Article (Scientific journals)
Impact of geometry and viewing angle on classification accuracy of 2D based analysis of dysmorphic faces
Vollmar, Tobias; Maus, Bärbel; Wurtz, R. P. et al.
2008In European Journal of Medical Genetics, 51 (1), p. 44-53
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Keywords :
Automated pattern recognition; Computer-assisted diagnosis; Classification; Dysmorphism; Face
Abstract :
[en] Digital image analysis of faces has been demonstrated to be effective in a small number of syndromes. In this paper we investigate several aspects that help bringing these methods closer to clinical application. First, we investigate the impact of increasing the number of syndromes from 10 to 14 as compared to an earlier study. Second, we include a side-view pose into the analysis and third, we scrutinize the effect of geometry information. Picture analysis uses a Gabor wavelet transform, standardization of landmark coordinates and subsequent statistical analysis. We can demonstrate that classification accuracy drops from 76% for 10 syndromes to 70% for 14 syndromes for frontal images. Including side-views achieves an accuracy of 76% again. Geometry performs excellently with 85% for combined poses. Combination of wavelets and geometry for both poses increases accuracy to 93%. In conclusion, a larger number of syndromes can be handled effectively by means of image analysis.
Disciplines :
Genetics & genetic processes
Author, co-author :
Vollmar, Tobias
Maus, Bärbel ;  Université de Liège - ULiège > Dép. d'électric., électron. et informat. (Inst.Montefiore) > Bioinformatique
Wurtz, R. P.
Gillessen-Kaesbach, G.
Horsthemke, B.
Wieczorek, D.
Boehringer, S.
Language :
English
Title :
Impact of geometry and viewing angle on classification accuracy of 2D based analysis of dysmorphic faces
Publication date :
2008
Journal title :
European Journal of Medical Genetics
ISSN :
1769-7212
eISSN :
1878-0849
Publisher :
Elsevier Science
Volume :
51
Issue :
1
Pages :
44-53
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 09 March 2012

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