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小鼠视觉丘脑内膝状体-皮质投射的多样性

Geniculo-Cortical Projection Diversity Revealed within the Mouse Visual Thalamus.

作者信息

Leiwe Marcus N, Hendry Aenea C, Bard Andrew D, Eglen Stephen J, Lowe Andrew S, Thompson Ian D

机构信息

MRC Centre for Developmental Neurobiology, King's College London, Guy's Campus, London, United Kingdom.

Cambridge Computational Biology Institute, Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Cambridge, United Kingdom.

出版信息

PLoS One. 2016 Jan 4;11(1):e0144846. doi: 10.1371/journal.pone.0144846. eCollection 2016.

Abstract

The mouse dorsal lateral geniculate nucleus (dLGN) is an intermediary between retina and primary visual cortex (V1). Recent investigations are beginning to reveal regional complexity in mouse dLGN. Using local injections of retrograde tracers into V1 of adult and neonatal mice, we examined the developing organisation of geniculate projection columns: the population of dLGN-V1 projection neurons that converge in cortex. Serial sectioning of the dLGN enabled the distribution of labelled projection neurons to be reconstructed and collated within a common standardised space. This enabled us to determine: the organisation of cells within the dLGN-V1 projection columns; their internal organisation (topology); and their order relative to V1 (topography). Here, we report parameters of projection columns that are highly variable in young animals and refined in the adult, exhibiting profiles consistent with shell and core zones of the dLGN. Additionally, such profiles are disrupted in adult animals with reduced correlated spontaneous activity during development. Assessing the variability between groups with partial least squares regression suggests that 4-6 cryptic lamina may exist along the length of the projection column. Our findings further spotlight the diversity of the mouse dLGN--an increasingly important model system for understanding the pre-cortical organisation and processing of visual information. Furthermore, our approach of using standardised spaces and pooling information across many animals will enhance future functional studies of the dLGN.

摘要

小鼠背外侧膝状核(dLGN)是视网膜与初级视觉皮层(V1)之间的一个中间结构。最近的研究开始揭示小鼠dLGN的区域复杂性。我们通过向成年和新生小鼠的V1局部注射逆行示踪剂,研究了膝状投射柱的发育组织:即汇聚在皮层的dLGN-V1投射神经元群体。对dLGN进行连续切片,使得能够在一个共同的标准化空间内重建和整理标记投射神经元的分布。这使我们能够确定:dLGN-V1投射柱内细胞的组织方式;它们的内部组织(拓扑结构);以及它们相对于V1的顺序(地形学)。在这里,我们报告了投射柱的参数,这些参数在幼小动物中高度可变,在成年动物中得到细化,呈现出与dLGN的壳区和核心区一致的分布特征。此外,在发育过程中相关自发活动减少的成年动物中,这些分布特征会受到破坏。用偏最小二乘回归评估组间变异性表明,沿着投射柱长度可能存在4 - 6个隐匿层。我们的研究结果进一步凸显了小鼠dLGN的多样性——这是一个对于理解视觉信息的皮质前组织和处理越来越重要的模型系统。此外,我们使用标准化空间并整合多只动物信息的方法将加强未来对dLGN的功能研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9716/4699701/1837a77662fd/pone.0144846.g001.jpg

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