BACKGROUND:Dendritic morphology largely determines patterns of synaptic connectivity and electrochemical properties of a neuron. Neurons display a myriad diversity of dendritic geometries which serve as a basis for functional classification. Several types of molecules have recently been identified which regulate dendrite morphology by acting at the levels of transcriptional regulation, direct interactions with the cytoskeleton and organelles, and cell surface interactions. Although there has been substantial progress in understanding the molecular mechanisms of dendrite morphogenesis, the specification of class-specific dendritic arbors remains largely unexplained. Furthermore, the presence of numerous regulators suggests that they must wor...
As the primary sites of synaptic or sensory input in the nervous system, dendrites play an essential...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
Neuronal dendrites receive, integrate, and process numerous inputs and therefore serve as the neuron...
The assembly and function of neural circuits depend on the patterned outgrowth, guidance and targeti...
Background: Neurons are one of the most structurally and functionally diverse cell types found in na...
Dendrite arborization patterns are critical determinants of neuronal function. To explore the basis ...
SummaryIn a complex nervous system, neuronal functional diversity is reflected in the wide variety o...
Thesis (Ph.D.)--University of Washington, 2016-06The directional flow of information in neurons depe...
Thesis (Ph.D.)--University of Washington, 2016-06The directional flow of information in neurons depe...
AbstractFunctionally similar neurons can share common dendrite morphology, but how different neurons...
A complex array of genetic factors regulates neuronal dendrite morphology. Epigenetic regulation of ...
A complex array of genetic factors regulates neuronal dendrite morphology. Epigenetic regulation of ...
A complex array of genetic factors regulates neuronal dendrite morphology. Epigenetic regulation of ...
<div><p>Background</p><p>Neurons are one of the most structurally and functionally diverse cell type...
The brain is composed of a network of neural cells which have elaborate cellular structures, especia...
As the primary sites of synaptic or sensory input in the nervous system, dendrites play an essential...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
Neuronal dendrites receive, integrate, and process numerous inputs and therefore serve as the neuron...
The assembly and function of neural circuits depend on the patterned outgrowth, guidance and targeti...
Background: Neurons are one of the most structurally and functionally diverse cell types found in na...
Dendrite arborization patterns are critical determinants of neuronal function. To explore the basis ...
SummaryIn a complex nervous system, neuronal functional diversity is reflected in the wide variety o...
Thesis (Ph.D.)--University of Washington, 2016-06The directional flow of information in neurons depe...
Thesis (Ph.D.)--University of Washington, 2016-06The directional flow of information in neurons depe...
AbstractFunctionally similar neurons can share common dendrite morphology, but how different neurons...
A complex array of genetic factors regulates neuronal dendrite morphology. Epigenetic regulation of ...
A complex array of genetic factors regulates neuronal dendrite morphology. Epigenetic regulation of ...
A complex array of genetic factors regulates neuronal dendrite morphology. Epigenetic regulation of ...
<div><p>Background</p><p>Neurons are one of the most structurally and functionally diverse cell type...
The brain is composed of a network of neural cells which have elaborate cellular structures, especia...
As the primary sites of synaptic or sensory input in the nervous system, dendrites play an essential...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
Neuronal dendrites receive, integrate, and process numerous inputs and therefore serve as the neuron...