<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formation and sensory processing. Mushroom body (MB) extrinsic neurons leaving the output region of the MB, the lobes and the peduncle, are thought to be especially important in these processes. In the honeybee brain, a distinct class of MB extrinsic neurons, A3 neurons, are implicated in playing a role in learning. Their MB arborisations are either restricted to the lobes and the peduncle, here called A3 lobe connecting neurons, or they provide feedback information from the lobes to the input region of the MB, the calyces, here called A3 feedback neurons. In this study, we analyzed the morphology of individual A3 lobe connecting and feedback neuron...
The anatomical substrates of neural nets are usually composed from reconstructions of neurons that w...
In the honeybee brain, two prominent tracts – the medial and the lateral antennal lobe tract – proje...
To investigate how sensory information is processed, transformed, and stored within an olfactory sys...
<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formati...
<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formati...
<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formati...
<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formati...
In the insect brain, the mushroom body is a higher order brain area that is key to memory formation ...
In the insect brain, the mushroom body is a higher order brain area that is key to memory formation ...
Neural connections between the mushroom body (MB) and other protocerebral areas of the honeybee's br...
A mushroom body extrinsic neuron, the Pe1 neuron, connects the peduncle of the mushroom body (MB) wi...
ABSTRACT: Worker honeybees proceed through a sequence of tasks, passing from hive and guard duties t...
Synaptic contacts of γ-aminobutyric acid (GABA) -immunoreactive neurons in honeybee mushroom bodies ...
In the honeybee brain, two prominent tracts - the medial and the lateral antennal lobe tract - proje...
In the honeybee brain, two prominent tracts – the medial and the lateral antennal lobe tract – proje...
The anatomical substrates of neural nets are usually composed from reconstructions of neurons that w...
In the honeybee brain, two prominent tracts – the medial and the lateral antennal lobe tract – proje...
To investigate how sensory information is processed, transformed, and stored within an olfactory sys...
<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formati...
<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formati...
<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formati...
<p>In the insect brain, the mushroom body is a higher order brain area that is key to memory formati...
In the insect brain, the mushroom body is a higher order brain area that is key to memory formation ...
In the insect brain, the mushroom body is a higher order brain area that is key to memory formation ...
Neural connections between the mushroom body (MB) and other protocerebral areas of the honeybee's br...
A mushroom body extrinsic neuron, the Pe1 neuron, connects the peduncle of the mushroom body (MB) wi...
ABSTRACT: Worker honeybees proceed through a sequence of tasks, passing from hive and guard duties t...
Synaptic contacts of γ-aminobutyric acid (GABA) -immunoreactive neurons in honeybee mushroom bodies ...
In the honeybee brain, two prominent tracts - the medial and the lateral antennal lobe tract - proje...
In the honeybee brain, two prominent tracts – the medial and the lateral antennal lobe tract – proje...
The anatomical substrates of neural nets are usually composed from reconstructions of neurons that w...
In the honeybee brain, two prominent tracts – the medial and the lateral antennal lobe tract – proje...
To investigate how sensory information is processed, transformed, and stored within an olfactory sys...