Patterned neural activity during development is critical for proper wiring of sensory circuits. Previous work demonstrated that exposing freely swimming Xenopus tadpoles to 4 h of enhanced visual stimulation accelerates the dendritic growth rate of optic tectal neurons in vivo. Here we test whether this same period of visual stimulation increased synaptic maturation and formation of new synapses in the retinotectal pathway. We assessed synaptic properties of stage 48 tadpoles that were exposed to a simulated-motion stimulus for 4-5 h. Based on our findings that immature retinotectal synapses have greater paired-pulse facilitation compared with more mature synapses, consistent with a lower release probability (Pr), we used a paired-pulse pro...
SummaryThe precise temporal relation between pre- and postsynaptic activity modulates the strength o...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
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 retinotectal projection in Xenopus laevis has been shown to exhibit correlation-based refinement...
Early in development the visual circuitry in the brain is highly plastic. Factors that contribute t...
Previous studies suggest that neuronal activity may guide the development of synaptic connections in...
Experience-dependent synaptic plasticity has been demonstrated in the binocular visual system of the...
Neurons adapt their electrophysiological properties to maintain stable levels of electrical excitabi...
SummaryThe ability to generate action potentials (spikes) in response to synaptic input determines w...
AbstractNeurons adapt their electrophysiological properties to maintain stable levels of electrical ...
Neurons adapt their electrophysiological properties to maintain stable levels of electrical excitabi...
Local GABA (gamma-aminobutyric acid) circuits contribute to sensory experience-dependent refinement ...
During embryonic activity‐dependent brain circuit refinement, neurons receiving the same natural sen...
Ca2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neuronal act...
SummaryThe precise temporal relation between pre- and postsynaptic activity modulates the strength o...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
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 retinotectal projection in Xenopus laevis has been shown to exhibit correlation-based refinement...
Early in development the visual circuitry in the brain is highly plastic. Factors that contribute t...
Previous studies suggest that neuronal activity may guide the development of synaptic connections in...
Experience-dependent synaptic plasticity has been demonstrated in the binocular visual system of the...
Neurons adapt their electrophysiological properties to maintain stable levels of electrical excitabi...
SummaryThe ability to generate action potentials (spikes) in response to synaptic input determines w...
AbstractNeurons adapt their electrophysiological properties to maintain stable levels of electrical ...
Neurons adapt their electrophysiological properties to maintain stable levels of electrical excitabi...
Local GABA (gamma-aminobutyric acid) circuits contribute to sensory experience-dependent refinement ...
During embryonic activity‐dependent brain circuit refinement, neurons receiving the same natural sen...
Ca2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neuronal act...
SummaryThe precise temporal relation between pre- and postsynaptic activity modulates the strength o...
AbstractCa2+-permeable AMPARs are inwardly rectifying due to block by intracellular polyamines. Neur...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...