DocumentCode
2036826
Title
Visualization of segmented cardiac anatomy with accelerated rendering method
Author
Yang, F. ; Zuo, W.M. ; Wang, K.Q. ; Zhang, H.
Author_Institution
Harbin Inst. of Technol., Harbin, China
fYear
2009
fDate
13-16 Sept. 2009
Firstpage
789
Lastpage
792
Abstract
Volume rendering of 3D anatomical and medical data would be valuable in medical diagnosis and surgical planning. In this paper, we investigated the visualization of the segmented heart obtained by the cross-sectional data from the Visible Human Project, and proposed an accelerated rendering method to speed up the original ray-casting rendering method. To provide a satisfactory visualization quality on the shape and boundary of cardiac tissues, we designed the transfer function and assigned an appreciate opacity and color value for each kind of tissue. In interactive visualization, we adopt the ray casting algorithm of volume rendering and modify it to accelerate the rendering speed. We also provide the fundamental rotation and zooming operations in the visualization platform, and further implement an interface to display three regular views of the volume data. Furthermore, a clipping plane tool is provided to crop the heart at arbitrary point of view.
Keywords
biological tissues; cardiology; image segmentation; medical image processing; opacity; optical transfer function; rendering (computer graphics); Visible Human Project; accelerated rendering method; cardiac anatomy; cardiac tissue boundary; cardiac tissue shape; clipping plane tool; color value; fundamental rotation operation; fundamental zooming operation; image segmentation; interactive visualization; medical diagnosis; opacity; ray casting algorithm; surgical planning; transfer function; visualization quality; volume rendering; Acceleration; Anatomy; Data visualization; Heart; Humans; Medical diagnosis; Medical diagnostic imaging; Rendering (computer graphics); Shape; Surgery;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers in Cardiology, 2009
Conference_Location
Park City, UT
ISSN
0276-6547
Print_ISBN
978-1-4244-7281-9
Electronic_ISBN
0276-6547
Type
conf
Filename
5445266
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