It is widely recognized that myelination of axons greatly enhances the speed of signal transmission. An exciting new finding is the dynamic communication between axons and their myelin-forming oligodendrocytes, including activity-dependent signalling from axon to myelin. The oligodendrocyte–myelin complex may in turn respond by providing metabolic support or alter subtle myelin properties to modulate action potential propagation. In this Opinion, we discuss what is known regarding the molecular physiology of this novel, synapse-like communication and speculate on potential roles in disease states including multiple sclerosis, schizophrenia and Alzheimer disease. An emerging appreciation of the contribution of white-matter perturbations to n...
Cerebellar long-term depression is thought to underlie motor learning and is mediated by internaliza...
Myelination of axons can adaptively change in response to nervous system activity, with implications...
Myelination was first understood to enable faster impulse propagation in axons more than 60 years ag...
Myelin, the multilayered membrane surrounding many axons in the nervous system, increases the speed ...
Restricted until 07 Nov. 2010.As humans, a swift and highly accurate means of neuronal communication...
Myelinating oligodendrocytes enable fast propagation of action potentials along the ensheathed axons...
In vertebrate nervous systems myelination of neuronal axons has evolved to increase conduction veloc...
The role of NMDA receptors in oligodendrocytes has been controversial. A new paper (Saab et al., 201...
Vertebrate myelination is an evolutionary advancement essential for motor, sensory, and higher-order...
Myelinating glial cells are well-known to insulate axons and to speed up action potential propagatio...
Plasticity in the central nervous system (CNS) allows for responses to changing environmental signal...
Myelin, multilayered lipid-rich membrane extensions formed by oligodendrocytes around neuronal axons...
[EN] Oligodendrocytes build up the myelin sheath that insulates axons and speeds up action potential...
Myelin, made by oligodendrocytes, is essential for rapid information transfer in the central nervous...
During the development of the central nervous system the reciprocal communication between neurons an...
Cerebellar long-term depression is thought to underlie motor learning and is mediated by internaliza...
Myelination of axons can adaptively change in response to nervous system activity, with implications...
Myelination was first understood to enable faster impulse propagation in axons more than 60 years ag...
Myelin, the multilayered membrane surrounding many axons in the nervous system, increases the speed ...
Restricted until 07 Nov. 2010.As humans, a swift and highly accurate means of neuronal communication...
Myelinating oligodendrocytes enable fast propagation of action potentials along the ensheathed axons...
In vertebrate nervous systems myelination of neuronal axons has evolved to increase conduction veloc...
The role of NMDA receptors in oligodendrocytes has been controversial. A new paper (Saab et al., 201...
Vertebrate myelination is an evolutionary advancement essential for motor, sensory, and higher-order...
Myelinating glial cells are well-known to insulate axons and to speed up action potential propagatio...
Plasticity in the central nervous system (CNS) allows for responses to changing environmental signal...
Myelin, multilayered lipid-rich membrane extensions formed by oligodendrocytes around neuronal axons...
[EN] Oligodendrocytes build up the myelin sheath that insulates axons and speeds up action potential...
Myelin, made by oligodendrocytes, is essential for rapid information transfer in the central nervous...
During the development of the central nervous system the reciprocal communication between neurons an...
Cerebellar long-term depression is thought to underlie motor learning and is mediated by internaliza...
Myelination of axons can adaptively change in response to nervous system activity, with implications...
Myelination was first understood to enable faster impulse propagation in axons more than 60 years ag...