SummaryHomeostatic signaling systems are thought to interface with the mechanisms of neural plasticity to achieve stable yet flexible neural circuitry. However, the time course, molecular design, and implementation of homeostatic signaling remain poorly defined. Here we demonstrate that a homeostatic increase in presynaptic neurotransmitter release can be induced within minutes following postsynaptic glutamate receptor blockade. The rapid induction of synaptic homeostasis is independent of new protein synthesis and does not require evoked neurotransmission, indicating that a change in the efficacy of spontaneous quantal release events is sufficient to trigger the induction of synaptic homeostasis. Finally, both the rapid induction and the s...
Given the complexity of the nervous system and its capacity for change, it is remarkable that robust...
The magnitude and timing of neural activity precisely determines adaptive responses to stimuli. Neu...
AbstractHomeostatic mechanisms regulate synaptic function to maintain nerve and muscle excitation wi...
SummaryHomeostatic signaling systems are thought to interface with the mechanisms of neural plastici...
SummaryGiven the complexity of the nervous system and its capacity for change, it is remarkable that...
Animal behavior is remarkably robust despite constant changes in neural activity. Homeostatic plasti...
Animal behavior is remarkably robust despite constant changes in neural activity. Homeostatic plasti...
Homeostatic synaptic plasticity remains an enigmatic form of synaptic plasticity. Increasing interes...
SummaryAn electrophysiology-based forward genetic screen has identified two genes, pickpocket11 (ppk...
Homeostatic synaptic plasticity is a negative feedback mechanism that neurons use to offset excessiv...
SummaryAt synapses in organisms ranging from fly to human, a decrease in postsynaptic neurotransmitt...
Dynamic reorganization of neural circuits can occur through the selective strengthening of synapses ...
SummaryGiven the complexity of the nervous system and its capacity for change, it is remarkable that...
Activity within neural circuits shapes the synaptic properties of component neurons in a manner that...
SummaryInhibition of postsynaptic glutamate receptors at the Drosophila NMJ initiates a compensatory...
Given the complexity of the nervous system and its capacity for change, it is remarkable that robust...
The magnitude and timing of neural activity precisely determines adaptive responses to stimuli. Neu...
AbstractHomeostatic mechanisms regulate synaptic function to maintain nerve and muscle excitation wi...
SummaryHomeostatic signaling systems are thought to interface with the mechanisms of neural plastici...
SummaryGiven the complexity of the nervous system and its capacity for change, it is remarkable that...
Animal behavior is remarkably robust despite constant changes in neural activity. Homeostatic plasti...
Animal behavior is remarkably robust despite constant changes in neural activity. Homeostatic plasti...
Homeostatic synaptic plasticity remains an enigmatic form of synaptic plasticity. Increasing interes...
SummaryAn electrophysiology-based forward genetic screen has identified two genes, pickpocket11 (ppk...
Homeostatic synaptic plasticity is a negative feedback mechanism that neurons use to offset excessiv...
SummaryAt synapses in organisms ranging from fly to human, a decrease in postsynaptic neurotransmitt...
Dynamic reorganization of neural circuits can occur through the selective strengthening of synapses ...
SummaryGiven the complexity of the nervous system and its capacity for change, it is remarkable that...
Activity within neural circuits shapes the synaptic properties of component neurons in a manner that...
SummaryInhibition of postsynaptic glutamate receptors at the Drosophila NMJ initiates a compensatory...
Given the complexity of the nervous system and its capacity for change, it is remarkable that robust...
The magnitude and timing of neural activity precisely determines adaptive responses to stimuli. Neu...
AbstractHomeostatic mechanisms regulate synaptic function to maintain nerve and muscle excitation wi...