This paper describes a bio-inspired algorithm for motion computation based on V1 (Primary Visual Cortex) andMT (Middle Temporal Area) cells. The behavior of neurons in V1 and MT areas contain significant information to understand the perception of motion. From a computational perspective, the neurons are treated as two dimensional filters to represent the receptive fields of simple cells that compose the complex cells. A modified elaborated Reichardt detector, adding an output exponent before the last stage followed by a re-entry stage of modulating feedback from MT, (reciprocal connections of V1 and MT) in a hierarchical framework, is proposed. The endstopped units, where the receptive fields of cells are surrounded by suppres...
In the present paper, we propose a neurally-inspired model of the primate motion processing hierarc...
We developed and tested the architecture of a bio-inspired Spiking Neural Network for motion estimat...
Motion information is required for the solution of many complex tasks of the visual system such as d...
AbstractThe motion response properties of neurons increase in complexity as one moves from primary v...
The visual cortex analyzes motion information along hierarchically arranged visual areas that intera...
<p>We consider cells from the dorsal part of area MST, referred to by MSTd, which respond to motion ...
Based on stimulation with plaid patterns, neurons in the Middle Temporal (MT) area of primate visual...
AbstractElectrophysiological studies indicate that neurons in the middle temporal (MT) area of the p...
Humans can easily understand other people's actions through visual systems, while computers cannot. ...
Abstract—We have previously developed a neurodynamical model of motion segregation in cortical visua...
Copyright © 2011 Jan D. Bouecke et al. This is an open access article distributed under the Creative...
<div><p>Humans can easily understand other people’s actions through visual systems, while computers ...
© 2016 Dr. Parvin Zarei EskikandThe processing of motion information in the brain initiates in the p...
AbstractElectrophysiological studies indicate that neurons in the middle temporal (MT) area of the p...
AbstractThe motion response properties of neurons increase in complexity as one moves from primary v...
In the present paper, we propose a neurally-inspired model of the primate motion processing hierarc...
We developed and tested the architecture of a bio-inspired Spiking Neural Network for motion estimat...
Motion information is required for the solution of many complex tasks of the visual system such as d...
AbstractThe motion response properties of neurons increase in complexity as one moves from primary v...
The visual cortex analyzes motion information along hierarchically arranged visual areas that intera...
<p>We consider cells from the dorsal part of area MST, referred to by MSTd, which respond to motion ...
Based on stimulation with plaid patterns, neurons in the Middle Temporal (MT) area of primate visual...
AbstractElectrophysiological studies indicate that neurons in the middle temporal (MT) area of the p...
Humans can easily understand other people's actions through visual systems, while computers cannot. ...
Abstract—We have previously developed a neurodynamical model of motion segregation in cortical visua...
Copyright © 2011 Jan D. Bouecke et al. This is an open access article distributed under the Creative...
<div><p>Humans can easily understand other people’s actions through visual systems, while computers ...
© 2016 Dr. Parvin Zarei EskikandThe processing of motion information in the brain initiates in the p...
AbstractElectrophysiological studies indicate that neurons in the middle temporal (MT) area of the p...
AbstractThe motion response properties of neurons increase in complexity as one moves from primary v...
In the present paper, we propose a neurally-inspired model of the primate motion processing hierarc...
We developed and tested the architecture of a bio-inspired Spiking Neural Network for motion estimat...
Motion information is required for the solution of many complex tasks of the visual system such as d...