SummaryMyelin, the insulating layers of membrane wrapped around axons by oligodendrocytes, is essential for normal impulse conduction. It forms during late stages of fetal development but continues into early adult life. Myelination correlates with cognitive development and can be regulated by impulse activity through unknown molecular mechanisms. Astrocytes do not form myelin, but these nonneuronal cells can promote myelination in ways that are not understood. Here, we identify a link between myelination, astrocytes, and electrical impulse activity in axons that is mediated by the cytokine leukemia inhibitory factor (LIF). These findings show that LIF is released by astrocytes in response to ATP liberated from axons firing action potential...
The advent of myelin was instrumental in advancing the nervous system during vertebrate evolution. W...
[EN] Oligodendrocytes build up the myelin sheath that insulates axons and speeds up action potential...
Dynamic changes in myelin could optimize information transmission in neural circuits and enhance con...
SummaryMyelin, the insulating layers of membrane wrapped around axons by oligodendrocytes, is essent...
Myelin, the multilayered membrane surrounding many axons in the nervous system, increases the speed ...
A variety of anatomical features suggest that functional activity in the nervous system can influenc...
Astrocytes undergo major phenotypic changes in response to injury and disease that directly influenc...
Plasticity in the central nervous system (CNS) allows for responses to changing environmental signal...
Myelin is the insulating membrane concentrically wrapped around some axons, which serves to increase...
AbstractNeuronal activity influences myelination of the brain, but the molecular mechanisms involved...
Oligodendrocytes and the myelin they produce are a remarkable vertebrate specialization that enables...
Astrocytes are the most abundant cell type in the adult central nervous system (CNS), and their func...
International audienceThe oligodendrocyte is the myelin-forming cell in the central nervous system. ...
Oligodendrocytes are specialized glial cells that myelinate central nervous system (CNS) axons. Hist...
Cerebellar long-term depression is thought to underlie motor learning and is mediated by internaliza...
The advent of myelin was instrumental in advancing the nervous system during vertebrate evolution. W...
[EN] Oligodendrocytes build up the myelin sheath that insulates axons and speeds up action potential...
Dynamic changes in myelin could optimize information transmission in neural circuits and enhance con...
SummaryMyelin, the insulating layers of membrane wrapped around axons by oligodendrocytes, is essent...
Myelin, the multilayered membrane surrounding many axons in the nervous system, increases the speed ...
A variety of anatomical features suggest that functional activity in the nervous system can influenc...
Astrocytes undergo major phenotypic changes in response to injury and disease that directly influenc...
Plasticity in the central nervous system (CNS) allows for responses to changing environmental signal...
Myelin is the insulating membrane concentrically wrapped around some axons, which serves to increase...
AbstractNeuronal activity influences myelination of the brain, but the molecular mechanisms involved...
Oligodendrocytes and the myelin they produce are a remarkable vertebrate specialization that enables...
Astrocytes are the most abundant cell type in the adult central nervous system (CNS), and their func...
International audienceThe oligodendrocyte is the myelin-forming cell in the central nervous system. ...
Oligodendrocytes are specialized glial cells that myelinate central nervous system (CNS) axons. Hist...
Cerebellar long-term depression is thought to underlie motor learning and is mediated by internaliza...
The advent of myelin was instrumental in advancing the nervous system during vertebrate evolution. W...
[EN] Oligodendrocytes build up the myelin sheath that insulates axons and speeds up action potential...
Dynamic changes in myelin could optimize information transmission in neural circuits and enhance con...