DocumentCode
3173551
Title
Non-rigid Registration in 3D Implicit Vector Space
Author
Cheng, Zhi-Quan ; Jiang, Wei ; Dang, Gang ; Martin, Ralph R. ; Li, Jun ; Li, Honghua ; Chen, Yin ; Wang, Yanzhen ; Li, Bao ; Xu, Kai ; Jin, Shiyao
Author_Institution
PDL Lab., Nat. Univ. of Defense Technol., Changsha, China
fYear
2010
fDate
21-23 June 2010
Firstpage
37
Lastpage
46
Abstract
We present an implicit approach for pair-wise non-rigid registration of moving and deforming objects. Shapes of interest are implicitly embedded in the 3D implicit vector space. In this implicit embedding space, registration is performed using a global-to-local framework. Firstly, a non-linear optimization functional defined on the vector distance function is used to find the global alignment between shapes. Secondly, an incremental cubic B-spline free form deformation is used to recover the non-rigid transformation parameters. Local non-rigid registration is posed in terms of minimising an energy functional, for which we give a closed-form linear system and solve it using an improved iterative Gauss-Seidel method. Our approach can consistently produce smooth and continuous registration fields, and correctly establish dense one-to-one correspondences. It can naturally deal with both open partial and closed shapes, and imperfect models with gaps and noise, through its use of the implicit vector representation. Experimental results on several datasets demonstrate the robustness of the proposed method.
Keywords
deformation; image registration; iterative methods; nonlinear programming; 3D implicit vector space nonrigid registration; closed-form linear system; energy functional; implicit vector representation; improved iterative Gauss-Seidel method; incremental cubic B-spline freeform deformation; local nonrigid registration; nonlinear optimization functional; nonrigid transformation parameters; pairwise nonrigid registration; vector distance function; Computer science; Deformable models; Informatics; Laboratories; Noise shaping; Page description languages; Shape; Space technology; Spline; Vectors; Non-rigid registration; dense correspondence; global alignment; implicit vector space; vector distance function;
fLanguage
English
Publisher
ieee
Conference_Titel
Shape Modeling International Conference (SMI), 2010
Conference_Location
Aix-en-Provence
Print_ISBN
978-1-4244-7259-8
Electronic_ISBN
978-1-4244-7260-4
Type
conf
DOI
10.1109/SMI.2010.21
Filename
5521447
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