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非灵长类物种视觉皮层的区域实现映射:对发育和进化的启示

Mapping arealisation of the visual cortex of non-primate species: lessons for development and evolution.

作者信息

Homman-Ludiye Jihane, Bourne James A

机构信息

Bourne Group, Australian Regenerative Medicine Institute, Monash University Clayton, VIC, Australia.

出版信息

Front Neural Circuits. 2014 Jul 4;8:79. doi: 10.3389/fncir.2014.00079. eCollection 2014.

Abstract

The integration of the visual stimulus takes place at the level of the neocortex, organized in anatomically distinct and functionally unique areas. Primates, including humans, are heavily dependent on vision, with approximately 50% of their neocortical surface dedicated to visual processing and possess many more visual areas than any other mammal, making them the model of choice to study visual cortical arealisation. However, in order to identify the mechanisms responsible for patterning the developing neocortex, specifying area identity as well as elucidate events that have enabled the evolution of the complex primate visual cortex, it is essential to gain access to the cortical maps of alternative species. To this end, species including the mouse have driven the identification of cellular markers, which possess an area-specific expression profile, the development of new tools to label connections and technological advance in imaging techniques enabling monitoring of cortical activity in a behaving animal. In this review we present non-primate species that have contributed to elucidating the evolution and development of the visual cortex. We describe the current understanding of the mechanisms supporting the establishment of areal borders during development, mainly gained in the mouse thanks to the availability of genetically modified lines but also the limitations of the mouse model and the need for alternate species.

摘要

视觉刺激的整合发生在新皮层水平,新皮层由解剖学上不同且功能独特的区域组成。包括人类在内的灵长类动物严重依赖视觉,其新皮层表面约50%用于视觉处理,并且拥有比其他任何哺乳动物更多的视觉区域,这使其成为研究视觉皮层区域化的首选模型。然而,为了确定负责发育中的新皮层形成模式、指定区域身份以及阐明促成复杂灵长类视觉皮层进化的事件的机制,获取其他物种的皮层图谱至关重要。为此,包括小鼠在内的物种推动了细胞标记物的识别,这些标记物具有区域特异性表达谱,推动了标记连接的新工具的开发以及成像技术的技术进步,从而能够监测行为动物的皮层活动。在这篇综述中,我们介绍了有助于阐明视觉皮层进化和发育的非灵长类物种。我们描述了目前对支持发育过程中区域边界建立机制的理解,主要是通过基因改造品系在小鼠中获得的,但也提到了小鼠模型的局限性以及对其他物种的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82cc/4081835/02e3a99cd90a/fncir-08-00079-g0001.jpg

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