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Differences in Visual-Spatial Input May Underlie Different Compression Properties of Firing Fields for Grid Cell Modules in Medial Entorhinal Cortex

机译:视觉空间输入的差异可能是内侧内嗅皮层网格单元模块的发射场压缩特性的不同

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摘要

Firing fields of grid cells in medial entorhinal cortex show compression or expansion after manipulations of the location of environmental barriers. This compression or expansion could be selective for individual grid cell modules with particular properties of spatial scaling. We present a model for differences in the response of modules to barrier location that arise from different mechanisms for the influence of visual features on the computation of location that drives grid cell firing patterns. These differences could arise from differences in the position of visual features within the visual field. When location was computed from the movement of visual features on the ground plane (optic flow) in the ventral visual field, this resulted in grid cell spatial firing that was not sensitive to barrier location in modules modeled with small spacing between grid cell firing fields. In contrast, when location was computed from static visual features on walls of barriers, i.e. in the more dorsal visual field, this resulted in grid cell spatial firing that compressed or expanded based on the barrier locations in modules modeled with large spacing between grid cell firing fields. This indicates that different grid cell modules might have differential properties for computing location based on visual cues, or the spatial radius of sensitivity to visual cues might differ between modules.
机译:在操纵环境屏障的位置后,内侧内嗅皮层的网格细胞的射击场显示压缩或膨胀。对于具有空间缩放的特定属性的单个网格单元模块,此压缩或扩展可能是选择性的。我们提出了一个模型,该模型针对模块对障碍物位置的响应的差异,该差异是由于视觉特征对驱动网格单元点火模式的位置的影响机制不同而引起的。这些差异可能是由于视野内视觉特征位置的差异引起的。当根据腹地视野中地面上的视觉特征(光流)的移动来计算位置时,这会导致网格单元空间激发对在网格单元激发场之间具有较小间距的模块中的屏障位置不敏感。相比之下,当根据障碍物壁上的静态视觉特征(即在更背面的视野中)计算位置时,这会导致网格单元空间射击,该射击基于基于网格单元射击之间间隔较大的模块中的屏障位置而压缩或扩展领域。这表明不同的网格单元模块可能具有基于视觉提示来计算位置的不同属性,或者模块之间对视觉提示的敏感度的空间半径可能有所不同。

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