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首页> 外文期刊>Physics in medicine and biology. >Added soft tissue contrast using signal attenuation and the fractal dimension for optical coherence tomography images of porcine arterial tissue.
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Added soft tissue contrast using signal attenuation and the fractal dimension for optical coherence tomography images of porcine arterial tissue.

机译:使用信号衰减和分形维数为猪动脉组织的光学相干断层扫描图像增加了软组织对比度。

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Optical coherence tomography (OCT) images of left-descending coronary tissues harvested from three porcine specimens were acquired with a home-build swept-source OCT setup. Despite the fact that OCT is capable of acquiring high resolution circumferential images of vessels, many distinct histological features of a vessel have comparable optical properties leading to poor contrast in OCT images. Two classification methods were tested in this report for the purpose of enhancing contrast between soft-tissue components of porcine coronary vessels. One method involved analyzing the attenuation of the OCT signal as a function of light penetration into the tissue. We demonstrated that by analyzing the signal attenuation in this manner we were able to differentiate two media sub-layers with different orientations of the smooth muscle cells. The other classification method used in our study was fractal analysis. Fractal analysis was implemented in a box-counting (fractal dimension) image-processing code and was used as a tool to differentiate and quantify variations in tissue texture at various locations in the OCT images. The calculated average fractal dimensions had different values in distinct regions of interest (ROI) within the imaged coronary samples. When compared to the results obtained by using the attenuation of the OCT signal, the method of fractal analysis demonstrated better classification potential for distinguishing amongst the tissue ROI.
机译:光学相干断层扫描(OCT)图像从三个猪标本中收获的左降冠状组织是用自制的扫频OCT装置获得的。尽管OCT能够获取高分辨率的血管周向图像,但血管的许多不同组织学特征具有可比的光学特性,从而导致OCT图像对比度差。本报告中测试了两种分类方法,目的是增强猪冠状动脉软组织成分之间的对比。一种方法涉及分析OCT信号的衰减与光穿透组织的关系。我们证明,通过以这种方式分析信号衰减,我们能够区分具有平滑肌细胞不同取向的两个媒体亚层。我们研究中使用的另一种分类方法是分形分析。分形分析是在盒计数(分数维)图像处理代码中实现的,并被用作区分和量化OCT图像各个位置组织纹理变化的工具。计算的平均分形维数在成像的冠状动脉样本内的不同关注区域(ROI)中具有不同的值。与通过使用OCT信号的衰减获得的结果进行比较时,分形分析方法显示出更好的分类潜力,可用于区分组织ROI。

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