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眼优势柱在啮齿类动物和其他物种中的发育:再探关键期可塑性概念。

Development of ocular dominance columns across rodents and other species: revisiting the concept of critical period plasticity.

机构信息

Systems Neuroscience Section, Center for the Evolutionary Origins of Human Behavior, Kyoto University, Kyoto, Japan.

出版信息

Front Neural Circuits. 2024 Jul 5;18:1402700. doi: 10.3389/fncir.2024.1402700. eCollection 2024.

Abstract

The existence of cortical columns, regarded as computational units underlying both lower and higher-order information processing, has long been associated with highly evolved brains, and previous studies suggested their absence in rodents. However, recent discoveries have unveiled the presence of ocular dominance columns (ODCs) in the primary visual cortex (V1) of Long-Evans rats. These domains exhibit continuity from layer 2 through layer 6, confirming their identity as genuine ODCs. Notably, ODCs are also observed in Brown Norway rats, a strain closely related to wild rats, suggesting the physiological relevance of ODCs in natural survival contexts, although they are lacking in albino rats. This discovery has enabled researchers to explore the development and plasticity of cortical columns using a multidisciplinary approach, leveraging studies involving hundreds of individuals-an endeavor challenging in carnivore and primate species. Notably, developmental trajectories differ depending on the aspect under examination: while the distribution of geniculo-cortical afferent terminals indicates matured ODCs even before eye-opening, consistent with prevailing theories in carnivore/primate studies, examination of cortical neuron spiking activities reveals immature ODCs until postnatal day 35, suggesting delayed maturation of functional synapses which is dependent on visual experience. This developmental gap might be recognized as 'critical period' for ocular dominance plasticity in previous studies. In this article, I summarize cross-species differences in ODCs and geniculo-cortical network, followed by a discussion on the development, plasticity, and evolutionary significance of rat ODCs. I discuss classical and recent studies on critical period plasticity in the venue where critical period plasticity might be a component of experience-dependent development. Consequently, this series of studies prompts a paradigm shift in our understanding of species conservation of cortical columns and the nature of plasticity during the classical critical period.

摘要

皮层柱的存在被认为是低级和高级信息处理的计算单元,长期以来一直与高度进化的大脑相关联,先前的研究表明它们在啮齿动物中不存在。然而,最近的发现揭示了长耳大野鼠初级视觉皮层(V1)中存在眼优势柱(ODC)。这些区域从第 2 层到第 6 层连续存在,证实了它们作为真正 ODC 的身份。值得注意的是,Brown Norway 大鼠(一种与野生大鼠密切相关的品系)中也观察到了 ODC,这表明 ODC 在自然生存环境中的生理相关性,尽管白化大鼠中缺乏 ODC。这一发现使研究人员能够使用多学科方法探索皮层柱的发育和可塑性,利用涉及数百个人的研究——这在食肉动物和灵长类动物中是一项具有挑战性的任务。值得注意的是,发展轨迹因所检查的方面而异:虽然基因皮质传入末端的分布表明 ODC 在睁眼之前就已经成熟,这与食肉动物/灵长类动物研究中的主流理论一致,但对皮质神经元尖峰活动的检查表明,ODC 在出生后第 35 天之前不成熟,这表明功能突触的成熟延迟,这取决于视觉经验。在之前的研究中,这种发育差距可能被认为是眼优势可塑性的“关键期”。在本文中,我总结了 ODC 和视皮质网络的跨物种差异,然后讨论了大鼠 ODC 的发育、可塑性和进化意义。我讨论了经典和最近关于关键期可塑性的研究,关键期可塑性可能是经验依赖性发育的一个组成部分。因此,这一系列研究促使我们对皮层柱的物种保护和经典关键期内可塑性的本质的理解发生了范式转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2c4/11258045/2c043c17feac/fncir-18-1402700-g001.jpg

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