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ON and OFF subfield organization of layer 2/3 neurons in tree shrew visual cortex

机译:树sh 2视觉皮层中2/3层神经元的ON和OFF子域组织

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摘要

In vivo 2-photon imaging of calcium sensors in visual cortex has provided a host of new insights into the fine scale columnar mapping of response properties like orientation, direction, and visual space. Extracellular recording in carnivores have shown a columnar segregation of ON- and OFF-center geniculate inputs in layer 4, which could provide the basis for the generation of orientation selectivity. However, the spatial arrangement of ON and OFF in layer 2/3 has not been addressed. In this study we used 2-photon imaging of GCamP6s calcium fluorescent signals to map the receptive fields of thousands of neurons in layer 2/3 of tree shrew visual cortex with reverse correlation using sparse noise. We found a diverse array of receptive field properties in layer 2/3 including neurons with classic simple, complex and single sign receptive fields (either ON or OFF). The ON and OFF subfields in layer 2/3 were found to exhibit topologically distinct relationships with the maps of visual space and orientation preference. In most cases, the centers of OFF subfields for neurons in a given region of cortex were confined to a compact region of visual space and displayed a smooth retinotopic progression, while the centers of the ON subfields were distributed over a wider region of visual space and displayed less retinotopic precision. Consistent with the arrangement of ON and OFF subfields of simple cells in other species, the angle of displacement in visual space of the ON and OFF subfields for individual neurons could be used to predict the organization of the orientation map. Taken together, these results suggest that the differential arrangement of ON and OFF subfield centers by cortical circuits meets the conjoint constraints of mapping both visuotopy and orientation in a single population of neurons and in a fashion that preserves continuity for both stimulus features. Meeting abstract presented at VSS 2015.
机译:视觉皮层中钙传感器的体内2光子成像为响应特性(如方向,方向和视觉空间)的精细比例柱状映射提供了许多新见解。食肉动物的细胞外记录显示出第4层中ON和OFF中心膝状体输入的柱状分离,这可以为产生方向选择性提供基础。但是,第2/3层中ON和OFF的空间布置尚未解决。在这项研究中,我们使用GCamP6s钙荧光信号的2光子成像来绘制树sh视觉皮层2/3层中成千上万个神经元的感受野,并使用稀疏噪声进行反向相关。我们在第2/3层中发现了各种各样的感受野特性,包括具有经典简单,复杂和单信号感受野(ON或OFF)的神经元。发现2/3层中的ON和OFF子字段与视觉空间图和方向偏好图呈现拓扑上不同的关系。在大多数情况下,给定皮质区域中神经元的OFF子场的中心被限制在视觉空间的紧凑区域中,并显示出平滑的视网膜原位进展,而ON子场的中心则分布在更宽的视觉空间区域中,并且显示的视黄醛精度较低。与其他物种中简单细胞的ON和OFF子域的排列方式一致,单个神经元的ON和OFF子域在视觉空间中的位移角度可用于预测方向图的组织。两者合计,这些结果表明皮层电路的ON和OFF子场中心的差异排列满足了单个神经元群体中映射视觉定位和方向的联合约束,并且保持了两种刺激特征的连续性。会议摘要在VSS 2015上发表。

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