Efficient opacity specification based on feature visibilities in direct volume rendering

被引:15
|
作者
Wang, Yunhai [1 ,2 ,3 ]
Zhang, Jian [1 ]
Chen, Wei [4 ]
Zhang, Huai [2 ]
Chi, Xuebin [1 ]
机构
[1] Chinese Acad Sci, Comp Network Informat Ctr, Beijing 100864, Peoples R China
[2] Chinese Acad Sci, Grad Univ, Beijing 100864, Peoples R China
[3] Chinese Acad Sci, Shenzhen Inst Adv Technol, Beijing 100864, Peoples R China
[4] Zhejiang Univ, State Key Lab CAD&CG, Hangzhou, Zhejiang, Peoples R China
基金
中国国家自然科学基金;
关键词
D O I
10.1111/j.1467-8659.2011.02045.x
中图分类号
TP31 [计算机软件];
学科分类号
081202 ; 0835 ;
摘要
Due to 3D occlusion, the specification of proper opacities in direct volume rendering is a time-consuming and unintuitive process. The visibility histograms introduced by Correa and Ma reflect the effect of occlusion by measuring the influence of each sample in the histogram to the rendered image. However, the visibility is defined on individual samples, while volume exploration focuses on conveying the spatial relationships between features. Moreover, the high computational cost and large memory requirement limits its application in multi-dimensional transfer function design. In this paper, we extend visibility histograms to feature visibility, which measures the contribution of each feature in the rendered image. Compared to visibility histograms, it has two distinctive advantages for opacity specification. First, the user can directly specify the visibilities for features and the opacities are automatically generated using an optimization algorithm. Second, its calculation requires only one rendering pass with no additional memory requirement. This feature visibility based opacity specification is fast and compatible with all types of transfer function design. Furthermore, we introduce a two-step volume exploration scheme, in which an automatic optimization is first performed to provide a clear illustration of the spatial relationship and then the user adjusts the visibilities directly to achieve the desired feature enhancement. The effectiveness of this scheme is demonstrated by experimental results on several volumetric datasets.
引用
收藏
页码:2117 / 2126
页数:10
相关论文
共 50 条
  • [31] Direct rendering of deformable volume data
    Fang, SF
    Srinivasan, R
    IMAGE DISPLAY - MEDICAL IMAGING 1997, 1997, 3031 : 37 - 48
  • [32] Direct volume rendering of unstructured grids
    Berk, H
    Aykanat, C
    Güdükbay, U
    COMPUTERS & GRAPHICS-UK, 2003, 27 (03): : 387 - 406
  • [34] VOLUME RENDERING OF 3D MEDICAL ULTRASOUND DATA USING DIRECT FEATURE MAPPING
    STEEN, E
    OLSTAD, B
    IEEE TRANSACTIONS ON MEDICAL IMAGING, 1994, 13 (03) : 517 - 525
  • [35] Efficient generation of isosurfaces in volume rendering
    Chuang, JH
    Lee, WC
    COMPUTERS & GRAPHICS-UK, 1995, 19 (06): : 805 - 813
  • [36] Functional analysis of the vertebral column based on MR and direct volume rendering
    Hastreiter, P
    Rezk-Salama, C
    Eberhardt, K
    Tomandl, B
    Ertl, T
    MEDICAL IMAGE COMPUTING AND COMPUTER-ASSISTED INTERVENTION - MICCAI 2000, 2000, 1935 : 412 - 421
  • [37] Image-Based TF Colorization With CNN for Direct Volume Rendering
    Kim, Seokyeon
    Jang, Yun
    Kim, Seung-Eock
    IEEE ACCESS, 2021, 9 : 124281 - 124294
  • [38] New technique for transfer function specification in direct volume rendering using real-time visual feedback
    Botha, CP
    Post, FH
    MEDICAL IMAGING 2002: VISUALIZATION, IMAGE-GUIDED PROCEDURES, AND DISPLAY, 2002, 4681 : 349 - 356
  • [39] Deep Learning Based Super-Resolution for Medical Volume Visualization with Direct Volume Rendering
    Devkota, Sudarshan
    Pattanaik, Sumanta
    ADVANCES IN VISUAL COMPUTING, ISVC 2022, PT I, 2022, 13598 : 103 - 114
  • [40] OPTICAL-MODELS FOR DIRECT VOLUME RENDERING
    MAX, N
    IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS, 1995, 1 (02) : 99 - 108