The discrimination of complex sensory stimuli in a noisy environment is an immense computational task. Sensory systems often encode stimulus features in a spatiotemporal fashion through the complex firing patterns of individual neurons. To identify these temporal features, we have developed an analysis that allows the comparison of statistically significant features of spike trains localized over multiple scales of time-frequency resolution. Our approach provides an original way to utilize the discrete wavelet transform to process instantaneous rate functions derived from spike trains, and select relevant wavelet coefficients through statistical analysis. Our method uncovered localized features within olfactory projection neuron (PN) ...
abstract: Sensory systems encode both the static quality of a stimulus (e.g., color or shape) and it...
SummaryNeural firing discharges are often temporally patterned, but it is often ambiguous as to whet...
Animals typically perceive natural odor cues in their olfactory environment as a complex mixture of ...
<div><p>The discrimination of complex sensory stimuli in a noisy environment is an immense computati...
The discrimination of complex sensory stimuli in a noisy environment is an immense computational tas...
SummaryOlfactory processing in the insect antennal lobe is a highly dynamic process, yet it has been...
The efficient coding hypothesis predicts that sensory neurons adjust their coding resources to optim...
Olfactory processing in the insect antennal lobe is a highly dynamic process, yet it has been studie...
The olfactory information that is received by the insect brain is encoded in the form of spatiotempo...
Insects rely heavily on olfaction to locate food, find mates and sense danger. Odorant stimuli in th...
Animals use behaviors to actively sample the environment across a broad spectrum of sensory domains....
The responses of projection neurons in the antennal lobe of the locust brain (the functional analog ...
Odorants are represented as spatiotemporal patterns of spikes in neurons of the antennal lobe (AL; i...
The efficient coding hypothesis predicts that sensory neurons adjust their coding resources to optim...
SummaryProjection neurons (PNs) in the locust antennal lobe exhibit odor-specific dynamic responses....
abstract: Sensory systems encode both the static quality of a stimulus (e.g., color or shape) and it...
SummaryNeural firing discharges are often temporally patterned, but it is often ambiguous as to whet...
Animals typically perceive natural odor cues in their olfactory environment as a complex mixture of ...
<div><p>The discrimination of complex sensory stimuli in a noisy environment is an immense computati...
The discrimination of complex sensory stimuli in a noisy environment is an immense computational tas...
SummaryOlfactory processing in the insect antennal lobe is a highly dynamic process, yet it has been...
The efficient coding hypothesis predicts that sensory neurons adjust their coding resources to optim...
Olfactory processing in the insect antennal lobe is a highly dynamic process, yet it has been studie...
The olfactory information that is received by the insect brain is encoded in the form of spatiotempo...
Insects rely heavily on olfaction to locate food, find mates and sense danger. Odorant stimuli in th...
Animals use behaviors to actively sample the environment across a broad spectrum of sensory domains....
The responses of projection neurons in the antennal lobe of the locust brain (the functional analog ...
Odorants are represented as spatiotemporal patterns of spikes in neurons of the antennal lobe (AL; i...
The efficient coding hypothesis predicts that sensory neurons adjust their coding resources to optim...
SummaryProjection neurons (PNs) in the locust antennal lobe exhibit odor-specific dynamic responses....
abstract: Sensory systems encode both the static quality of a stimulus (e.g., color or shape) and it...
SummaryNeural firing discharges are often temporally patterned, but it is often ambiguous as to whet...
Animals typically perceive natural odor cues in their olfactory environment as a complex mixture of ...