DocumentCode
2973843
Title
Multiscale fractal characterization of three-dimensional gene expression data
Author
Manoel, Edson Tadeu M ; Costa, Luciano Da F ; Streicher, Johannes ; Müller, Gerd B.
Author_Institution
Cybern. Vision Res. Group, Univ. de Sao Paulo, Sao Carlos, Brazil
fYear
2002
fDate
2002
Firstpage
269
Lastpage
274
Abstract
This article reports on the application of the recently introduced concept of multiscale fractal dimension (MFD) as a resource for quantifying three-dimensional gene expression patterns in embryonic development. While traditional fractal dimensions provide interesting possibilities for quantifying pattern complexity, as defined by the intensity in which the pattern interacts with its surrounding space, those approaches fail to take into account the important fact that natural objects are not perfectly self-similar. By expressing the fractal behavior explicitly in terms of the spatial scale, the MFD provides a more comprehensive and objective characterization of the complexity of natural data such as gene expression profiles. After presenting the MFD concept as well as a technique for its numerical estimation, the potential of this measure for objectively quantifying gene expression is discussed, and a complete example is provided regarding the three-dimensional expression of the myogenic marker gene Myf5 along successive somites in a mouse embryo. In this specific case, the adopted technique proved itself a useful means for identifying spatial variations of gene expression intensity.
Keywords
biology computing; fractals; genetics; pattern recognition; MFD; embryonic development; fractal dimensions; gene expression intensity; gene expression patterns; multiscale fractal dimension; myogenic marker gene; pattern complexity; Anatomy; Biological system modeling; Biology; Cybernetics; Embryo; Evolution (biology); Fractals; Gene expression; Mice; Morphology;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Graphics and Image Processing, 2002. Proceedings. XV Brazilian Symposium on
ISSN
1530-1834
Print_ISBN
0-7695-1846-X
Type
conf
DOI
10.1109/SIBGRA.2002.1167154
Filename
1167154
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