring Using Laser Speckle Contrast Analysis (LASCA).

作者信息

Briers J D, Richards G, He X W

出版信息

J Biomed Opt. 1999 Jan;4(1):164-75. doi: 10.1117/1.429903.

Abstract

Coherent light scattered from an ensemble of moving scatterers produces a time-varying speckle pattern. The intensity fluctuations observed in a single speckle can be regarded either as a time-varying interference effect or as a Doppler beating effect. Techniques based on each of these approaches have been developed to analyze the fluctuations in an attempt to measure the velocities of the scatterers. Most of these methods measure the temporal statistics of the intensity fluctuations in a single speckle, i.e., at a single point. If a map of the velocity distribution is required, some form of scanning must be introduced. One way of avoiding the need to scan is to make use of the spatial statistics of time-integrated speckle. This is the basis of a technique, already described in the literature, called laser speckle contrast analysis (LASCA). In this article, we present a brief review of the theory linking the intensity fluctuations to the velocity and of the various techniques that have been proposed to measure them. We then describe the present configuration of our LASCA technique and describe some recent developments in our search for a real-time, noninvasive, full-field technique for visualizing capillary blood flow. © 1999 Society of Photo-Optical Instrumentation Engineers.

摘要

从一群移动散射体散射的相干光会产生随时间变化的散斑图案。在单个散斑中观察到的强度波动既可以被视为随时间变化的干涉效应,也可以被视为多普勒拍频效应。基于这两种方法中的每一种都已开发出相关技术来分析这些波动,试图测量散射体的速度。这些方法大多测量单个散斑中强度波动的时间统计量,即在单个点处。如果需要速度分布图,则必须引入某种形式的扫描。避免扫描需求的一种方法是利用时间积分散斑的空间统计量。这是一种已在文献中描述的技术——激光散斑对比度分析(LASCA)的基础。在本文中,我们简要回顾了将强度波动与速度联系起来的理论以及为测量它们而提出的各种技术。然后我们描述了我们的LASCA技术的当前配置,并描述了我们在寻找一种用于可视化毛细血管血流的实时、非侵入性、全场技术方面的一些最新进展。© 1999 美国光电仪器工程师协会。

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