DocumentCode
1943043
Title
Fingerprint Deformation Models Using Minutiae Locations and Orientations
Author
Chen, Yi ; Dass, Sarat ; Ross, Arun ; Jain, Anil
Author_Institution
Dept. of Comput. Sci. & Eng., Michigan State Univ., East Lansing, MI
Volume
1
fYear
2005
fDate
5-7 Jan. 2005
Firstpage
150
Lastpage
155
Abstract
Nonlinear deformations in fingerprint images, arising from the elasticity of the skin as well as the pressure and movement of the finger during image acquisition, lead to difficulties in establishing a match between multiple impressions acquired from the same finger. One solution to this problem is to estimate and remove the relative deformations prior to the matching stage. In this paper, these relative deformations are represented as an average deformation model based on minutiae locations and orientations using 2-D thin plate splines (TPS). The estimated average deformation is used to pre-distort a template prior to matching it with a query image in a verification task. Experimental results show that the use of minutiae locations and orientations to estimate the deformation leads to a more representative deformation model than using minutiae locations only. An index of deformation based on the bending energy is also proposed to select templates with the least variability in the deformations. The EER goes down by ap 1.1% when we incorporate minutiae orientation information and use the template selection strategy.
Keywords
fingerprint identification; image matching; splines (mathematics); 2D thin plate splines; bending energy; fingerprint deformation models; fingerprint images; image acquisition; minutiae locations; minutiae orientations; query image; skin elasticity; Automatic control; Computer science; Deformable models; Elasticity; Fingerprint recognition; Fingers; Image matching; Moisture; Nonlinear distortion; Skin;
fLanguage
English
Publisher
ieee
Conference_Titel
Application of Computer Vision, 2005. WACV/MOTIONS '05 Volume 1. Seventh IEEE Workshops on
Conference_Location
Breckenridge, CO
Print_ISBN
0-7695-2271-8
Type
conf
DOI
10.1109/ACVMOT.2005.54
Filename
4129474
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