DocumentCode
139149
Title
A fast narrow band level set formulation for shape extraction
Author
Bindu, V.R. ; Nair, K. N. Ramachandran
Author_Institution
Sch. of Comput. Sci., Mahatma Gandhi Univ., Kottayam, India
fYear
2014
fDate
17-19 Feb. 2014
Firstpage
137
Lastpage
142
Abstract
Shape modeling is an active area of research in Computer Graphics and Computer Vision. Shape models aid in the representation and recognition of arbitrarily complex shapes. This paper proposes a fast and computationally efficient narrow band level set algorithm for recovering arbitrary shapes of objects from various types of image data. The overall computational cost is reduced by using a five grid point wide narrow band applied on a variational level set formulation that can be easily implemented by simple finite difference scheme. The proposed method is more efficient and has many advantages when compared to traditional level set formulations. The periodical reinitialization of the level set function to a signed distance function is completely avoided. Implementation by simple finite difference scheme reduces computational complexity and ensures faster curve evolution. The level set function is initialized to an arbitrary region in the image domain. The region based initialization is computationally more efficient and flexible. This formulation can form the basis of a shape modeling scheme for implementing solid modeling techniques on free form shapes set in a level set framework. The proposed method has been applied to extract shapes from both synthetic and real images including some low contrast medical images, with promising results.
Keywords
computational complexity; computer vision; feature extraction; finite difference methods; image representation; medical image processing; set theory; shape recognition; solid modelling; arbitrarily complex shape recognition; arbitrarily complex shape representation; computational complexity; computer graphics; computer vision; curve evolution; fast narrow band level set formulation; finite difference scheme; grid point wide narrow band; level set function; low contrast medical images; shape extraction; shape modeling scheme; solid modeling techniques; variational level set formulation; Active contours; Computational efficiency; Computational modeling; Level set; Mathematical model; Shape; Solid modeling; level set method; narrow band; shape modeling;
fLanguage
English
Publisher
ieee
Conference_Titel
Applications of Digital Information and Web Technologies (ICADIWT), 2014 Fifth International Conference on the
Conference_Location
Bangalore
Print_ISBN
978-1-4799-2258-1
Type
conf
DOI
10.1109/ICADIWT.2014.6814664
Filename
6814664
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