The CNS is extremely responsive to an ever-changing environment. Studies of neural circuit plasticity focus almost exclusively on functional and structural changes of neuronal synapses. In recent years, however, myelin plasticity has emerged as a potential modulator of neuronal networks. Myelination of previously unmyelinated axons and changes in the structure of myelin on already-myelinated axons (similar to changes in internode number and length or myelin thickness or geometry of the nodal area) can in theory have significant effects on the function of neuronal networks. In this article, the authors review the current evidence for myelin changes occurring in the adult CNS, highlight some potential underlying mechanisms of how neuronal act...
Myelinating glial cells are well-known to insulate axons and to speed up action potential propagatio...
Unusual features of myelin in the mammalian cerebral cortex permit more complex forms of network int...
Myelin sheaths in the vertebrate nervous system enable faster impulse propagation, while myelinating...
The brain is responsive to an ever-changing environment, enabling the organism to learn and change b...
Publisher's version (útgefin grein)Plasticity in the central nervous system (CNS) allows for respons...
Dynamic changes in myelin could optimize information transmission in neural circuits and enhance con...
International audienceThe plasticity of the central nervous system (CNS) in response to neuronal act...
Myelin, a lipid membrane that wraps axons, enabling fast neurotransmission and metabolic support to ...
Myelin sheaths in the vertebrate nervous system enable faster impulse propagation, while myelinating...
Myelin, multilayered lipid-rich membrane extensions formed by oligodendrocytes around neuronal axons...
Myelination was first understood to enable faster impulse propagation in axons more than 60 years ag...
The production of new myelin has been highlighted as an underappreciated mechanism of brain plastici...
Myelin sheaths speed up impulse propagation along the axons of neurons without the need for increasi...
One of the most significant paradigm shifts in membrane remodeling is the emerging view that membran...
Precise timing of neuronal inputs is crucial for brain circuit function and development, where it co...
Myelinating glial cells are well-known to insulate axons and to speed up action potential propagatio...
Unusual features of myelin in the mammalian cerebral cortex permit more complex forms of network int...
Myelin sheaths in the vertebrate nervous system enable faster impulse propagation, while myelinating...
The brain is responsive to an ever-changing environment, enabling the organism to learn and change b...
Publisher's version (útgefin grein)Plasticity in the central nervous system (CNS) allows for respons...
Dynamic changes in myelin could optimize information transmission in neural circuits and enhance con...
International audienceThe plasticity of the central nervous system (CNS) in response to neuronal act...
Myelin, a lipid membrane that wraps axons, enabling fast neurotransmission and metabolic support to ...
Myelin sheaths in the vertebrate nervous system enable faster impulse propagation, while myelinating...
Myelin, multilayered lipid-rich membrane extensions formed by oligodendrocytes around neuronal axons...
Myelination was first understood to enable faster impulse propagation in axons more than 60 years ag...
The production of new myelin has been highlighted as an underappreciated mechanism of brain plastici...
Myelin sheaths speed up impulse propagation along the axons of neurons without the need for increasi...
One of the most significant paradigm shifts in membrane remodeling is the emerging view that membran...
Precise timing of neuronal inputs is crucial for brain circuit function and development, where it co...
Myelinating glial cells are well-known to insulate axons and to speed up action potential propagatio...
Unusual features of myelin in the mammalian cerebral cortex permit more complex forms of network int...
Myelin sheaths in the vertebrate nervous system enable faster impulse propagation, while myelinating...