AbstractThe rapid motility of axonal filopodia and dendritic spines is prevalent throughout the developing CNS, although the function of this motility remains controversial. Using two-photon microscopy, we imaged hippocampal mossy fiber axons in slice cultures and discovered that filopodial extensions are highly motile. Axonal filopodial motility is actin based and is downregulated with development, although it remains in mature cultures. This motility is correlated with free extracellular space yet is inversely correlated with contact with postsynaptic targets, indicating a potential role in synaptogenesis. Filopodial motility is differentially regulated by kainate receptors: synaptic stimulation of kainate receptors enhances motility in y...
ABSTRACT: The dendritic spine may be considered a fusion of a spe-cialized actin-based structure aki...
Neuronal dendrites dynamically protrude many fine filopodia in the early stages of neuronal developm...
Actin-capping and anti-capping proteins are crucial regulators of actin dynamics. Recent studies hav...
Despite the importance of proper synaptogenesis in the CNS, the molecular mechanisms that regulate t...
Dendritic filopodia are actin-filled dynamic subcellular structures that sprout on neuronal dendrite...
AbstractAxo-dendritic synaptogenesis was examined in live hippocampal cell cultures using the fluore...
Dendritic filopodia are dynamic protrusions that are thought to play an active role in synaptogenesi...
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...
Motoneurons develop extensive dendritic trees for receiving excitatory and inhibitory synaptic input...
It is increasingly clear that dendritic spines play an important role in compartmentalizing post-syn...
Ever since their discovery in 1880 by Ramon y Cajal, dendritic spines have evoked considerable inter...
The branching behaviors of both dendrites and axons are part of a neuronal maturation process initia...
Neuronal dendrites dynamically protrude many fine filopodia in the early stages of neuronal developm...
ipropriate neurons is essential for the development of functional neural networks. In the mammalian ...
ABSTRACT: The dendritic spine may be considered a fusion of a spe-cialized actin-based structure aki...
Neuronal dendrites dynamically protrude many fine filopodia in the early stages of neuronal developm...
Actin-capping and anti-capping proteins are crucial regulators of actin dynamics. Recent studies hav...
Despite the importance of proper synaptogenesis in the CNS, the molecular mechanisms that regulate t...
Dendritic filopodia are actin-filled dynamic subcellular structures that sprout on neuronal dendrite...
AbstractAxo-dendritic synaptogenesis was examined in live hippocampal cell cultures using the fluore...
Dendritic filopodia are dynamic protrusions that are thought to play an active role in synaptogenesi...
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...
Motoneurons develop extensive dendritic trees for receiving excitatory and inhibitory synaptic input...
It is increasingly clear that dendritic spines play an important role in compartmentalizing post-syn...
Ever since their discovery in 1880 by Ramon y Cajal, dendritic spines have evoked considerable inter...
The branching behaviors of both dendrites and axons are part of a neuronal maturation process initia...
Neuronal dendrites dynamically protrude many fine filopodia in the early stages of neuronal developm...
ipropriate neurons is essential for the development of functional neural networks. In the mammalian ...
ABSTRACT: The dendritic spine may be considered a fusion of a spe-cialized actin-based structure aki...
Neuronal dendrites dynamically protrude many fine filopodia in the early stages of neuronal developm...
Actin-capping and anti-capping proteins are crucial regulators of actin dynamics. Recent studies hav...