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Research and Implement of 3D Interactive Surface Cutting Based on the Visualization Toolkit
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  • 作者:Guoxian Feng (21)
    Zhanpeng Huang (21)
    Tao Chen (21)
  • 关键词:Visualization Toolkit ; surface intersection ; plane cutting ; sphere cutting
  • 刊名:Lecture Notes in Computer Science
  • 出版年:2014
  • 出版时间:2014
  • 年:2014
  • 卷:8918
  • 期:1
  • 页码:386-391
  • 全文大小:925 KB
  • 参考文献:1. World Health Organization. The World Health Report (2002), http://www.who.int/whr/2002/en
    2. Numminen, K., Sipila, O., Makisalo, H.: Preoperative hepatic 3D models: virtual liver resection using three-dimensional imaging technique. Eur. J. Radiol.?56(2), 179-84 (2005) CrossRef
    3. Kockro, R.A., Serra, L., Tseng-Tsai, Y., et al.: Planning and simulation of neurosurgery in a virtual reality environment. Neurosurgery?46, 118-37 (2000) CrossRef
    4. Ayache, N.: Epidaure: A Research Project in Medical Image Analysis,Simulation and Robotics at INRI. IEEE Trans. Medical Imaging?22(10), 1185-201 (2003) CrossRef
    5. Fang, C.-H., Yang, J., Fan, Y.-F., et al.: The Research of vertual hepatectomy. China J. Surg.?45(11), 753-55 (2007)
    6. Kitware, Inc. The VTK user’s guide. USA, http://www.vtk.org.com
    7. Huang, Z., Yi, F., Bao, S.: Three-dimensional visualization and simulation of liver resection. Beijing Biomedical Engineering?29(4), 336-39 (2010)
    8. Peng, F., Bao, S.: Segmentation of liver and its vessel based on CT sequence image. Computer Engineering and Applicatiions?45(20), 205-07 (2009)
  • 作者单位:Guoxian Feng (21)
    Zhanpeng Huang (21)
    Tao Chen (21)

    21. College of Medical Information Engineering, GuangDong Pharmaceutical University, Guangzhou, 510006, China
  • ISSN:1611-3349
文摘
Surgical simulation increasingly appears to be an essential aspect of tomorrow’s surgery. In this paper we present a preliminary work on virtual reality applied to liver surgery. The area of the liver, intra-hepatic arteries, veins, the portal vein and tumor have been extracted based on the seeded region growing algorithm. Then a realistic three-dimensional image was created, including the liver and the four internal vessels. After that, a user graphical interface was designed to interactively adjust the surgical resection planes. The surgical simulation platform was developed by providing a 3D visualization and virtual cutting system of liver based on personal computer. Our preliminary result shows that the visualization of liver and internal vessels and interactive modifications of the resection plane could present with a vivid profile.

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