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活动依赖性髓鞘形成。

Activity-Dependent Myelination.

机构信息

Division of System Neuroscience, Kobe University Graduate School of Medicine, Kobe, Japan.

Core Research for Evolutional Science and Technology, Japan Science and Technology Agency, Saitama, Japan.

出版信息

Adv Exp Med Biol. 2019;1190:43-51. doi: 10.1007/978-981-32-9636-7_4.

Abstract

Oligodendrocyte form myelin around the axons to regulate the conduction velocity. Myelinated axons are composed of white matter to act as cables to connect distinct brain regions. Recent human MRI studies showed that the signal from white matter change in the people with special skills such as taxi driver, piano player, and juggling. The change of the white matter suggested that (1) The plasticity of myelination depends on neuronal activity (activity-dependent myelination) and (2) White matter plasticity is essential for brain functions. In this session, we discussed that how the un-electrical components, oligodendrocytes, and its precursor cells receive the signal from electrically active neurons and differentiate, proliferate, and myelinate the axons to modulate the activity of neuronal circuits, ultimately affect on their behaviors. In this review, we highlight the physiological functions of oligodendrocyte and their neuronal activity-dependent functions and thus show new insight for their contribution to brain functions.

摘要

少突胶质细胞围绕轴突形成髓鞘,以调节传导速度。髓鞘化的轴突由白质组成,充当连接不同脑区的电缆。最近的人类 MRI 研究表明,在具有特殊技能的人(如出租车司机、钢琴演奏者和杂耍演员)中,白质的信号会发生变化。白质的变化表明:(1)髓鞘形成的可塑性取决于神经元活动(活性依赖的髓鞘形成)和(2)白质可塑性对于大脑功能至关重要。在本次会议上,我们讨论了非电成分少突胶质细胞及其前体细胞如何接收来自电活性神经元的信号,以及它们如何分化、增殖和髓鞘化轴突,以调节神经元回路的活动,最终影响它们的行为。在这篇综述中,我们强调了少突胶质细胞的生理功能及其神经元活动依赖性功能,从而为它们对大脑功能的贡献提供了新的见解。

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