DocumentCode
1818426
Title
Interference microscopy volume illustration for biomedical data
Author
Guo, Hanqi ; Yuan, Xiaoru ; Liu, Jie ; Shan, Guihua ; Chi, Xuebin ; Sun, Fei
Author_Institution
Key Lab. of Machine Perception (Minist. of Educ.), Peking Univ., Beijing, China
fYear
2012
fDate
Feb. 28 2012-March 2 2012
Firstpage
177
Lastpage
184
Abstract
In this paper, we propose a novel volume illustration technique inspired by interference microscopy, which has been successfully used in biological, medical and material science over decades. Our approach simulates the optical phenomenon in interference microscopy that accounts light interference over transparent specimens, in order to generate contrast enhanced and illustrative volume visualization results. Specifically, we propose PCVR (Phase- Contrast Volume Rendering) and DICVR (Differential Interference Contrast Volume Rendering) corresponding to Phase-Contrast microscopy and Differential Interference Contrast (DIC) microscopy respectively. Without complex transfer function design, our proposed method can enhance the image contrast and structure details according to the subtle change of Optical Path Differences (OPD), and illustrate the thickness change and occluded structures with interferometry metaphors. In addition, we also develop a user interface to enable slicing specimen sections in volume data. Focus+ context lens are also included in the system for convenient data navigation and exploration. As the proposed methods are based upon widely applied microscopy techniques, they are intuitive for domain experts to explore and analyze the volume data with the proposed methods. The feedbacks from domain users suggest our proposed techniques are useful volume visualization approaches complimentary to the traditional ones.
Keywords
data visualisation; image enhancement; medical image processing; microscopy; rendering (computer graphics); user interfaces; Focus+ context lens; biological science; biomedical data; data exploration; data navigation; differential interference contrast microscopy; differential interference contrast volume rendering; image contrast enhancement; interference microscopy volume illustration technique; material science; medical science; optical path difference; optical phenomenon; phase-contrast microscopy; phase-contrast volume rendering; transfer function design; user interface; volume visualization; Data visualization; Interference; Microscopy; Optical imaging; Optical microscopy; Optical refraction; Rendering (computer graphics); Volume illustration; biomedical visualization; feature enhancement; interference microscopy; volume rendering;
fLanguage
English
Publisher
ieee
Conference_Titel
Visualization Symposium (PacificVis), 2012 IEEE Pacific
Conference_Location
Songdo
ISSN
2165-8765
Print_ISBN
978-1-4673-0863-2
Electronic_ISBN
2165-8765
Type
conf
DOI
10.1109/PacificVis.2012.6183589
Filename
6183589
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