首页> 外文会议>Conference on Medical Imaging 2008: Visualization, Image-Guided Procedures, and Modeling; 20080217-19; San Diego,CA(US) >Automated Determination of Optimal Angiographic Viewing Angles for Coronary Artery Bifurcations from CTA Data
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Automated Determination of Optimal Angiographic Viewing Angles for Coronary Artery Bifurcations from CTA Data

机译:从CTA数据自动确定冠状动脉分叉的最佳血管造影视角

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For optimal diagnosis and treatment of lesions at coronary artery bifurcations using x-ray angiography, it is of utmost importance to determine proper angiographic viewing angles. Due to the increasing use of CTA as a first line diagnostic tool, 3D CTA data is more frequently available before x-ray angiographic procedures take place. Motivated by this, we propose to use available CTA data for the determination of patient specific optimal x-ray viewing angles. A semi-automatic iterative region growing scheme is developed for the segmentation of the coronary arterial tree. From the segmented arterial tree, a complete hierarchical surface and centerline representation, including bifurcation points, is automatically obtained. The optimal viewing angle for a selected bifurcation is determined as the view rendering the least amount of foreshortening and vessel overlap. For 83 bifurcation areas, viewing angles were automatically determined. The sensitivity of the method to patient positioning in the x-ray system was also studied. Next, the automatically determined angels were both quantitatively and qualitatively compared with angles determined by two experts. The method was found not to be sensitive to the positioning of the patient in the angiographic x-ray system. In 95% of the cases our method produced a clinically usable view (mean score of 8.4 out of 10) as compared to 98% for the experts (mean score of 8.7). Our method produced angiographic views with significantly less foreshortening (mean difference of 10 percentage points) than the angiographic views set by the experts.
机译:为了使用X射线血管造影术对冠状动脉分叉处的病变进行最佳诊断和治疗,确定适当的血管造影术视角至关重要。由于越来越多地将CTA用作一线诊断工具,因此在进行X射线血管造影程序之前,更频繁地可以获得3D CTA数据。因此,我们建议使用可用的CTA数据来确定患者特定的最佳X射线视角。开发了一种半自动迭代区域生长方案,用于分割冠状动脉树。从分割的动脉树中,可以自动获取包括分叉点在内的完整分层表面和中心线表示。确定所选分叉的最佳视角为使透视缩短和血管重叠最少的视图。对于83个分叉区域,自动确定了视角。还研究了该方法对患者在X射线系统中定位的敏感性。接下来,将自动确定的角度与两位专家确定的角度进行定量和定性比较。发现该方法对患者在血管造影X射线系统中的位置不敏感。在95%的情况下,我们的方法产生了临床上可用的视图(平均评分为8.4,满分10分),而专家为98%(平均评分为8.7)。与专家设定的血管造影视图相比,我们的方法所产生的血管造影视图明显缩短(均值相差10个百分点)。

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