SummaryRegulation of myelination by oligodendrocytes in the CNS has important consequences for higher-order nervous system function (e.g., [1–4]), and there is growing consensus that neuronal activity regulates CNS myelination (e.g., [5–9]) through local axon-oligodendrocyte synaptic-vesicle-release-mediated signaling [10–12]. Recent analyses have indicated that myelination along axons of distinct neuronal subtypes can differ [13, 14], but it is not known whether regulation of myelination by activity is common to all neuronal subtypes or only some. This limits insight into how specific neurons regulate their own conduction. Here, we use a novel fluorescent fusion protein reporter to study myelination along the axons of distinct neuronal sub...
The length of myelin sheaths affects conduction speed along axons and information propagation. It ha...
Through a genetic screen in zebrafish, we identified a mutant with disruption to myelin in both the ...
<div><p>Oligodendrocytes form myelin around axons of the central nervous system, enabling saltatory ...
An essential feature of vertebrate neural development is ensheathment of axons with myelin, an insul...
The majority of axons in the central nervous system (CNS) are eventually myelinated by oligodendrocy...
Myelin is a crucial component of the vertebrate nervous system, both in facilitating rapid conducti...
SummaryThere is increasing evidence that neuronal activity modulates how axons are wrapped in myelin...
An essential feature of vertebrate neural development is ensheathment of axons with myelin, an insul...
The correct targeting of myelin is essential for nervous system formation and function. Oligodendroc...
Oligodendrocytes are matured oligodendrocyte progenitor cells that serve to myelinate axons within t...
SummaryBackgroundMyelinated axons are essential for rapid conduction of action potentials in the ver...
Myelin is essential for normal nervous system conduction as well as providing metabolic support for...
Myelination drastically speeds up action potential propagation along axons, which is fundamental fo...
Myelination of axons is important for proper functioning of the nervous system and breakdown of myel...
During the development of the Central Nervous System, oligodendrocytes wrap axons with myelin, which...
The length of myelin sheaths affects conduction speed along axons and information propagation. It ha...
Through a genetic screen in zebrafish, we identified a mutant with disruption to myelin in both the ...
<div><p>Oligodendrocytes form myelin around axons of the central nervous system, enabling saltatory ...
An essential feature of vertebrate neural development is ensheathment of axons with myelin, an insul...
The majority of axons in the central nervous system (CNS) are eventually myelinated by oligodendrocy...
Myelin is a crucial component of the vertebrate nervous system, both in facilitating rapid conducti...
SummaryThere is increasing evidence that neuronal activity modulates how axons are wrapped in myelin...
An essential feature of vertebrate neural development is ensheathment of axons with myelin, an insul...
The correct targeting of myelin is essential for nervous system formation and function. Oligodendroc...
Oligodendrocytes are matured oligodendrocyte progenitor cells that serve to myelinate axons within t...
SummaryBackgroundMyelinated axons are essential for rapid conduction of action potentials in the ver...
Myelin is essential for normal nervous system conduction as well as providing metabolic support for...
Myelination drastically speeds up action potential propagation along axons, which is fundamental fo...
Myelination of axons is important for proper functioning of the nervous system and breakdown of myel...
During the development of the Central Nervous System, oligodendrocytes wrap axons with myelin, which...
The length of myelin sheaths affects conduction speed along axons and information propagation. It ha...
Through a genetic screen in zebrafish, we identified a mutant with disruption to myelin in both the ...
<div><p>Oligodendrocytes form myelin around axons of the central nervous system, enabling saltatory ...