SummarySynapse elimination is an important process underlying the establishment of functional neuronal networks during development. Here, we tested the idea that neurons select among potential synaptic partners already during initial contact formation between dendritic filopodia and axons—well before mature synapses are established. We show that filopodia frequently make contact with axons, and while some contacts are selectively stabilized, many are short-lived. More specifically, we demonstrate that contacts with a certain population of GABAergic axons never get stabilized, indicating that filopodia already early on select between different types of axons. Local dendritic calcium transients that are independent of glutamate occur within s...
In the mammalian brain, excitatory (glutamatergic) synapses are mainly located on dendritic spines; ...
SummaryMotile dendritic filopodial processes are thought to be precursors of spine synapses, but how...
Although new and functional neurons are produced in the adult brain, little is known about how they ...
SummarySynapse elimination is an important process underlying the establishment of functional neuron...
Correct wiring of brain circuitry during development involves the selective formation and retention ...
AbstractAxo-dendritic synaptogenesis was examined in live hippocampal cell cultures using the fluore...
Despite the importance of proper synaptogenesis in the CNS, the molecular mechanisms that regulate t...
Dendritic filopodia are dynamic protrusions that are thought to play an active role in synaptogenesi...
The branching behaviors of both dendrites and axons are part of a neuronal maturation process initia...
AbstractDendritic filopodia are long thin protrusions occurring predominantly on developing neurons....
AbstractThe rapid motility of axonal filopodia and dendritic spines is prevalent throughout the deve...
Ever since their discovery in 1880 by Ramon y Cajal, dendritic spines have evoked considerable inter...
Formation, elimination and remodeling of excitatory synapses on dendritic spines represent a continu...
International audienceBrain wiring is remarkably precise, yet most neurons readily form synapses wit...
ipropriate neurons is essential for the development of functional neural networks. In the mammalian ...
In the mammalian brain, excitatory (glutamatergic) synapses are mainly located on dendritic spines; ...
SummaryMotile dendritic filopodial processes are thought to be precursors of spine synapses, but how...
Although new and functional neurons are produced in the adult brain, little is known about how they ...
SummarySynapse elimination is an important process underlying the establishment of functional neuron...
Correct wiring of brain circuitry during development involves the selective formation and retention ...
AbstractAxo-dendritic synaptogenesis was examined in live hippocampal cell cultures using the fluore...
Despite the importance of proper synaptogenesis in the CNS, the molecular mechanisms that regulate t...
Dendritic filopodia are dynamic protrusions that are thought to play an active role in synaptogenesi...
The branching behaviors of both dendrites and axons are part of a neuronal maturation process initia...
AbstractDendritic filopodia are long thin protrusions occurring predominantly on developing neurons....
AbstractThe rapid motility of axonal filopodia and dendritic spines is prevalent throughout the deve...
Ever since their discovery in 1880 by Ramon y Cajal, dendritic spines have evoked considerable inter...
Formation, elimination and remodeling of excitatory synapses on dendritic spines represent a continu...
International audienceBrain wiring is remarkably precise, yet most neurons readily form synapses wit...
ipropriate neurons is essential for the development of functional neural networks. In the mammalian ...
In the mammalian brain, excitatory (glutamatergic) synapses are mainly located on dendritic spines; ...
SummaryMotile dendritic filopodial processes are thought to be precursors of spine synapses, but how...
Although new and functional neurons are produced in the adult brain, little is known about how they ...