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医学影像处理与分析开发包MITK的设计与实现 被引量:41

Design and Implementation of MITK for 3D Medical Image Processing and Analyzing
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摘要 随着VTK(visualization ToolKit)和ITK(insight segmentation and registration ToolKit)两个软件开发包的成功,医学影像领域内的研究人员越来越重视本领域内的软件包的开发问题.介绍了所开发的集成化的三维医学影像处理与分析开发包MITK(medical imaging ToolKit),其目的主要是提供一个一致的框架,整合医学图像分割、配准、可视化等功能.给出了MITK的设计目标、整体框架和关键技术的实现,以及一些应用实例以展示MITK的功能. With the success of VTK (visualization ToolKit) and ITK (insight segmentation and registration ToolKit), there are more attentions to the toolkit development issue in medical imaging community. This paper introduces MITK (medical imaging ToolKit), an integrated 3D medical image processing and analyzing toolkit. Its main purpose is to provide a consistent framework to combine the function of medical image segmentation, registration and visualization. The design goals, overall framework, and implementation of some key technologies are provided in details, and some application examples are also given to demonstrate the ability of MITK. We hope that MITK will become another available choice for the medical imaging community.
出处 《软件学报》 EI CSCD 北大核心 2005年第4期485-495,共11页 Journal of Software
基金 国家自然科学基金) 国家重点基础研究发展规划(973) 国家杰出青年科学基金 北京市自然科学基金~~
关键词 可视化 图像分割 图像配准 C++开发包 Computer simulation languages Image analysis Image processing Image segmentation Three dimensional computer graphics Visualization
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参考文献13

  • 1Visualization Toolkit. http://www.vtk. org
  • 2Insight Segmentation and Registration Toolkit. http://www.itk.org
  • 3Schroeder W, Martin K, Lorensen B. The Visualization toolkit: An Object Oriented Approach to 3D Graphics. 3rd Edition. New York: Kitware, Inc. Publisher, 2003.
  • 4Schroeder WJ, Avila LS, Hoffman W. Visualizing with VTK: A tutorial. IEEE Trans. on Computer Graphics and Applications,2000,20(5):20-27.
  • 5Schroeder WJ, Martin KM, Lorensen WE. The design and implementation of an object-oriented toolkit for 3D graphics and visualization. In: Nielson GM, Yagel R. eds. Proc. of the IEEE Visualization'96. IEEE Computer Society Press, 1996.93-100.
  • 6Ibanez L, Schroeder W. The ITK Software Guide: The Insight Segmentation and Registration Toolkit. Version 1.4, New York:Lydia Ng and Josh Cates Publisher by Kitware, Inc., 2003.
  • 7Gamma E, Helm R, Johnson R, Vlissides J. Design Patterns, Elements of Reusable Object-Oriented Software. Boston:Addison-Wesley Pub Co., 1995.
  • 8Resk-Salama C, Engel K, Bauer M, Greiner G, Ertl T. Interactive volume rendering on standard PC graphics hardware using multi-textures and multi-stage-rasterization. In: Spencer SN, ed. Proc. of the Eurographics/SIGGRAPH Workshop on Graphics Hardware 2000. New York: ACM Press, 2000. 109-118.
  • 9Engel K, Kraus M, Ertl T. High-Quality pre-integrated volume rendering using hardware accelerated pixel shading. In: Pfister H, ed.Proc. of the Eurographics/SIGGRAPH Workshop on Graphics Hardware 2001. New York: ACM Press, 2001.9-16.
  • 10Lacroute P, Levoy M. Fast volume rendering using a shear-warp factorization of the viewing transformation. In: Glassner A, ed.Proc. of the SIGGRAPH'94. New York: ACM Press, 2000. 451-458.

二级参考文献17

  • 1Keppel, E. Approximating complex surfaces by triangulation of contour lines. IBM Journal of Research and Development, 1975, 19(1):2~11.
  • 2Fuchs, H. Optimal surface reconstruction from planar contours. Communications of the ACM, 1977,20(10):693~702.
  • 3Ekoule, A.B. A triangulation algorithm from arbitrary shaped multiple planar contours. ACM Transactions on Graphics, 1991,10(2): 182~191.
  • 4Herman, G.T, Liu, H.K. Three-Dimensional display of human organs form computed tomography. Computer Graphics & Image Processing, 1979,9(1):1~29.
  • 5Lorensen, W.E., Cline, H.E. Marching cubes: a high resolution 3D surface construction algorithm. Computer Graphics, 1987, 21(4):163~169.
  • 6Wallin, A. Constructing isosurfaces from CT data. IEEE Computer Graphics & Application, 1991,11(5):28~33.
  • 7Schroeder, W.J., Zarge, J.A., Lorensen, W.E., Decimation of triangle meshes. Computer Graphics, 1992,26(2):65~70.
  • 8Shu, R., Zhou, C., Kankanhalli, M.S., Adaptive marching cubes. The Visual Computer, 1995,11(4):202-217.
  • 9Montani, C., Scateni, R., Scopigno, R. Discretized marching cubes. In: Bergeron, R.D., Kaufman, A.E., eds. Proceedings of the Visualization '94, 1994. 281~287.
  • 10Wilhelms, J., VanGelder A. Octree for faster isosurface generation. ACM Transactions on Graphics, 1992,11(3):201~227.

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