Neurotransmission during development regulates synaptic maturation in neural circuits, but the contribution of different neurotransmitter systems is unclear. We investigated the role of GABAA receptor-mediated Cl- conductances in the development of synaptic responses in the Xenopus visual system. Intracellular Cl- concentration ([Cl-]i) was found to be high in immature tectal neurons and then falls over a period of several weeks. GABAergic synapses are present at early stages of tectal development and, when activated by optic nerve stimulation or visual stimuli, induce sustained depolarizing Cl- conductances that facilitate retinotectal transmission by NMDA receptors. To test whether depolarizing GABAergic inputs cooperate with NMDA recepto...
The NMDAR is thought to play a key role in the refinement of connectivity in developing neural circu...
AbstractThe retinogeniculate synapse conveys visual information from the retina to thalamic relay ne...
SummaryPresynaptic inhibition onto axons regulates neuronal output, but how such inhibitory synapses...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...
Patterned neuronal activity driven by the sensory environment plays a key role in the development of...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
Local GABA (gamma-aminobutyric acid) circuits contribute to sensory experience-dependent refinement ...
The emergence of dendritic arbor structure in vivo depends on synaptic inputs. We tested whether inh...
Ca2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neuronal act...
A high intracellular chloride concentration in immature neurons leads to a depolarizing action of GA...
The NMDAR is thought to play a key role in the refinement of connectivity in developing neural circu...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
The NMDAR is thought to play a key role in the refinement of connectivity in developing neural circu...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
The NMDAR is thought to play a key role in the refinement of connectivity in developing neural circu...
AbstractThe retinogeniculate synapse conveys visual information from the retina to thalamic relay ne...
SummaryPresynaptic inhibition onto axons regulates neuronal output, but how such inhibitory synapses...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...
Patterned neuronal activity driven by the sensory environment plays a key role in the development of...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
Local GABA (gamma-aminobutyric acid) circuits contribute to sensory experience-dependent refinement ...
The emergence of dendritic arbor structure in vivo depends on synaptic inputs. We tested whether inh...
Ca2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neuronal act...
A high intracellular chloride concentration in immature neurons leads to a depolarizing action of GA...
The NMDAR is thought to play a key role in the refinement of connectivity in developing neural circu...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
The NMDAR is thought to play a key role in the refinement of connectivity in developing neural circu...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
The NMDAR is thought to play a key role in the refinement of connectivity in developing neural circu...
AbstractThe retinogeniculate synapse conveys visual information from the retina to thalamic relay ne...
SummaryPresynaptic inhibition onto axons regulates neuronal output, but how such inhibitory synapses...