A Two-Stage Matching Method for Multi-Component Shapes
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Date
2015
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Univ Suceava, Fac Electrical Eng
Open Access Color
GOLD
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
In this paper a shape matching algorithm for multiple component objects has been proposed which aims at matching shapes by a two-stage method. The first stage extracts the similarity features of each component using a generic shape representation model. The first stage of our shape matching method normalizes the components for orientation and scaling, and neglects minor deformations. In the second stage, the extracted similarity features of the components are combined with their relative spatial characteristics for shape matching. Some important application areas for the proposed multi-component shape matching are medical image registration, content based medical image retrieval systems, and matching articulated objects which rely on the a-priori information of the model being searched. In these applications, salient features such as vertebrae or rib cage bones can be easily segmented and used. These features however, show differences from person to person on one hand and similarities at different cross-sectional images of the same examination on the other hand. The proposed method has been tested on articulated objects, and reliable registration of 3-dimensional abdominal computed tomography images.
Description
Keywords
Shape Matching, Articulated Shape Matching, Medical Image Processing, TK7885-7895, Computer engineering. Computer hardware, shape matching, articulated shape matching, Electrical engineering. Electronics. Nuclear engineering, medical image processing, TK1-9971
Fields of Science
0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology
Citation
Hassanpour, Reza, "A Two-Stage Matching Method for Multi-Component Shapes", Advances in Electrical and Computer Engineering, 15, No. 1, pp. 143-150, (2013).
WoS Q
Q4
Scopus Q
Q3

OpenCitations Citation Count
N/A
Source
Advances in Electrical and Computer Engineering
Volume
15
Issue
1
Start Page
143
End Page
150
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Scopus : 0
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Mendeley Readers : 1
Page Views
3
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