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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >High Resolution Cerebral Blood Flow Imaging by Registered Laser Speckle Contrast Analysis
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High Resolution Cerebral Blood Flow Imaging by Registered Laser Speckle Contrast Analysis

机译:通过注册的激光散斑对比度分析进行高分辨率脑血流成像

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摘要

Laser speckle imaging (LSI) has been widely used for in vivo detecting cerebral blood flow (CBF) under various physiological and pathological conditions. So far, nearly all literature on in vivo LSI does not consider the influence of disturbances due to respiration and/or heart beating of animals. In this paper, we analyze how such physiologic motions affect the spatial resolution of the conventional laser speckle contrast analysis (LASCA). We propose a registered laser speckle contrast analysis (rLASCA) method which first registers raw speckle images with a 3 $, times ,$3 convolution kernel, normalized correlation metric and cubic B-spline interpolator, and then constructs the contrast image for CBF. rLASCA not only significantly improves the distinguishability of small vessels, but also efficiently suppresses the noises induced by respiration and/or heart beating. In an application of imaging the angiogenesis of rat’s brain tumor, rLASCA outperformed the conventional LASCA in providing a much higher resolution for new small vessels. As a processing method for LSI, rLASCA can be directly applied to other LSI experiments where the disturbances from different sources (like respiration, heart beating) exist.
机译:激光散斑成像(LSI)已被广泛用于在各种生理和病理条件下体内检测脑血流(CBF)。迄今为止,几乎所有有关体内LSI的文献都没有考虑到由于动物的呼吸和/或心脏跳动引起的干扰的影响。在本文中,我们分析了这种生理运动如何影响常规激光散斑对比度分析(LASCA)的空间分辨率。我们提出了一种配准的激光散斑对比分析(rLASCA)方法,该方法首先配准原始的散斑图像,并带有3 $,乘以$ 3卷积核,归一化相关度量和三次B样条插值器,然后构造CBF对比图像。 rLASCA不仅显着提高了小血管的可分辨性,而且还有效抑制了呼吸和/或心脏跳动引起的噪音。在对大鼠脑肿瘤血管生成进行成像的应用中,rLASCA在为新的小血管提供更高的分辨率方面优于传统的LASCA。作为LSI的一种处理方法,rLASCA可以直接应用于其他LSI实验中,这些实验中存在来自不同来源的干扰(例如呼吸,心脏跳动)。

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