Intrinsic high-frequency neural activities have been observed in the visual system of several species, but their functional significance for visual perception remains a fundamental puzzle in cognitive neuroscience. Spatiotemporal integration in the human visual system acts as a low-pass filter and makes the psychophysical observation of high-frequency activities very difficult. A computational model of retino-cortical dynamics (RECOD) is used to derive experimental paradigms that allow psychophysical studies of high-frequency neural activities. A reduced-parameter version of the model is used to quantitatively relate psychophysical data collected in two of these experimental paradigms. Statistical analysis shows that the model's account of ...
Contains fulltext : 34675.pdf (publisher's version ) (Open Access)A central goal i...
A central goal in systems neuroscience is to understand how the brain encodes the intensity of senso...
While viewing certain stimuli, perception changes spontaneously in the face of constant input. For e...
Intrinsic high-frequency neural activities have been observed in the vi-sual system of several speci...
. This paper shows how an important phenomenon found in biological systems can be modeled by suited ...
Human vision is enabled by a cascade of visual processes in the brain. On the other hand, deep neura...
Understanding the computational principles that underlie human vision is a key challenge for neurosc...
this paper, we describe a computational model of cortico-cortical dynamics in the visual system that...
Determining the neuronal architecture underlying certain visual functions is of fundamental importan...
We present a data-driven computational approach for studying neural systems. In this approach one st...
We report the results of our experimental and theoretical investigations of the neural response dyna...
As most sensory modalities, the visual system needs to deal with very fast changes in the environmen...
We report the results of our experimental and theoretical investigations of the neural response dyna...
A central goal in systems neuroscience is to understand how the brain encodes the intensity of senso...
We report the results of our experimental and theoretical investigations of the neural response dyna...
Contains fulltext : 34675.pdf (publisher's version ) (Open Access)A central goal i...
A central goal in systems neuroscience is to understand how the brain encodes the intensity of senso...
While viewing certain stimuli, perception changes spontaneously in the face of constant input. For e...
Intrinsic high-frequency neural activities have been observed in the vi-sual system of several speci...
. This paper shows how an important phenomenon found in biological systems can be modeled by suited ...
Human vision is enabled by a cascade of visual processes in the brain. On the other hand, deep neura...
Understanding the computational principles that underlie human vision is a key challenge for neurosc...
this paper, we describe a computational model of cortico-cortical dynamics in the visual system that...
Determining the neuronal architecture underlying certain visual functions is of fundamental importan...
We present a data-driven computational approach for studying neural systems. In this approach one st...
We report the results of our experimental and theoretical investigations of the neural response dyna...
As most sensory modalities, the visual system needs to deal with very fast changes in the environmen...
We report the results of our experimental and theoretical investigations of the neural response dyna...
A central goal in systems neuroscience is to understand how the brain encodes the intensity of senso...
We report the results of our experimental and theoretical investigations of the neural response dyna...
Contains fulltext : 34675.pdf (publisher's version ) (Open Access)A central goal i...
A central goal in systems neuroscience is to understand how the brain encodes the intensity of senso...
While viewing certain stimuli, perception changes spontaneously in the face of constant input. For e...