DocumentCode
66641
Title
Exploration of the Brain’s White Matter Structure through Visual Abstraction and Multi-Scale Local Fiber Tract Contraction
Author
Everts, Maarten H. ; Begue, Eric ; Bekker, Henk ; Roerdink, Jos B. T. M. ; Isenberg, Tobias
Author_Institution
TNO, Delft, Netherlands
Volume
21
Issue
7
fYear
2015
fDate
July 1 2015
Firstpage
808
Lastpage
821
Abstract
We present a visualization technique for brain fiber tracts from DTI data that provides insight into the structure of white matter through visual abstraction. We achieve this abstraction by analyzing the local similarity of tract segment directions at different scales using a stepwise increase of the search range. Next, locally similar tract segments are moved toward each other in an iterative process, resulting in a local contraction of tracts perpendicular to the local tract direction at a given scale. This not only leads to the abstraction of the global structure of the white matter as represented by the tracts, but also creates volumetric voids. This increase of empty space decreases the mutual occlusion of tracts and, consequently, results in a better understanding of the brain´s three-dimensional fiber tract structure. Our implementation supports an interactive and continuous transition between the original and the abstracted representations via various scale levels of similarity. We also support the selection of groups of tracts, which are highlighted and rendered with the abstracted visualization as context.
Keywords
brain; data visualisation; medical image processing; 3D fiber tract structure; DTI data; brain fiber tract visualization technique; brain white matter structure; multiscale local fiber tract contraction; tract segment directions; visual abstraction; Abstracts; Data visualization; Diffusion tensor imaging; Nerve fibers; Tensile stress; Vectors; Visualization; Diffusion Tensor Imaging (DTI); Diffusion tensor imaging (DTI); fiber tracts; illustrative visualization; multi-scale representation; visual abstraction;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2015.2403323
Filename
7042344
Link To Document