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Environmental deformations dynamically shift the grid cell spatial metric

机译:环境变形动态改变网格单元空间度量

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In familiar environments, the firing fields of entorhinal grid cells form regular triangular lattices. However, when the geometric shape of the environment is deformed, these time-averaged grid patterns are distorted in a grid scale-dependent and local manner. We hypothesized that this distortion in part reflects dynamic anchoring of the grid code to displaced boundaries, possibly through border cell-grid cell interactions. To test this hypothesis, we first reanalyzed two existing rodent grid rescaling datasets to identify previously unrecognized boundary-tethered shifts in grid phase that contribute to the appearance of rescaling. We then demonstrated in a computational model that boundary-tethered phase shifts, as well as scale-dependent and local distortions of the time-averaged grid pattern, could emerge from border-grid interactions without altering inherent grid scale. Together, these results demonstrate that environmental deformations induce history-dependent shifts in grid phase, and implicate border-grid interactions as a potential mechanism underlying these dynamics.
机译:在熟悉的环境中,内嗅网格细胞的发射场形成规则的三角形晶格。但是,当环境的几何形状变形时,这些时间平均的网格图案会以网格比例依赖和局部的方式失真。我们假设这种失真部分反映了网格代码可能通过边界单元-网格单元之间的交互作用而动态地锚定到位移的边界。为了检验该假设,我们首先重新分析了两个现有的啮齿动物网格重缩放数据集,以识别网格相位中先前无法识别的边界束缚移位,这些移位有助于重缩放的出现。然后,我们在计算模型中证明,边界网格相移以及时间平均网格图案的比例依赖和局部失真可能会在不更改固有网格比例的情况下从边界网格交互作用中出现。总之,这些结果表明,环境变形引起了网格相中历史依赖的变化,并暗示了边界-网格交互作用是这些动力学基础的潜在机制。

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