Patterned neuronal activity driven by the sensory environment plays a key role in the development of precise synaptic connectivity in the brain. It is well established that the action potentials (‘spikes’) generated by individual neurons are crucial to this developmental process. A neuron’s spiking activity is jointly determined by its synaptic inputs and its intrinsic excitability. It is therefore important to ask how a neuron develops these attributes, and whether the emergence of spiking might itself be governed by activity-dependent processes. In this thesis, I address these questions in the retinotectal system of Xenopus laevis. First, I investigate the extent to which visuospatial information is available to the developing retinotect...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
Biophysical properties of neurons become increasingly diverse over development, but mechanisms under...
Biophysical properties of neurons become increasingly diverse over development, but mechanisms under...
SummaryThe ability to generate action potentials (spikes) in response to synaptic input determines w...
SummaryThe ability to generate action potentials (spikes) in response to synaptic input determines w...
Experience-dependent synaptic plasticity has been demonstrated in the binocular visual system of the...
Patterned neural activity during development is critical for proper wiring of sensory circuits. Prev...
SummaryThe precise temporal relation between pre- and postsynaptic activity modulates the strength o...
SummaryThe precise temporal relation between pre- and postsynaptic activity modulates the strength o...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...
The retinotectal projection in Xenopus laevis has been shown to exhibit correlation-based refinement...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
AbstractInput specificity of activity-induced synaptic modification was examined in the developing X...
Local GABA (gamma-aminobutyric acid) circuits contribute to sensory experience-dependent refinement ...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
Biophysical properties of neurons become increasingly diverse over development, but mechanisms under...
Biophysical properties of neurons become increasingly diverse over development, but mechanisms under...
SummaryThe ability to generate action potentials (spikes) in response to synaptic input determines w...
SummaryThe ability to generate action potentials (spikes) in response to synaptic input determines w...
Experience-dependent synaptic plasticity has been demonstrated in the binocular visual system of the...
Patterned neural activity during development is critical for proper wiring of sensory circuits. Prev...
SummaryThe precise temporal relation between pre- and postsynaptic activity modulates the strength o...
SummaryThe precise temporal relation between pre- and postsynaptic activity modulates the strength o...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...
Neurotransmission during development regulates synaptic maturation in neural circuits, but the contr...
The retinotectal projection in Xenopus laevis has been shown to exhibit correlation-based refinement...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
AbstractInput specificity of activity-induced synaptic modification was examined in the developing X...
Local GABA (gamma-aminobutyric acid) circuits contribute to sensory experience-dependent refinement ...
The developing retinotectal system of the Xenopus laevis tadpole is a model of choice for studying v...
Biophysical properties of neurons become increasingly diverse over development, but mechanisms under...
Biophysical properties of neurons become increasingly diverse over development, but mechanisms under...