THREE-DIMENSIONAL RECONSTRUCTION BASED ON IMPROVED MARCHING CUBES ALGORITHM

被引:4
作者
Wang, Monan [1 ]
Luo, Haiyang [1 ]
Cui, Qi [1 ]
机构
[1] Harbin Univ Sci & Technol, Key Lab Med Biomech & Mat Heilongjiang Prov, Harbin 150080, Peoples R China
基金
黑龙江省自然科学基金;
关键词
3D reconstruction; MC algorithm; topological configuration; protocol mapping table; ISOSURFACE;
D O I
10.1142/S0219519420400023
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Based on the standard Marching Cubes (MC) algorithm, this paper proposes an improved MC algorithm. First, the original 15 topological configurations in the MC algorithm are increased to 24, which effectively avoid the generation of voids phenomenon. To further improve the speed of three-dimensional (3D) reconstruction, in this paper, the midpoint selection method is used instead of the linear interpolation method, and the 24 configurations are divided into three types. Each class corresponds to a thread. The multi-thread parallel processing is used to improve the calculation speed. The critical region is used to realize multi-thread synchronization, and then we designed a protocol mapping table according to the idea of the message mapping table. The function pointer is triggered by macro. Processing function is called by function pointer and completes the encapsulation of the protocol mapping table, which maintains the opening and closing principle of the class and ensures the scalability of the class. Through the improved MC algorithm accuracy verification and reconstruction speed verification, it is concluded that the improved MC algorithm can make up for the voids problem. By comparing the calculation time under the two platforms of Windows and Linux, the reconstruction speed of the improved MC algorithm is approximately 30% faster than the standard MC algorithm and 40% faster than the Masala algorithm. Finally, the algorithm is applied to the medical image 3D reconstruction system, and the accuracy and applicability of the algorithm are demonstrated by two sets of examples.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] Digital three-dimensional reconstruction based on integral imaging
    Chao Li
    Qian Chen
    Hong Hua
    Chen Mao
    Ajun Shao
    Optical Review, 2015, 22 : 427 - 433
  • [22] Improving the robustness and accuracy of the marching cubes algorithm for isosurfacing
    Lopes, A
    Brodlie, K
    IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS, 2003, 9 (01) : 16 - 29
  • [23] CONSERVATION DESIGN OF INDUSTRIAL HERITAGE BASED ON NONLINEAR GA OPTIMIZATION ALGORITHM AND THREE-DIMENSIONAL RECONSTRUCTION
    Zhao, Yunan
    Bai, Peng
    SCALABLE COMPUTING-PRACTICE AND EXPERIENCE, 2024, 25 (02): : 874 - 882
  • [24] Algorithm for Three-Dimensional Reconstruction of Nonrigid Objects Using a Depth Camera
    Ruiz-Rodriguez, M.
    Kober, V. I.
    Karnaukhov, V. N.
    Mozerov, M. G.
    JOURNAL OF COMMUNICATIONS TECHNOLOGY AND ELECTRONICS, 2020, 65 (06) : 698 - 705
  • [25] Algorithm for Three-Dimensional Reconstruction of Nonrigid Objects Using a Depth Camera
    M. Ruiz-Rodriguez
    V. I. Kober
    V. N. Karnaukhov
    M. G. Mozerov
    Journal of Communications Technology and Electronics, 2020, 65 : 698 - 705
  • [26] Fusion of multi-planar images for improved three-dimensional object reconstruction
    Yuan, Xiaohui
    Yuan, Xiaojing
    COMPUTERIZED MEDICAL IMAGING AND GRAPHICS, 2011, 35 (05) : 373 - 382
  • [27] Three-Dimensional Reconstruction of Light Field Based on Phase Similarity
    Feng, Wei
    Gao, Junhui
    Qu, Tong
    Zhou, Shiqi
    Zhao, Daxing
    SENSORS, 2021, 21 (22)
  • [28] Research on three-dimensional Reconstruction Method Based on Binocular Vision
    Li, Jinlin
    Wang, Zhihui
    Wang, Minjun
    MIPPR 2017: PATTERN RECOGNITION AND COMPUTER VISION, 2017, 10609
  • [29] Three-dimensional reconstruction of flame based on computed tomography of chemiluminescence
    Feng Shenxiang
    Hao Xiaojian
    INTERNATIONAL CONFERENCE ON OPTICAL AND PHOTONIC ENGINEERING, ICOPEN 2022, 2022, 12550
  • [30] Three-dimensional reconstruction of flame based on computed tomography of chemiluminescence
    Feng Shenxiang
    Hao Xiaojian
    AOPC 2022: OPTICAL SENSING, IMAGING, AND DISPLAY TECHNOLOGY, 2022, 12557