DocumentCode
1986808
Title
Fourier harmonic approach for visualizing temporal patterns of gene expression data
Author
Zhang, Li ; Zhang, Aidong ; Ramanathan, Murali
Author_Institution
Dept. of Comput. Sci. & Eng., State Univ. of New York, USA
fYear
2003
fDate
11-14 Aug. 2003
Firstpage
137
Lastpage
147
Abstract
DNA microarray technology provides a broad snapshot of the state of the cell by measuring the expression levels of thousands of genes simultaneously. Visualization techniques can enable the exploration and detection of patterns and relationships in a complex dataset by presenting the data in a graphical format in which the key characteristics become more apparent. The purpose of this study is to present an interactive visualization technique conveying the temporal patterns of gene expression data in a form intuitive for nonspecialized end-users. The first Fourier harmonic projection (FFHP) was introduced to translate the multidimensional time series data into a two dimensional scatter plot. The spatial relationship of the points reflect the structure of the original dataset and relationships among clusters become two dimensional. The proposed method was tested using two published, array-derived gene expression datasets. Our results demonstrate the effectiveness of the approach.
Keywords
DNA; Fourier transforms; arrays; biology computing; cellular biophysics; data visualisation; genetics; pattern clustering; time series; DNA microarray technology; Fourier harmonic approach; array-derived gene expression datasets; first Fourier harmonic projection; gene expression data temporal patterns; graphical format; living cell; multidimensional time series data; nonspecialized end-users; spatial relationship; two dimensional scatter plot; visualization techniques; Computer science; DNA; Data analysis; Data engineering; Data visualization; Gene expression; Pattern analysis; Pharmaceuticals; Testing; Tree graphs;
fLanguage
English
Publisher
ieee
Conference_Titel
Bioinformatics Conference, 2003. CSB 2003. Proceedings of the 2003 IEEE
Print_ISBN
0-7695-2000-6
Type
conf
DOI
10.1109/CSB.2003.1227313
Filename
1227313
Link To Document