在分子和经验之间:协调活动的早期模式在皮层地图和感觉能力发展中的作用

Ileana L. Hanganu-Opatz
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引用次数: 121

摘要

处理来自环境的信息的感觉系统依赖于精确形成和完善的神经网络,这些神经网络在不同的皮层下和皮层水平上构建感觉受体上皮的图谱。这些感觉地图具有相似的功能原理,并根据视觉、体感和听觉系统共同的发育过程出现。虽然分子线索设置皮质-皮质下地形的粗糙组织,但已知其细化在关键时期依赖经验的电活动的影响下成功。然而,在环境输入对感觉地图产生有意义的影响之前,协调的活动模式就会使皮质-皮质下网络同步。最近的研究阐明了这些早期活动模式产生的细胞和网络机制,并强调了它们在物种间的相似性。此外,经验独立活动似乎是感觉网络和皮质-皮质下映射成熟的功能模板。未来研究的一个主要目标将是分析这种早期活动如何与分子线索相互作用,并确定它是允许的还是支持感官地形的建立。
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Between molecules and experience: Role of early patterns of coordinated activity for the development of cortical maps and sensory abilities

Sensory systems processing information from the environment rely on precisely formed and refined neuronal networks that build maps of sensory receptor epithelia at different subcortical and cortical levels. These sensory maps share similar principles of function and emerge according to developmental processes common in visual, somatosensory and auditory systems. Whereas molecular cues set the coarse organization of cortico-subcortical topography, its refinement is known to succeed under the influence of experience-dependent electrical activity during critical periods. However, coordinated patterns of activity synchronize the cortico-subcortical networks long before the meaningful impact of environmental inputs on sensory maps. Recent studies elucidated the cellular and network mechanisms underlying the generation of these early patterns of activity and highlighted their similarities across species. Moreover, the experience-independent activity appears to act as a functional template for the maturation of sensory networks and cortico-subcortical maps. A major goal for future research will be to analyze how this early activity interacts with the molecular cues and to determine whether it is permissive or rather supporting for the establishment of sensory topography.

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Brain Research Reviews
Brain Research Reviews 医学-神经科学
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