The authors propose two equations based on the pixel geometry and connectivity properties, which can be used to compute, efficiently, the Euler number of a binary digital image with either thick or thin boundaries. Although computing this feature, the authors' technique extracts the underlying topological information provided by the shape pixels of the given image. The correctness of computing the Euler number using the new equations is also established theoretically. The performance of the proposed method is compared against other available alternatives. Experimental results on a large image database demonstrate that the authors technique for computing the Euler number outperforms the earlier approaches significantly in terms of the number...
Abstract-Aspects of topology and geometry are used in analyzing continuous and discrete binary image...
In the paper, using the concept of invariant transformation of a digital picture (transformation whi...
In this work a concept of index of a point of a 3-D (26, 6) digital image is defined. Basing on this...
The authors propose two equations based on the pixel geometry and connectivity properties, which can...
In this paper an alternative way to compute the (E) Euler number of a binary image via information a...
We describe a method to compute the Euler number of a binary digital image based on a codification o...
The topological properties of binary images are very useful features in the fields of pat-tern recog...
We describe a method to compute the Euler number of a binary digital image based on a codification o...
AbstractWe describe a method to compute the Euler number of a binary digital image based on a codifi...
Most of the proposals to compute the Euler number of a binary image have been designed to work with ...
Most of the proposals to compute the Euler number of a binary image have been designed to work with ...
This paper introduces a novel morphological operator to calculate the Euler number for binary images...
Abstract. Fundamental properties of topological structure of a 3D digitized picture are presented in...
We present an approach to compute the number of holes in binary images using the Vertex Chain Code (...
In this paper a new method to obtain the Euler number of a binary object via its skeleton is present...
Abstract-Aspects of topology and geometry are used in analyzing continuous and discrete binary image...
In the paper, using the concept of invariant transformation of a digital picture (transformation whi...
In this work a concept of index of a point of a 3-D (26, 6) digital image is defined. Basing on this...
The authors propose two equations based on the pixel geometry and connectivity properties, which can...
In this paper an alternative way to compute the (E) Euler number of a binary image via information a...
We describe a method to compute the Euler number of a binary digital image based on a codification o...
The topological properties of binary images are very useful features in the fields of pat-tern recog...
We describe a method to compute the Euler number of a binary digital image based on a codification o...
AbstractWe describe a method to compute the Euler number of a binary digital image based on a codifi...
Most of the proposals to compute the Euler number of a binary image have been designed to work with ...
Most of the proposals to compute the Euler number of a binary image have been designed to work with ...
This paper introduces a novel morphological operator to calculate the Euler number for binary images...
Abstract. Fundamental properties of topological structure of a 3D digitized picture are presented in...
We present an approach to compute the number of holes in binary images using the Vertex Chain Code (...
In this paper a new method to obtain the Euler number of a binary object via its skeleton is present...
Abstract-Aspects of topology and geometry are used in analyzing continuous and discrete binary image...
In the paper, using the concept of invariant transformation of a digital picture (transformation whi...
In this work a concept of index of a point of a 3-D (26, 6) digital image is defined. Basing on this...