International audienceHere we show that reproducing the functional properties of MT cells with various center--surround interactions enriches motion representation and improves the action recognition performance. To do so, we propose a simplified bio--inspired model of the motion pathway in primates: It is a feedforward model restricted to V1-MT cortical layers, cortical cells cover the visual space with a foveated structure, and more importantly, we reproduce some of the richness of center-surround interactions of MT cells. Interestingly, as observed in neurophysiology, our MT cells not only behave like simple velocity detectors, but also respond to several kinds of motion contrasts. Results show that this diversity of motion representatio...
This thesis addresses the study of the motion perception in primates. We propose that scaling up the...
We propose V1 and MT functional models for biological motion recognition. Our V1 model transforms a ...
We propose V1 and MT functional models for biological motion recognition. Our V1 model transforms a ...
International audienceHere we show that reproducing the functional properties of MT cells with vario...
International audienceHere we show that reproducing the functional properties of MT cells with vario...
International audienceMotion is a key feature for a wide class of computer vision approaches to reco...
International audienceObject motion can be measured locally by neurons at different stages of the vi...
International audienceObject motion can be measured locally by neurons at different stages of the vi...
This thesis addresses the study of the motion perception in mammals and how bio-inspired systems can...
The visual recognition of complex movements and actions is crucial for communication and survival ...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
We present a biologically-motivated system for the recognition of actions from video sequences. The ...
Copyright © 2011 Jan D. Bouecke et al. This is an open access article distributed under the Creative...
This thesis addresses the study of the motion perception in primates. We propose that scaling up the...
We present a biologically-motivated system for the recognition of actions from video sequences. The ...
This thesis addresses the study of the motion perception in primates. We propose that scaling up the...
We propose V1 and MT functional models for biological motion recognition. Our V1 model transforms a ...
We propose V1 and MT functional models for biological motion recognition. Our V1 model transforms a ...
International audienceHere we show that reproducing the functional properties of MT cells with vario...
International audienceHere we show that reproducing the functional properties of MT cells with vario...
International audienceMotion is a key feature for a wide class of computer vision approaches to reco...
International audienceObject motion can be measured locally by neurons at different stages of the vi...
International audienceObject motion can be measured locally by neurons at different stages of the vi...
This thesis addresses the study of the motion perception in mammals and how bio-inspired systems can...
The visual recognition of complex movements and actions is crucial for communication and survival ...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
We present a biologically-motivated system for the recognition of actions from video sequences. The ...
Copyright © 2011 Jan D. Bouecke et al. This is an open access article distributed under the Creative...
This thesis addresses the study of the motion perception in primates. We propose that scaling up the...
We present a biologically-motivated system for the recognition of actions from video sequences. The ...
This thesis addresses the study of the motion perception in primates. We propose that scaling up the...
We propose V1 and MT functional models for biological motion recognition. Our V1 model transforms a ...
We propose V1 and MT functional models for biological motion recognition. Our V1 model transforms a ...