Most biological approaches to disparity extraction rely on the disparity energy model (DEM). In this paper we present an alternative approach which can complement the DEM model. This approach is based on the multiscale coding of lines and edges, because surface structures are composed of lines and edges and contours of objects often cause edges against their background. We show that the line/edge approach can be used to create a 3D wireframe representation of a scene and the objects therein. It can also significantly improve the accuracy of the DEM model, such that our biological models can compete with some state-of-the-art algorithms from computer vision
In this paper we present an improved scheme for line and edge detection in cortical area V1, based o...
Purpose: Our aim is obtaining a dense and reliable disparity map from a stereoscopic pair under any...
The depth cue is a fundamental piece of information for artificial and living beings who interact wi...
Most biological approaches to disparity extraction rely on the disparity energy model (DEM). In thi...
A biological disparity energy model can estimate local depth information by using a population of V...
Depth information using the biological Disparity Energy Model can be obtained by using a population ...
The visual cortex is able to extract disparity information through the use of binocular cells. This ...
Lines and edges provide important information for object categorization and recognition. In addition...
Disparity energy models (DEMs) estimate local depth information on the basis ofVl complex cells. Our...
The visual cortex is able to extract disparity information through the use of binocular cells. This ...
Models of visual perception are based on image representations in cortical area V1 and higher areas...
We present a 3D representation that is based on the pro- cessing in the visual cortex by simple, co...
AbstractA computational simulation of the early stages of mammalian visual processing, from the reti...
We are developing a frontend that is based on the image representation in the visual cortex and pla...
Complex Gabor filters with phases in quadrature are often used to model even- and odd-symmetric simp...
In this paper we present an improved scheme for line and edge detection in cortical area V1, based o...
Purpose: Our aim is obtaining a dense and reliable disparity map from a stereoscopic pair under any...
The depth cue is a fundamental piece of information for artificial and living beings who interact wi...
Most biological approaches to disparity extraction rely on the disparity energy model (DEM). In thi...
A biological disparity energy model can estimate local depth information by using a population of V...
Depth information using the biological Disparity Energy Model can be obtained by using a population ...
The visual cortex is able to extract disparity information through the use of binocular cells. This ...
Lines and edges provide important information for object categorization and recognition. In addition...
Disparity energy models (DEMs) estimate local depth information on the basis ofVl complex cells. Our...
The visual cortex is able to extract disparity information through the use of binocular cells. This ...
Models of visual perception are based on image representations in cortical area V1 and higher areas...
We present a 3D representation that is based on the pro- cessing in the visual cortex by simple, co...
AbstractA computational simulation of the early stages of mammalian visual processing, from the reti...
We are developing a frontend that is based on the image representation in the visual cortex and pla...
Complex Gabor filters with phases in quadrature are often used to model even- and odd-symmetric simp...
In this paper we present an improved scheme for line and edge detection in cortical area V1, based o...
Purpose: Our aim is obtaining a dense and reliable disparity map from a stereoscopic pair under any...
The depth cue is a fundamental piece of information for artificial and living beings who interact wi...