Kenyon cells (KCs), which are present in the mushroom bodies (MBs) of the insect brain, play an important role in olfactory information processing and associative learning. However, the intrinsic electrophysiological properties of KCs in silkmoth (Bombyx mori) MBs remain unknown. Here, we use whole-cell patch-clamp recordings to elucidate the functional parameters of membrane voltage and voltage-activated ionic currents of KCs in silkmoth MBs. KCs generated action potentials in response to stepping pulses of depolarizing current, and application of GABA-receptor blocker abolished inhibitory synaptic inputs and depolarized resting membrane potential. Pharmacological isolation of KC voltage-gated ionic currents revealed that KCs express a ran...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
Animals can form associations between temporally separated stimuli. To do so, the nervous system has...
Kenyon cells are the intrinsic interneurons of the mushroom bodies in the insect brain, a center for...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
To understand the cellular mechanisms of olfactory learning in the honeybee brain we study the physi...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The higher cognitive functions of insects are dependent on their mushroom bodies (MBs), which are pa...
The higher cognitive functions of insects are dependent on their mushroom bodies (MBs), which are pa...
Electrophysiological analysis of cultured neurons provides a potential approach toward understanding...
The higher cognitive functions of insects are dependent on their mushroom bodies (MBs), which are pa...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The mushroom bodies, bilaterally symmetric regions in the insect brain, play a critical role in olfa...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
Animals can form associations between temporally separated stimuli. To do so, the nervous system has...
Kenyon cells are the intrinsic interneurons of the mushroom bodies in the insect brain, a center for...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
To understand the cellular mechanisms of olfactory learning in the honeybee brain we study the physi...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The higher cognitive functions of insects are dependent on their mushroom bodies (MBs), which are pa...
The higher cognitive functions of insects are dependent on their mushroom bodies (MBs), which are pa...
Electrophysiological analysis of cultured neurons provides a potential approach toward understanding...
The higher cognitive functions of insects are dependent on their mushroom bodies (MBs), which are pa...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The mushroom bodies, bilaterally symmetric regions in the insect brain, play a critical role in olfa...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
The honeybee olfactory pathway comprises an intriguing pattern of convergence and divergence: ~60.00...
Animals can form associations between temporally separated stimuli. To do so, the nervous system has...