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Atherosclerotic plaque characterization using geometrical features from virtual histology intravascular ultrasound images

机译:使用虚拟组织学血管内超声图像的几何特征的动脉粥样硬化斑块表征

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Intravascular ultrasound imaging (IVUS) is a diagnostic imaging technique which provides two-dimensional (2-D) tomographic views of the coronary lumen and outer vessel wall. Virtual Histology (VH) provides a color-coded plaque characterization which employs the radiofrequency (RF) data from the catheter. The aim of this study is to extract a set of features from IVUS images and to use them in the detection of various plaque components. Intensity features, texture based features and two novel geometrical features are employed in a Random Forests classification algorithm. The first geometrical feature describes the relative position of each pixel from the media-adventitia border and the second the relative position from the media-adventitia and the lumen border. The plaque components are classified into four plaque types: Dense Calcium, Fibrotic Tissue, Fibro-Fatty Tissue and Necrotic Core. We use 300 IVUS frames acquired from Virtual Histology exams from 10 patients to evaluate our methodology. The two geometrical features improved the atherosclerotic plaque classification in terms of overall accuracy, sensitivity and specificity. Using the geometrical features an overall classification accuracy 84.45% is reported.
机译:血管内超声成像(IVUS)是诊断成像技术,其提供了冠状动脉内腔和外容器壁的二维(2-d)的断层视图。虚拟组织学(VH)提供颜色编码的斑块特征,其从导管采用射频(RF)数据。本研究的目的是提取一组从血管内超声图像特征,并在检测各种斑块成分的使用它们。强度的功能,基于纹理特征和两个新颖几何特征在随机森林分类算法被采用。所述第一几何特征描述从媒体外膜边界的每个像素,并从外膜和管腔边界第二相对位置的相对位置。所述斑块成分被分类成四个类型的斑:密实钙,纤维组织,纤维脂肪组织和坏死核心。我们使用来自10名患者从虚拟组织学检查获得的300个IVUS帧来评估我们的方法。两个几何特征在整体精度,灵敏度和特异性方面具有改进的粥样硬化斑块的分类。利用几何特征的总体分类准确度84.45%报。

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