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Synchronous Navigation for CT Colonography

机译:CT结肠造影同步导航

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We present a synchronous navigation module for CT colonography (CTC) reading. The need for such a system arises because most CTC protocols require a patient to be scanned in both supine and prone positions to increase sensitivity in detecting colonic polyps. However, existing clinical practices are limited to reading one scan at a time. Such limitation is due to the fact that building a reference system between scans for the highly flexible colon is a nontrivial task. The conventional centerline approach, generating only the longitudinal distance along the colon, falls short in providing the necessary orientation information to synchronize the virtual navigation cameras in both scanned positions. In this paper we describe a synchronous navigation system by using the teniae coli as anatomical references. Teniae coli are three parallel bands of longitudinal smooth muscle on the surface of the colon. They are morphologically distinguishable and form a piecewise triple helix structure from the appendix to the sigmoid colon. Because of these characteristics, they are ideal references to synchronize virtual cameras in both scanned positions. Our new navigation system consists of two side-by-side virtual colonoscopic view panels (for the supine and prone data sets respectively) and one single camera control unit (which controls both the supine and prone virtual cameras). The capability to examine the same colonic region simultaneously in both scanned images can raise an observer's confidence in polyp identification and potentially improve the performance of CT colonography.
机译:我们提出了用于CT结肠造影(CTC)阅读的同步导航模块。之所以需要这样的系统,是因为大多数CTC协议都要求在仰卧位和俯卧位对患者进行扫描,以提高检测结肠息肉的敏感性。但是,现有的临床实践仅限于一次读取一次扫描。这种限制是由于以下事实:在针对高度灵活的结肠的扫描之间建立参考系统是一项艰巨的任务。仅产生沿结肠的纵向距离的常规中心线方法在提供必要的方位信息以使两个扫描位置中的虚拟导航相机同步方面均达不到要求。在本文中,我们以the虫为解剖学参考,描述了一种同步导航系统。 teniae coli是结肠表面上的三个平行的纵向平滑肌带。它们在形态上是可区分的,并形成从阑尾到乙状结肠的分段三螺旋结构。由于这些特性,它们是在两个扫描位置同步虚拟摄像机的理想参考。我们的新导航系统由两个并排的虚拟结肠镜观察面板(分别用于仰卧和俯卧数据集)和一个摄像头控制单元(同时控制仰卧和俯卧虚拟相机)组成。同时在两个扫描图像中检查相同结肠区域的能力可以提高观察者对息肉识别的信心,并有可能改善CT结肠造影的性能。

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