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Myelin Plasticity and Nervous System Function
Annual Review of Neuroscience ( IF 13.9 ) Pub Date : 2018-07-09 00:00:00 , DOI: 10.1146/annurev-neuro-080317-061853
Michelle Monje 1
Affiliation  

Structural plasticity in the myelinated infrastructure of the nervous system has come to light. Although an innate program of myelin development proceeds independent of nervous system activity, a second mode of myelination exists in which activity-dependent, plastic changes in myelin-forming cells influence myelin structure and neurological function. These complementary and possibly temporally overlapping activity-independent and activity-dependent modes of myelination crystallize in a model of experience-modulated myelin development and plasticity with broad implications for neurological function. In this article, I consider the contributions of myelin to neural circuit function, the dynamic influences of experience on myelin microstructure, and the role that plasticity of myelin may play in cognition.

中文翻译:


髓磷脂可塑性和神经系统功能

神经系统有髓基础设施中的结构可塑性已经暴露出来。尽管髓鞘发育的先天程序独立于神经系统活动而进行,但存在第二种髓鞘形成模式,其中髓鞘形成细胞中依赖于活动的塑性变化影响髓鞘结构和神经功能。这些互补的,可能在时间上重叠的,与活动无关和与活动有关的髓鞘形成模式在经验调节的髓鞘发育和可塑性模型中结晶,对神经功能具有广泛的意义。在本文中,我考虑了髓磷脂对神经回路功能的贡献,经验对髓磷脂微结构的动态影响以及髓磷脂可塑性在认知中的作用。

更新日期:2018-07-09
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