SummaryIn many species, sensory stimuli elicit the oscillatory synchronization of groups of neurons. What determines the properties of these oscillations? In the olfactory system of the moth, we found that odors elicited oscillatory synchronization through a neural mechanism like that described in locust and Drosophila. During responses to long odor pulses, oscillations suddenly slowed as net olfactory receptor neuron (ORN) output decreased; thus, stimulus intensity appeared to determine oscillation frequency. However, changing the concentration of the odor had little effect upon oscillatory frequency. Our recordings in vivo and computational models based on these results suggested that the main effect of increasing odor concentration was t...
Stimulus-evoked oscillatory synchronization of neural assemblies has been described in the olfactory...
The responses of projection neurons in the antennal lobe of the locust brain (the functional analog ...
Each down stroke of an insect’s wings accelerates axial airflow over the antennae. Modeling studies ...
SummaryIn many species, sensory stimuli elicit the oscillatory synchronization of groups of neurons....
The response characteristics of olfactory receptor neurons (ORNs) and their corollary, the different...
The Transient Oscillatory Model (TOM) seeks to explain neural coding in the first processing center ...
Although smells are some of the most evocative and emotionally charged sensory inputs known to us, w...
Neural representations of odors get associated with other stimuli through experience. Are action pot...
Stimulus-evoked oscillatory synchronization of neural assemblies and temporal patterns of neuronal a...
In the insect olfactory system, oscillatory synchronization is functionally relevant and reflects th...
Stimulus-evoked oscillatory synchronization of neural assemblies and temporal patterns of neuronal a...
In the insect olfactory system, oscillatory synchronization is functionally relevant and reflects th...
The responses of projection neurons in the antennal lobe of the locust brain (the functional analog ...
International audienceIn order to understand how olfactory stimuli are encoded and processed in the ...
Insect olfactory sensory neurons (OSN) express a diverse array of receptors from different protein f...
Stimulus-evoked oscillatory synchronization of neural assemblies has been described in the olfactory...
The responses of projection neurons in the antennal lobe of the locust brain (the functional analog ...
Each down stroke of an insect’s wings accelerates axial airflow over the antennae. Modeling studies ...
SummaryIn many species, sensory stimuli elicit the oscillatory synchronization of groups of neurons....
The response characteristics of olfactory receptor neurons (ORNs) and their corollary, the different...
The Transient Oscillatory Model (TOM) seeks to explain neural coding in the first processing center ...
Although smells are some of the most evocative and emotionally charged sensory inputs known to us, w...
Neural representations of odors get associated with other stimuli through experience. Are action pot...
Stimulus-evoked oscillatory synchronization of neural assemblies and temporal patterns of neuronal a...
In the insect olfactory system, oscillatory synchronization is functionally relevant and reflects th...
Stimulus-evoked oscillatory synchronization of neural assemblies and temporal patterns of neuronal a...
In the insect olfactory system, oscillatory synchronization is functionally relevant and reflects th...
The responses of projection neurons in the antennal lobe of the locust brain (the functional analog ...
International audienceIn order to understand how olfactory stimuli are encoded and processed in the ...
Insect olfactory sensory neurons (OSN) express a diverse array of receptors from different protein f...
Stimulus-evoked oscillatory synchronization of neural assemblies has been described in the olfactory...
The responses of projection neurons in the antennal lobe of the locust brain (the functional analog ...
Each down stroke of an insect’s wings accelerates axial airflow over the antennae. Modeling studies ...