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小鼠上丘的方位柱。

Orientation columns in the mouse superior colliculus.

机构信息

Center for Brain Science, Department of Molecular and Cellular Biology, Harvard University, 52 Oxford Street, Cambridge, Massachusetts 02138, USA.

1] Center for Brain Science, Department of Molecular and Cellular Biology, Harvard University, 52 Oxford Street, Cambridge, Massachusetts 02138, USA [2] Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

Nature. 2015 Mar 12;519(7542):229-32. doi: 10.1038/nature14103. Epub 2014 Dec 17.

Abstract

More than twenty types of retinal ganglion cells conduct visual information from the eye to the rest of the brain. Each retinal ganglion cell type tessellates the retina in a regular mosaic, so that every point in visual space is processed for visual primitives such as contrast and motion. This information flows to two principal brain centres: the visual cortex and the superior colliculus. The superior colliculus plays an evolutionarily conserved role in visual behaviours, but its functional architecture is poorly understood. Here we report on population recordings of visual responses from neurons in the mouse superior colliculus. Many neurons respond preferentially to lines of a certain orientation or movement axis. We show that cells with similar orientation preferences form large patches that span the vertical thickness of the retinorecipient layers. This organization is strikingly different from the randomly interspersed orientation preferences in the mouse's visual cortex; instead, it resembles the orientation columns observed in the visual cortices of large mammals. Notably, adjacent superior colliculus orientation columns have only limited receptive field overlap. This is in contrast to the organization of visual cortex, where each point in the visual field activates neurons with all preferred orientations. Instead, the superior colliculus favours specific contour orientations within ∼30° regions of the visual field, a finding with implications for behavioural responses mediated by this brain centre.

摘要

超过二十种视网膜神经节细胞将视觉信息从眼睛传递到大脑的其他部位。每一种视网膜神经节细胞类型都以规则的镶嵌形式排列在视网膜上,从而使视觉空间中的每一个点都可以处理对比度和运动等视觉基元。这些信息流向两个主要的大脑中枢:视觉皮层和上丘。上丘在视觉行为中起着保守的进化作用,但它的功能结构仍不清楚。在这里,我们报告了从小鼠上丘神经元中记录到的视觉反应的群体记录。许多神经元对特定方向或运动轴的线条有优先反应。我们表明,具有相似取向偏好的细胞形成大的斑块,跨越视网膜接受层的垂直厚度。这种组织与小鼠视觉皮层中随机交错的取向偏好形成鲜明对比;相反,它类似于在大型哺乳动物的视觉皮层中观察到的方向柱。值得注意的是,相邻的上丘方向柱只有有限的感受野重叠。这与视觉皮层的组织形成对比,在视觉皮层中,视野中的每一个点都会激活具有所有偏好方向的神经元。相反,上丘在视野的 30°左右的区域内优先处理特定的轮廓方向,这一发现对该大脑中枢介导的行为反应有影响。

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