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使用激光散斑成像对皮质血流监测器进行图像处理的新见解。

New insights into image processing of cortical blood flow monitors using laser speckle imaging.

作者信息

Le Thinh M, Paul Joseph S, Al-Nashash H, Tan A, Luft A R, Sheu F S, Ong S H

机构信息

Department of Electrical and Computer Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore 117576, Singapore.

出版信息

IEEE Trans Med Imaging. 2007 Jun;26(6):833-42. doi: 10.1109/TMI.2007.892643.

Abstract

Laser speckle imaging has increasingly become a viable technique for real-time medical imaging. However, the computational intricacies and the viewing experience involved limit its usefulness for real-time monitors such as those intended for neurosurgical applications. In this paper, we propose a new technique, tLASCA, which processes statistics primarily in the temporal direction using the laser speckle contrast analysis (LASCA) equation, proposed by Briers and Webster. This technique is thoroughly compared with the existing techniques for signal processing of laser speckle images, including, the spatial-based sLASCA and the temporal-based modified laser speckle imaging (mLSI) techniques. sLASCA is an improvement of the basic LASCA technique. In sLASCA, the derived contrasts are further averaged over a predetermined number of raw speckle images. mLSI, on the other hand, is the technique in which temporal statistics are processed using the equation described by Ohtsubo and Asakura. tLASCA preserves the original image resolution similar to mLSI. tLASCA outperforms sLASCA (window size M = 5) with faster convergence of K values (5.32 versus 20.56 s), shorter per-frame processing time (0.34 versus 2.51 s), and better subjective and objective quality evaluations of contrast images. tLASCA also outperforms mLSI with faster convergence of K values (5.32 s) compared to N values (10.44 s), shorter per-frame processing time (0.34 versus 0.91 s), smaller intensity fluctuations among frames (8%-10% versus 15%-35%), and better subjective and objective quality evaluations of contrast images. As laser speckle imaging becomes an important tool for real-time monitoring of blood flows and vascular perfusion, tLASCA is proven to be the technique of choice.

摘要

激光散斑成像已日益成为一种用于实时医学成像的可行技术。然而,其涉及的计算复杂性和观看体验限制了它在诸如神经外科应用的实时监测器中的实用性。在本文中,我们提出了一种新技术,即时间分辨激光散斑对比分析(tLASCA),它主要利用布里尔斯和韦伯斯特提出的激光散斑对比分析(LASCA)方程在时间方向上处理统计数据。该技术与现有的激光散斑图像处理技术进行了全面比较,包括基于空间的空间分辨激光散斑对比分析(sLASCA)和基于时间的改进激光散斑成像(mLSI)技术。sLASCA是基本LASCA技术的改进。在sLASCA中,导出的对比度在预定数量的原始散斑图像上进一步平均。另一方面,mLSI是一种使用大坪和朝仓描述的方程处理时间统计数据的技术。tLASCA与mLSI一样保留了原始图像分辨率。tLASCA在K值收敛速度更快(5.32秒对20.56秒)、每帧处理时间更短(0.34秒对2.51秒)以及对比图像的主观和客观质量评估更好等方面优于sLASCA(窗口大小M = 5)。与N值(10.44秒)相比,tLASCA在K值收敛速度更快(5.32秒)、每帧处理时间更短(0.34秒对0.91秒)、帧间强度波动更小(8%-10%对15%-35%)以及对比图像的主观和客观质量评估更好等方面也优于mLSI。随着激光散斑成像成为实时监测血流和血管灌注的重要工具,tLASCA被证明是首选技术。

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