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心内膜散乱点云边界点检测算法研究
引用本文:周学礼,万旺根.心内膜散乱点云边界点检测算法研究[J].计算机应用研究,2012,29(10):3942-3944.
作者姓名:周学礼  万旺根
作者单位:1. 1. 上海大学 通信与信息工程学院, 上海 200072; 2. 常熟理工学院 物理与电子工程学院, 江苏 常熟 215500
2. 上海大学 通信与信息工程学院,上海,200072
基金项目:国家自然科学基金资助项目(61103076); 上海市教委“电路与系统”重点学科建设项目(J50104)
摘    要:针对心内膜散乱点云预处理中的边界点检测,利用截线云理论将散乱点云进行等间隔区域分层,将点云投影至点云切片,得到切片的散乱点集,同时建立链表结构分区存储点云数据;由平面上点的二维坐标定位,提出区域"十"字算法进行切片数据边界点提取,获取切片数据的最外层点,将检测到的边界点存回原始三维数据源,完成预处理过程。实验结果证明,该算法对边界点具有较强的识别能力,能够在快速、有效地简化点云数据的同时保持原始特征的信息,可以提高后续三维建模的精度和速度。

关 键 词:散乱点云  边界点  “十”字算法  点云切片

Efficient boundary points extraction method for scattered point cloud of endocardium
ZHOU Xue-li,WAN Wang-gen.Efficient boundary points extraction method for scattered point cloud of endocardium[J].Application Research of Computers,2012,29(10):3942-3944.
Authors:ZHOU Xue-li  WAN Wang-gen
Affiliation:1. School of Communication & Information Engineering, Shanghai University, Shanghai 200072, China; 2. School of Physics & Electronic Engineering, Changshu Institute of Technology, Changshu Jiangsu 215500, China
Abstract:In order to extract boundary points in the preprocessing for scattered point cloud of endocardium, this paper cut the point cloud based on slicing method to obtain the slice data and stored the slice data with list structure. In 2D space, used approximate nearest neighborANN to represent the spatial topology relationship of the scattered point cloud and to calculate the k-approximate-nearest neighbours for each data point, then it presented the crisscross-shape algorithm to locate the boundary points, and then mapped the boundary points to the corresponding boundary points in 3D space for the next processing of endocardial three-dimensional mapping system. The experimental results show that this approach has a strong ability for distinguishing boundary points, and can reduce data directly and effectively while keeping the original features, which can increase the accuracy and speed of the subsequent three-dimensional model construction.
Keywords:scattered point cloud  boundary points  crisscross-shape algorithm  point cloud slicing
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