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小鼠视觉皮层的拓扑结构与区域组织。

Topography and areal organization of mouse visual cortex.

作者信息

Garrett Marina E, Nauhaus Ian, Marshel James H, Callaway Edward M

机构信息

Systems Neurobiology Laboratories, Salk Institute for Biological Studies, La Jolla, California 92037, and Neurosciences Graduate Program, University of California San Diego, La Jolla, California 92037.

Systems Neurobiology Laboratories, Salk Institute for Biological Studies, La Jolla, California 92037, and.

出版信息

J Neurosci. 2014 Sep 10;34(37):12587-600. doi: 10.1523/JNEUROSCI.1124-14.2014.

Abstract

To guide future experiments aimed at understanding the mouse visual system, it is essential that we have a solid handle on the global topography of visual cortical areas. Ideally, the method used to measure cortical topography is objective, robust, and simple enough to guide subsequent targeting of visual areas in each subject. We developed an automated method that uses retinotopic maps of mouse visual cortex obtained with intrinsic signal imaging (Schuett et al., 2002; Kalatsky and Stryker, 2003; Marshel et al., 2011) and applies an algorithm to automatically identify cortical regions that satisfy a set of quantifiable criteria for what constitutes a visual area. This approach facilitated detailed parcellation of mouse visual cortex, delineating nine known areas (primary visual cortex, lateromedial area, anterolateral area, rostrolateral area, anteromedial area, posteromedial area, laterointermediate area, posterior area, and postrhinal area), and revealing two additional areas that have not been previously described as visuotopically mapped in mice (laterolateral anterior area and medial area). Using the topographic maps and defined area boundaries from each animal, we characterized several features of map organization, including variability in area position, area size, visual field coverage, and cortical magnification. We demonstrate that higher areas in mice often have representations that are incomplete or biased toward particular regions of visual space, suggestive of specializations for processing specific types of information about the environment. This work provides a comprehensive description of mouse visuotopic organization and describes essential tools for accurate functional localization of visual areas.

摘要

为指导未来旨在了解小鼠视觉系统的实验,我们必须扎实掌握视觉皮层区域的整体地形图。理想情况下,用于测量皮层地形图的方法应客观、稳健且足够简单,以便指导对每个实验对象视觉区域的后续定位。我们开发了一种自动化方法,该方法利用通过内在信号成像获得的小鼠视觉皮层视网膜拓扑图(舒特等人,2002年;卡拉茨基和斯特里克,2003年;马舍尔等人,2011年),并应用一种算法自动识别满足一组关于构成视觉区域的可量化标准的皮层区域。这种方法有助于对小鼠视觉皮层进行详细的分区,勾勒出九个已知区域(初级视觉皮层、外侧中间区域、前外侧区域、 rostrolateral区域、前内侧区域、后内侧区域、外侧中间区域、后部区域和嗅周区域),并揭示出另外两个以前未被描述为在小鼠中具有视网膜拓扑映射的区域(外侧前区域和内侧区域)。利用每只动物的地形图和定义的区域边界,我们描述了图谱组织的几个特征,包括区域位置、区域大小、视野覆盖范围和皮层放大率的变异性。我们证明,小鼠中的高级区域通常具有不完整或偏向视觉空间特定区域的表征,这表明在处理有关环境的特定类型信息方面存在专门化。这项工作提供了对小鼠视网膜拓扑组织的全面描述,并描述了用于视觉区域准确定位的重要工具。

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