DocumentCode
2857493
Title
3D model supported virtual environment for prostate disease interpretation and biopsy design
Author
Wang, Yue ; Ding, Haizhou ; Xuan, Jianhua ; Sesterhenn, I.A. ; Moul, J.W. ; Mun, S.K.
Author_Institution
Electr. Eng. & Comput. Sci., Catholic Univ. of America, Washington, DC, USA
fYear
1998
fDate
1998
Firstpage
436
Lastpage
441
Abstract
The diagnosis of localized prostate cancer is carried out by standard core needle biopsies under guidance of transrectal ultrasound imaging of the prostate gland. This paper describes a 3D model supported virtual environment for prostate cancer diagnosis and biopsy design. A 3D deformable reconstruction algorithm is developed to define an object surface from digitally-imaged surgical specimens. A virtual environment with a multimodal visualization capability is integrated to simulate prostate biopsy protocols. The new system permits an accurate graphical modeling of the object of interest, the localization and quantification of tumors, and the definition of the pathways of biopsy needles. The technique allows the medical experts to probe and manipulate the data in 3D view space and to evaluate the performance of simulated biopsies subsequently optimize biopsy techniques. Results and analysis of our experiments demonstrate the effectiveness of the individual modular components of the approach. We conclude with an application of the complete framework to a prostate biopsy simulation and evaluation task
Keywords
biomedical ultrasonics; cancer; data visualisation; digital simulation; image reconstruction; medical image processing; stereo image processing; tumours; 3D deformable reconstruction algorithm; 3D model supported virtual environment; 3D view space; accurate graphical modeling; biopsy needle pathways; core needle biopsies; data manipulation; digitally-imaged surgical specimens; localized prostate cancer diagnosis; modular components; multimodal visualization capability; object surface definition; performance evaluation; prostate biopsy protocol simulation; prostate disease biopsy design; prostate disease interpretation; prostate gland; transrectal ultrasound imaging; tumor localization; tumor quantification; Biopsy; Diseases; Glands; Medical simulation; Needles; Prostate cancer; Reconstruction algorithms; Surface reconstruction; Ultrasonic imaging; Virtual environment;
fLanguage
English
Publisher
ieee
Conference_Titel
Medical Technology Symposium, 1998. Proceedings. Pacific
Conference_Location
Honolulu, HI
Print_ISBN
0-8186-8667-7
Type
conf
DOI
10.1109/PACMED.1998.769990
Filename
769990
Link To Document