Barry Caswell, Hayman Robin, Burgess Neil, Jeffery Kathryn J
Institute of Cognitive Neuroscience, University College London, 17 Queen Square, London WC1N 3AR, UK.
Nat Neurosci. 2007 Jun;10(6):682-4. doi: 10.1038/nn1905. Epub 2007 May 7.
The firing pattern of entorhinal 'grid cells' is thought to provide an intrinsic metric for space. We report a strong experience-dependent environmental influence: the spatial scales of the grids (which are aligned and have fixed relative sizes within each animal) vary parametrically with changes to a familiar environment's size and shape. Thus grid scale reflects an interaction between intrinsic, path-integrative calculation of location and learned associations to the external environment.
内嗅皮层“网格细胞”的放电模式被认为可为空间提供一种内在度量。我们报告了一种强烈的经验依赖性环境影响:网格的空间尺度(在每只动物体内是对齐的且具有固定的相对大小)会随着熟悉环境的大小和形状变化而呈参数性变化。因此,网格尺度反映了位置的内在路径整合计算与对外部环境的学习关联之间的相互作用。