Computing motion on the basis of the time-varying image intensity is a difficult problem for both artificial and biological vision systems. We will show how one well-known gradient-based computer algorithm for estimating visual motion can be implemented within the primate's visual system. This relaxation algorithm computes the optical flow field by minimizing a variational functional of a form commonly encountered in early vision, and is performed in two steps. In the first stage, local motion is computed, while in the second stage spatial integration occurs. Neurons in the second stage represent the optical flow field via a population-coding scheme, such that the vector sum of all neurons at each location codes for the direction and m...
We study the impact of local context of an image (contrast and 2D structure) on spatial motion integ...
International audienceWe propose to extend a state of the art bio-inspired model for optic flow comp...
International audienceWe propose to extend a state of the art bio-inspired model for optic flow comp...
Computing motion on the basis of the time-varying image intensity is a difficult problem for both ar...
Computing motion on the basis of the time-varying image intensity is a difficult problem for both ar...
Computing motion on the basis of the time-varying image intensity is a difficult problem for both ar...
Computing motion on the basis of the time-varying image intensity is a difficult problem for both ar...
Copyright © 2011 Jan D. Bouecke et al. This is an open access article distributed under the Creative...
The analysis of visual motion divides naturally into two stages: the first is the measurement of m...
How does the visual system determine the direction and speed of moving objects? In the primate brain...
tBackground: The visual system in primates can be segregated into motion and shape pathways. Interac...
In the present paper, we propose a neurally-inspired model of the primate motion processing hierarc...
We study the impact of local context of an image (contrast and 2D structure) on spatial motion integ...
We propose to extend a state of the art bio-inspired model for optic flow computation through adapti...
International audienceWe propose to extend a state of the art bio-inspired model for optic flow comp...
We study the impact of local context of an image (contrast and 2D structure) on spatial motion integ...
International audienceWe propose to extend a state of the art bio-inspired model for optic flow comp...
International audienceWe propose to extend a state of the art bio-inspired model for optic flow comp...
Computing motion on the basis of the time-varying image intensity is a difficult problem for both ar...
Computing motion on the basis of the time-varying image intensity is a difficult problem for both ar...
Computing motion on the basis of the time-varying image intensity is a difficult problem for both ar...
Computing motion on the basis of the time-varying image intensity is a difficult problem for both ar...
Copyright © 2011 Jan D. Bouecke et al. This is an open access article distributed under the Creative...
The analysis of visual motion divides naturally into two stages: the first is the measurement of m...
How does the visual system determine the direction and speed of moving objects? In the primate brain...
tBackground: The visual system in primates can be segregated into motion and shape pathways. Interac...
In the present paper, we propose a neurally-inspired model of the primate motion processing hierarc...
We study the impact of local context of an image (contrast and 2D structure) on spatial motion integ...
We propose to extend a state of the art bio-inspired model for optic flow computation through adapti...
International audienceWe propose to extend a state of the art bio-inspired model for optic flow comp...
We study the impact of local context of an image (contrast and 2D structure) on spatial motion integ...
International audienceWe propose to extend a state of the art bio-inspired model for optic flow comp...
International audienceWe propose to extend a state of the art bio-inspired model for optic flow comp...