Title :
A Lightweight Tangible 3D Interface for Interactive Visualization of Thin Fiber Structures
Author :
Jackson, Brian ; Tung Yuen Lau ; Schroeder, Damien ; Toussaint, Kimani C. ; Keefe, Daniel F.
Author_Institution :
Univ. of Minnesota, Minneapolis, MN, USA
Abstract :
We present a prop-based, tangible interface for 3D interactive visualization of thin fiber structures. These data are commonly found in current bioimaging datasets, for example second-harmonic generation microscopy of collagen fibers in tissue. Our approach uses commodity visualization technologies such as a depth sensing camera and low-cost 3D display. Unlike most current uses of these emerging technologies in the games and graphics communities, we employ the depth sensing camera to create a fish-tank sterePoscopic virtual reality system at the scientist´s desk that supports tracking of small-scale gestures with objects already found in the work space. We apply the new interface to the problem of interactive exploratory visualization of three-dimensional thin fiber data. A critical task for the visual analysis of these data is understanding patterns in fiber orientation throughout a volume.The interface enables a new, fluid style of data exploration and fiber orientation analysis by using props to provide needed passive-haptic feedback, making 3D interactions with these fiber structures more controlled. We also contribute a low-level algorithm for extracting fiber centerlines from volumetric imaging. The system was designed and evaluated with two biophotonic experts who currently use it in their lab. As compared to typical practice within their field, the new visualization system provides a more effective way to examine and understand the 3D bioimaging datasets they collect.
Keywords :
biological tissues; biology computing; cameras; data analysis; data visualisation; feature extraction; haptic interfaces; proteins; stereo image processing; virtual reality; 3D bioimaging datasets; 3D interactive visualization; bioimaging datasets; biophotonic experts; collagen fibers; commodity visualization technology; data exploration; depth sensing camera; fiber centerline extraction; fiber orientation; fiber orientation analysis; fish-tank stereposcopic virtual reality system; graphics community; interactive exploratory visualization system; interactive visualization; lightweight tangible 3D interface; low-cost 3D display; low-level algorithm; passive-haptic feedback; scientist desk; second-harmonic generation microscopy; small-scale gesture tracking; thin fiber structures; three-dimensional thin fiber data; visual data analysis; volumetric imaging; Data visualization; Microscopy; Three dimensional displays; 3D interaction; Data visualization; Microscopy; Scientific visualization; Three dimensional displays; microscopy visualization; tangible interaction; Algorithms; Computer Graphics; Fibrillar Collagens; Image Enhancement; Image Interpretation, Computer-Assisted; Imaging, Three-Dimensional; Microscopy; Nanofibers; Reproducibility of Results; Sensitivity and Specificity; User-Computer Interface;
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
DOI :
10.1109/TVCG.2013.121