The network of interactions between mitral and granule cells in the olfactory bulb is a critical step in the processing of odor information underlying the neural basis of smell perception. We are building the first computational model in 3 dimensions of this network in order to analyze the rules for connectivity and function within it. The initial results indicate that this network can be modeled to simulate experimental results on the activation of the olfactory bulb by natural odorants, providing a much more powerful approach for 3D simulation of brain neurons and microcircuits
Olfactory stimuli are represented in a highdimensional space by neural networks of the olfactory sys...
<div><p>The reshaping and decorrelation of similar activity patterns by neuronal networks can enhanc...
Olfaction was long considered to belong more to the realm of art than to that of science. As a resul...
The network of interactions between mitral and granule cells in the olfactory bulb is a critical ste...
The functional consequences of the laminar organization observed in cortical systems cannot be easil...
The olfactory bulb sits at the crossroads of input from an animal’s external and internal world. In ...
The specific spatial organization of olfactory bulb network elements and their synaptic connectivity...
The olfactory system processes complex and varied information in its detection, recognition, and mem...
In the olfactory bulb, lateral inhibition mediated by granule cells has been suggested to modulate t...
The olfactory bulb (OB) is organized in many glomerular units (GUs), which interact with each other ...
Much of the computational power of the mammalian brain arises from its extensive top-down projection...
The olfactory bulb of mammals aids in the discrimination of odors. A mathematical model based on the...
One of the main goals in neuroscience is to understand how the brain processes sensory information i...
Much of the computational power of the mammalian brain arises from its extensive top-down projection...
this paper assume that some of the computational goals above are first attempted by the processings ...
Olfactory stimuli are represented in a highdimensional space by neural networks of the olfactory sys...
<div><p>The reshaping and decorrelation of similar activity patterns by neuronal networks can enhanc...
Olfaction was long considered to belong more to the realm of art than to that of science. As a resul...
The network of interactions between mitral and granule cells in the olfactory bulb is a critical ste...
The functional consequences of the laminar organization observed in cortical systems cannot be easil...
The olfactory bulb sits at the crossroads of input from an animal’s external and internal world. In ...
The specific spatial organization of olfactory bulb network elements and their synaptic connectivity...
The olfactory system processes complex and varied information in its detection, recognition, and mem...
In the olfactory bulb, lateral inhibition mediated by granule cells has been suggested to modulate t...
The olfactory bulb (OB) is organized in many glomerular units (GUs), which interact with each other ...
Much of the computational power of the mammalian brain arises from its extensive top-down projection...
The olfactory bulb of mammals aids in the discrimination of odors. A mathematical model based on the...
One of the main goals in neuroscience is to understand how the brain processes sensory information i...
Much of the computational power of the mammalian brain arises from its extensive top-down projection...
this paper assume that some of the computational goals above are first attempted by the processings ...
Olfactory stimuli are represented in a highdimensional space by neural networks of the olfactory sys...
<div><p>The reshaping and decorrelation of similar activity patterns by neuronal networks can enhanc...
Olfaction was long considered to belong more to the realm of art than to that of science. As a resul...