会议论文详细信息
5th International Conference on Mathematical Modeling in Physical Sciences
User Aligned Histogram Stacks for Visualization of Abdominal Organs via MRI
物理学;数学
Özdemir, M.^1 ; Akay, O.^2 ; Güzeli, C.^3 ; Dicle, O.^4 ; Selver, M.A.^2
Institute of Natural and Applied Sciences, Dokuz Eylul University, Kaynaklar Campus, Buca, Izmir
35160, Turkey^1
Department of Electrical and Electronics Engineering, Dokuz Eylul University, Kaynaklar Campus, Buca, Izmir
35160, Turkey^2
Department of Electrical and Electronics Engineering, Yaar University, Selçuk Campus, Bornova, Izmir
35320, Turkey^3
Department of Radiology, Faculty of Medicine, Dokuz Eylul University, Balçova, Izmir, Turkey^4
关键词: Abdominal organs;    Gaussian Mixture Model;    Local information;    Multi dimensional transfer functions;    Multiplanar reconstruction;    Priori information;    Tissue specifics;    Two-step approach;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/738/1/012122/pdf
DOI  :  10.1088/1742-6596/738/1/012122
来源: IOP
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【 摘 要 】

Multi-dimensional transfer functions (MDTF) are occasionally designed as two-step approaches. At the first step, the constructed domain is modelled coarsely using global volume statistics and an initial transfer function (TF) is designed. Then, a finer classification is performed using local information to refine the TF design. In this study, both a new TF domain and a novel two-step MDTF strategy are proposed for visualization of abdominal organs. The proposed domain is generated by aligning the histograms of the slices, which are reconstructed based on user aligned majority axis/regions through an interactive Multi-Planar Reconstruction graphical user interface. It is shown that these user aligned histogram stacks (UAHS) exploit more a priori information by providing tissue specific inter-slice spatial domain knowledge. For initial TF design, UAHS are approximated using a multi-scale hierarchical Gaussian mixture model, which is designed to work in quasi real time. Then, a finer classification step is carried out for refinement of the initial result. Applications to several MRI data sets acquired with various sequences demonstrate improved visualization of abdomen.

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