Dufresne T E, Sarwal A, Dhawan A P
Department of Electrical and Computer Engineering, University of Cincinnati, OH 45221-0030.
Comput Med Imaging Graph. 1994 Sep-Oct;18(5):343-55. doi: 10.1016/0895-6111(94)90005-1.
The quantification of three dimensional (3D) properties of coronary arteries is of significant importance. The performance of the 3D analysis is critically based on low-level representation of the arterial tree for different projections. A skeletal representation of arteries can provide appropriate data structure for registration of multiple angiographic projections and it can be further utilized for 3D reconstruction of the arterial tree. This paper presents an automated method for extracting the skeletal points of an arterial tree directly from the gray-level information without determining the edges a priori. It offers the advantage of improved reliability compared to methods based on detecting dual edges of the arteries. Novel application of filtering techniques provide accurate estimates of the statistics of the background. A recursive search scheme is used to aggregate the skeletal representation at multiple resolutions. Results on a set of Digitally Subtracted Angiograms (DSA) have been presented.
冠状动脉三维(3D)特性的量化具有重要意义。3D分析的性能关键基于不同投影下动脉树的低层次表示。动脉的骨架表示可为多个血管造影投影的配准提供合适的数据结构,并且可进一步用于动脉树的三维重建。本文提出了一种自动方法,可直接从灰度信息中提取动脉树的骨架点,而无需事先确定边缘。与基于检测动脉双边的方法相比,它具有更高可靠性的优势。滤波技术的新颖应用可提供对背景统计信息的准确估计。使用递归搜索方案在多个分辨率下聚合骨架表示。已给出了一组数字减影血管造影(DSA)的结果。