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小鼠丘脑外侧后核神经元与其视觉皮层投射靶点之间的系统地形关系。

A systematic topographical relationship between mouse lateral posterior thalamic neurons and their visual cortical projection targets.

作者信息

Juavinett Ashley L, Kim Euiseok J, Collins Hannah C, Callaway Edward M

机构信息

The Salk Institute for Biological Studies, La Jolla, California.

Neurosciences Program UC San Diego, La Jolla, California.

出版信息

J Comp Neurol. 2020 Jan 1;528(1):95-107. doi: 10.1002/cne.24737. Epub 2019 Jul 12.

Abstract

Higher-order visual thalamus communicates broadly and bi-directionally with primary and extrastriate cortical areas in various mammals. In primates, the pulvinar is a topographically and functionally organized thalamic nucleus that is largely dedicated to visual processing. Still, a more granular connectivity map is needed to understand the role of thalamocortical loops in visually guided behavior. Similarly, the secondary visual thalamic nucleus in mice (the lateral posterior nucleus, LP) has extensive connections with cortex. To resolve the precise connectivity of these circuits, we first mapped mouse visual cortical areas using intrinsic signal optical imaging and then injected fluorescently tagged retrograde tracers (cholera toxin subunit B) into retinotopically-matched locations in various combinations of seven different visual areas. We find that LP neurons representing matched regions in visual space but projecting to different extrastriate areas are found in different topographically organized zones, with few double-labeled cells (~4-6%). In addition, V1 and extrastriate visual areas received input from the ventrolateral part of the laterodorsal nucleus of the thalamus (LDVL). These observations indicate that the thalamus provides topographically organized circuits to each mouse visual area and raise new questions about the contributions from LP and LDVL to cortical activity.

摘要

在各种哺乳动物中,高级视觉丘脑与初级和纹外皮层区域广泛且双向地进行交流。在灵长类动物中,丘脑枕是一个在地形和功能上有组织的丘脑核团,主要致力于视觉处理。然而,仍需要一个更精细的连接图谱来理解丘脑皮质环路在视觉引导行为中的作用。同样,小鼠的次级视觉丘脑核(外侧后核,LP)与皮层有广泛的连接。为了解析这些回路的精确连接,我们首先使用内在信号光学成像绘制小鼠视觉皮层区域,然后将荧光标记的逆行示踪剂(霍乱毒素B亚基)以七种不同视觉区域的各种组合注入视网膜拓扑匹配的位置。我们发现,代表视觉空间中匹配区域但投射到不同纹外区域的LP神经元位于不同的地形组织区域,很少有双标记细胞(约4 - 6%)。此外,V1和纹外视觉区域接受来自丘脑背外侧核腹侧部分(LDVL)的输入。这些观察结果表明,丘脑为每个小鼠视觉区域提供了地形组织的回路,并引发了关于LP和LDVL对皮层活动贡献的新问题。

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