The antennal lobe plays a central role for odor processing in insects, as demonstrated by electrophysiological and imaging experiments. Here we analyze the detailed temporal evolution of glomerular activity patterns in the antennal lobe of honeybees. We represent these spatiotemporal patterns as trajectories in a multidimensional space, where each dimension accounts for the activity of one glomerulus. Our data show that the trajectories reach odor-specific steady states (attractors) that correspond to stable activity patterns at about 1 second after stimulus onset.As revealed by a detailed mathematical investigation, the trajectories are characterized by different phases: response onset, steady-state plateau, response offset, and periods of...
Olfactory stimuli are coded by a spatio-temporal pattern of activity at the primary level of sensory...
<div><p>(A) Schematic view of odor processing in the honeybee brain. Some 60,000 odorant receptor ce...
Local computation in microcircuits is an essential feature of distributed information processing in ...
The antennal lobe plays a central role for odor processing in insects, as demonstrated by electrophy...
The antennal lobe plays a central role for odor processing in insects, as demonstrated by electrophy...
The primary olfactory neuropil, the antennal lobe (AL) in insects, is organized in glomeruli. Glomer...
Major advances have been made during the past two years in understanding how honeybees process olfac...
We investigate the interplay of odor identity and concentration coding in the antennal lobe (AL) of ...
Odor information is coded in the insect brain in a sequence of steps, ranging from the receptor cell...
Sensory memory is a short-lived persistence of a sensory stimulus in the nervous system, such as ico...
Insects have a remarkable ability to identify and track odour sources in multi-odour backgrounds. Re...
In their natural environment, many insects need to identify and evaluate behaviorally relevant odora...
Sensory memory is a short-lived persistence of a sensory stimulus in the nervous system, such as ico...
<div><p>Neural representations of odors are subject to computations that involve sequentially conver...
SummaryOlfactory systems dynamically encode odor information in the nervous system. Insects constitu...
Olfactory stimuli are coded by a spatio-temporal pattern of activity at the primary level of sensory...
<div><p>(A) Schematic view of odor processing in the honeybee brain. Some 60,000 odorant receptor ce...
Local computation in microcircuits is an essential feature of distributed information processing in ...
The antennal lobe plays a central role for odor processing in insects, as demonstrated by electrophy...
The antennal lobe plays a central role for odor processing in insects, as demonstrated by electrophy...
The primary olfactory neuropil, the antennal lobe (AL) in insects, is organized in glomeruli. Glomer...
Major advances have been made during the past two years in understanding how honeybees process olfac...
We investigate the interplay of odor identity and concentration coding in the antennal lobe (AL) of ...
Odor information is coded in the insect brain in a sequence of steps, ranging from the receptor cell...
Sensory memory is a short-lived persistence of a sensory stimulus in the nervous system, such as ico...
Insects have a remarkable ability to identify and track odour sources in multi-odour backgrounds. Re...
In their natural environment, many insects need to identify and evaluate behaviorally relevant odora...
Sensory memory is a short-lived persistence of a sensory stimulus in the nervous system, such as ico...
<div><p>Neural representations of odors are subject to computations that involve sequentially conver...
SummaryOlfactory systems dynamically encode odor information in the nervous system. Insects constitu...
Olfactory stimuli are coded by a spatio-temporal pattern of activity at the primary level of sensory...
<div><p>(A) Schematic view of odor processing in the honeybee brain. Some 60,000 odorant receptor ce...
Local computation in microcircuits is an essential feature of distributed information processing in ...