Redolfi Nelly, Lodovichi Claudia
Department of Biomedical Sciences, University of Padua, Padua, Italy.
Neuroscience Institute CNR, Padua, Italy.
Front Cell Neurosci. 2021 Mar 9;15:637536. doi: 10.3389/fncel.2021.637536. eCollection 2021.
Electrical activity has a key role in shaping neuronal circuits during development. In most sensory modalities, early in development, internally generated spontaneous activity sculpts the initial layout of neuronal wiring. With the maturation of the sense organs, the system relies more on sensory-evoked electrical activity. Stimuli-driven neuronal discharge is required for the transformation of immature circuits in the specific patterns of neuronal connectivity that subserve normal brain function. The olfactory system (OS) differs from this organizational plan. Despite the important role of odorant receptors (ORs) in shaping olfactory topography, odor-evoked activity does not have a prominent role in refining neuronal wiring. On the contrary, afferent spontaneous discharge is required to achieve and maintain the specific diagram of connectivity that defines the topography of the olfactory bulb (OB). Here, we provide an overview of the development of olfactory topography, with a focus on the role of afferent spontaneous discharge in the formation and maintenance of the specific synaptic contacts that result in the topographic organization of the OB.
在发育过程中,电活动在塑造神经回路方面起着关键作用。在大多数感觉模式中,在发育早期,内源性自发活动塑造了神经元布线的初始布局。随着感觉器官的成熟,该系统更多地依赖于感觉诱发的电活动。刺激驱动的神经元放电是未成熟回路转变为有助于正常脑功能的特定神经元连接模式所必需的。嗅觉系统(OS)不同于这种组织模式。尽管气味受体(ORs)在塑造嗅觉拓扑结构中起着重要作用,但气味诱发的活动在优化神经元布线方面并不起突出作用。相反,传入自发放电是实现和维持定义嗅球(OB)拓扑结构的特定连接图谱所必需的。在此,我们概述嗅觉拓扑结构的发育,重点关注传入自发放电在形成和维持导致OB拓扑组织的特定突触接触中的作用。