DocumentCode
963309
Title
Cerebral: Visualizing Multiple Experimental Conditions on a Graph with Biological Context
Author
Barsky, Aaron ; Munzner, Tamara ; Gardy, Jennifer ; Kincaid, Robert
Author_Institution
Dept. of Comput. Sci., Univ. of British Columbia, Vancouver, BC
Volume
14
Issue
6
fYear
2008
Firstpage
1253
Lastpage
1260
Abstract
Systems biologists use interaction graphs to model the behavior of biological systems at the molecular level. In an iterative process, such biologists observe the reactions of living cells under various experimental conditions, view the results in the context of the interaction graph, and then propose changes to the graph model. These graphs serve as a form of dynamic knowledge representation of the biological system being studied and evolve as new insight is gained from the experimental data. While numerous graph layout and drawing packages are available, these tools did not fully meet the needs of our immunologist collaborators. In this paper, we describe the data information display needs of these immunologists and translate them into design decisions. These decisions led us to create Cerebral, a system that uses a biologically guided graph layout and incorporates experimental data directly into the graph display. Small multiple views of different experimental conditions and a data-driven parallel coordinates view enable correlations between experimental conditions to be analyzed at the same time that the data is viewed in the graph context. This combination of coordinated views allows the biologist to view the data from many different perspectives simultaneously. To illustrate the typical analysis tasks performed, we analyze two datasets using Cerebral. Based on feedback from our collaborators we conclude that Cerebral is a valuable tool for analyzing experimental data in the context of an interaction graph model.
Keywords
biology computing; data visualisation; decision theory; graph theory; iterative methods; knowledge representation; biological system; cerebral tool; data information display; design decision; drawing package; dynamic knowledge representation; interaction graph layout; iterative process; living cells reaction observation; multiple experimental condition visualization; Biological system modeling; Biological systems; Cells (biology); Collaborative tools; Context modeling; Data analysis; Displays; Immune system; Performance analysis; Visualization; Graph layout; Index Terms— design study; small multiples; systems biology visualization; Biology; Computer Graphics; Computer Simulation; Models, Biological; Proteome; Signal Transduction; Software; User-Computer Interface;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2008.117
Filename
4658137
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