Williams David, Grimm Sören, Coto Ernesto, Roudsari Abdul, Hatzakis Haralambos
Centre for Health Informatics, School of Informatics, City University, London, UK.
IEEE Trans Vis Comput Graph. 2008 Jan-Feb;14(1):109-19. doi: 10.1109/TVCG.2007.1068.
Curved Planar Reformation (CPR) has proved to be a practical and widely used tool for the visualization of curved tubular structures within the human body. It has been useful in medical procedures involving the examination of blood vessels and the spine. However, it is more difficult to use it for large, tubular, structures such as the trachea and the colon because abnormalities may be smaller relative to the size of the structure and may not have such distinct density and shape characteristics. Our new approach improves on this situation by using volume rendering for hollow regions and standard CPR for the surrounding tissue. This effectively combines gray scale contextual information with detailed color information from the area of interest. The approach is successfully used with each of the standard CPR types and the resulting images are promising as an alternative to virtual endoscopy. Because the CPR and the volume rendering are tightly coupled, the projection method used has a significant effect on properties of the volume renderer, such as distortion and isometry. We describe and compare the different CPR projection methods and how they affect the volume rendering process. A version of the algorithm is also presented which makes use of importance driven techniques; this ensures the users attention is always focused on the area of interest and also improves the speed of the algorithm.
曲面平面重组(CPR)已被证明是一种用于可视化人体内部弯曲管状结构的实用且广泛使用的工具。它在涉及血管和脊柱检查的医疗程序中很有用。然而,将其用于诸如气管和结肠等大型管状结构时会更困难,因为相对于结构大小而言,异常可能较小,并且可能没有如此明显的密度和形状特征。我们的新方法通过对中空区域使用体绘制以及对周围组织使用标准CPR来改善这种情况。这有效地将灰度上下文信息与来自感兴趣区域的详细颜色信息结合起来。该方法已成功应用于每种标准CPR类型,并且所得到的图像有望成为虚拟内窥镜检查的替代方法。由于CPR和体绘制紧密耦合,所使用的投影方法对体渲染器的属性(如失真和等距)有重大影响。我们描述并比较了不同的CPR投影方法以及它们如何影响体绘制过程。还提出了该算法的一个版本,它利用了重要性驱动技术;这确保了用户的注意力始终集中在感兴趣区域,同时还提高了算法的速度。