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首页> 外文期刊>Ultrasound in Medicine and Biology >A FULLY-AUTOMATIC METHOD TO SEGMENT THE CAROTID ARTERY LAYERS IN ULTRASOUND IMAGING: APPLICATION TO QUANTIFY THE COMPRESSION-DECOMPRESSION PATTERN OF THE INTIMA-MEDIA COMPLEX DURING THE CARDIAC CYCLE
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A FULLY-AUTOMATIC METHOD TO SEGMENT THE CAROTID ARTERY LAYERS IN ULTRASOUND IMAGING: APPLICATION TO QUANTIFY THE COMPRESSION-DECOMPRESSION PATTERN OF THE INTIMA-MEDIA COMPLEX DURING THE CARDIAC CYCLE

机译:在超声成像中分段颈动脉层的全自动方法:应用于在心动周期中量化内部媒体复合物的压缩 - 减压模式

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The aim of this study was to introduce and evaluate a contour segmentation method to extract the interfaces of the intima-media complex in carotid B-mode ultrasound images. The method was applied to assess the temporal variation of intima-media thickness during the cardiac cycle. The main methodological contribution of the proposed approach is the introduction of an augmented dimension to process 2-D images in a 3-D space. The third dimension, which is added to the two spatial dimensions of the image, corresponds to the tentative local thickness of the intima-media complex. The method is based on a dynamic programming scheme that runs in a 3-D space generated with a shape-adapted filter bank. The optimal solution corresponds to a single medial axis representation that fully describes the two anatomical interfaces of the arterial wall. The method is fully automatic and does not require any input from the user. The method was trained on 60 subjects and validated on 184 other subjects from six different cohorts and four different medical centers. The arterial wall was successfully segmented in all analyzed images (average pixel size = 57 +/- 20 mm), with average segmentation errors of 47 +/- 70 mm for the lumen-intima interface, 55 +/- 68 mm for the media-adventitia interface and 66 +/- 90 mm for the intima-media thickness. The amplitude of the temporal variations in IMT during the cardiac cycle was significantly higher in the diseased population than in healthy volunteers (106 +/- 48 vs. 86 +/- 34 mm, p = 0.001). The introduced framework is a promising approach to investigate an emerging functional parameter of the arterial wall by assessing the cyclic compression-decompression pattern of the tissues. (E-mail: zahnd-guillaume@is.naist.jp) (C) 2016 World Federation for Ultrasound in Medicine & Biology.
机译:本研究的目的是引入和评估一种轮廓分段方法,以提取颈动脉B模式超声图像中的内部介质复合物的界面。应用该方法以评估心脏循环期间内膜介质厚度的时间变化。所提出的方法的主要方法论贡献是引入增强维度,以在三维空间中处理2-D图像。添加到图像的两个空间尺寸的第三尺寸对应于内部介质复合物的暂定局部厚度。该方法基于动态编程方案,其在用形状适应的滤波器组产生的三维空间中运行。最佳溶液对应于单内侧轴表示,其完全描述了动脉壁的两个解剖界面。该方法完全自动,不需要用户的任何输入。该方法在60项受试者培训,并于来自六个不同的群组和四个不同医疗中心的184名受试者验证。在所有分析的图像(平均像素尺寸= 57 +/-20mm)中成功分段,平均分割误差为47 +/- 70 mm,对于介质,55 +/- 68 mm为55 +/- 68 mm - 用于内部介质厚度的开放式界面和66 +/- 90 mm。在心脏循环期间IMT的时间变化的幅度显着高于健康志愿者(106 +/- 48对86 +/- 34mm,p = 0.001)。引入的框架是通过评估组织的环状压缩减压模式来研究动脉壁的新出现功能参数的有希望的方法。 (电子邮件:zahnd-guillaume@is.naist.jp)(c)2016年在医学与生物学中的超声波世界联合会。

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