Interest in the processing of optic flow has increased recently in both the neurophysiological and the psychophysical communities. We have designed a neural network model of the visual motion pathway in higher mammals that detects the direction of heading from optic flow. The model is a neural implementation of the subspace algorithm introduced by Heeger and Jepson (1990). We have tested the network in simulations that are closely related to psychophysical and neurophysiological experiments and show that our results are consistent with recent data from both fields. The network reproduces some key properties of human ego-motion perception. At the same time, it produces neurons that are selective for different components of ego-motion flow fi...
Kern R, Petereit C, Egelhaaf M. Neural processing of naturalistic optic flow. The Journal of Neurosc...
Self-motion generates patterns of optic flow on the retina. Neurons in the dorsal part of the medial...
The stimuli traditionally used for analysing visual information processing are much simpler than wha...
Cells in the dorsal medial superior temporal cortex (MSTd) process optic flow generated by self-moti...
Animals avoid obstacles and approach goals in novel cluttered environments using visual information,...
Abstract. This paper describes a new model for extracting large-field optical flow patterns to gener...
AbstractThe visual motion – or optic flow – that results from an observer's own movement can indicat...
As we move through our environment, the flow of deforming images on the retinae provides a rich sour...
As we move through our environment, the flow of deforming images on the retinae provides a rich sour...
Animals use vision to traverse novel cluttered environments with apparent ease. Evidence suggests th...
As we move through our environment, the flow of deforming images on the retinae provides a rich sour...
A simple and biologically plausible model is proposed to simulate the optic flow computation taking ...
Kern R, Lutterklas M, Petereit C, Lindemann JP, Egelhaaf M. Neuronal processing of behaviourally gen...
AbstractNeurophysiological studies in MSTd report the existence of motion pattern selective cells wh...
AbstractWe present results from computer simulations of a biologically plausible model of heading de...
Kern R, Petereit C, Egelhaaf M. Neural processing of naturalistic optic flow. The Journal of Neurosc...
Self-motion generates patterns of optic flow on the retina. Neurons in the dorsal part of the medial...
The stimuli traditionally used for analysing visual information processing are much simpler than wha...
Cells in the dorsal medial superior temporal cortex (MSTd) process optic flow generated by self-moti...
Animals avoid obstacles and approach goals in novel cluttered environments using visual information,...
Abstract. This paper describes a new model for extracting large-field optical flow patterns to gener...
AbstractThe visual motion – or optic flow – that results from an observer's own movement can indicat...
As we move through our environment, the flow of deforming images on the retinae provides a rich sour...
As we move through our environment, the flow of deforming images on the retinae provides a rich sour...
Animals use vision to traverse novel cluttered environments with apparent ease. Evidence suggests th...
As we move through our environment, the flow of deforming images on the retinae provides a rich sour...
A simple and biologically plausible model is proposed to simulate the optic flow computation taking ...
Kern R, Lutterklas M, Petereit C, Lindemann JP, Egelhaaf M. Neuronal processing of behaviourally gen...
AbstractNeurophysiological studies in MSTd report the existence of motion pattern selective cells wh...
AbstractWe present results from computer simulations of a biologically plausible model of heading de...
Kern R, Petereit C, Egelhaaf M. Neural processing of naturalistic optic flow. The Journal of Neurosc...
Self-motion generates patterns of optic flow on the retina. Neurons in the dorsal part of the medial...
The stimuli traditionally used for analysing visual information processing are much simpler than wha...