Natural odors are complex, multidimensional stimuli. Yet, they are learned and recognized by the brain with a great deal of specificity and accuracy. This implies that central olfactory circuits are optimized to encode these complex chemical patterns and to store and recognize their neural representations. What shape this optimization takes remains somewhat mysterious. Recent results from studies focusing on odor representation in the first olfactory relay (i.e. one synapse downstream of the receptor neurons) suggest a great deal of order and precision in the spatial and temporal features of odor representation. Whether these spatio-temporal features of neural activity are an essential part of the code for odors (i.e. whether these features...
This review critically examines neuronal coding strategies and how they might apply to olfactory pro...
A first key step in studying a sensory modality is to define how the brain represents the features o...
Two models are presented as examples to discuss the computational tasks, sensory environments, and c...
The chemical senses taste and smell are evolutionarily the most ancient animal senses. They are char...
Sensory processing circuits in the visual and olfactory systems receive input from complex, rapidly ...
Sensory representations are repeatedly transformed by neural computations that determine which of th...
A complete understanding of the mechanisms underlying any kind of sensory, motor or cognitive task r...
The brain faces many complex problems when dealing with odorant signals. Odours are multidimensional...
How is sensory information represented in the brain? A long-standing debate in neural coding is whet...
We examine early olfactory processing in the vertebrate and insect olfactory systems, using a comput...
Olfactory space has a higher dimensionality than does any other class of sensory stimuli, and the ol...
International audienceThe olfactory bulb receives signals from olfactory sensory neurons and conveys...
Knowledge about the molecular organization principles of the sense of smell in different species has...
The coding of olfactory stimuli across a wide range of organisms may rely on fundamentally similar m...
The olfactory system encodes information about molecules by spatiotemporal patterns of activity acro...
This review critically examines neuronal coding strategies and how they might apply to olfactory pro...
A first key step in studying a sensory modality is to define how the brain represents the features o...
Two models are presented as examples to discuss the computational tasks, sensory environments, and c...
The chemical senses taste and smell are evolutionarily the most ancient animal senses. They are char...
Sensory processing circuits in the visual and olfactory systems receive input from complex, rapidly ...
Sensory representations are repeatedly transformed by neural computations that determine which of th...
A complete understanding of the mechanisms underlying any kind of sensory, motor or cognitive task r...
The brain faces many complex problems when dealing with odorant signals. Odours are multidimensional...
How is sensory information represented in the brain? A long-standing debate in neural coding is whet...
We examine early olfactory processing in the vertebrate and insect olfactory systems, using a comput...
Olfactory space has a higher dimensionality than does any other class of sensory stimuli, and the ol...
International audienceThe olfactory bulb receives signals from olfactory sensory neurons and conveys...
Knowledge about the molecular organization principles of the sense of smell in different species has...
The coding of olfactory stimuli across a wide range of organisms may rely on fundamentally similar m...
The olfactory system encodes information about molecules by spatiotemporal patterns of activity acro...
This review critically examines neuronal coding strategies and how they might apply to olfactory pro...
A first key step in studying a sensory modality is to define how the brain represents the features o...
Two models are presented as examples to discuss the computational tasks, sensory environments, and c...