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覆盖范围、连续性与视觉皮层结构

Coverage, continuity, and visual cortical architecture.

作者信息

Keil Wolfgang, Wolf Fred

机构信息

Max-Planck-Institute for Dynamics and Self-organization, Am Fassberg 17, D-37077 Göttingen, Germany.

出版信息

Neural Syst Circuits. 2011 Dec 29;1:17. doi: 10.1186/2042-1001-1-17.

Abstract

BACKGROUND

The primary visual cortex of many mammals contains a continuous representation of visual space, with a roughly repetitive aperiodic map of orientation preferences superimposed. It was recently found that orientation preference maps (OPMs) obey statistical laws which are apparently invariant among species widely separated in eutherian evolution. Here, we examine whether one of the most prominent models for the optimization of cortical maps, the elastic net (EN) model, can reproduce this common design. The EN model generates representations which optimally trade of stimulus space coverage and map continuity. While this model has been used in numerous studies, no analytical results about the precise layout of the predicted OPMs have been obtained so far.

RESULTS

We present a mathematical approach to analytically calculate the cortical representations predicted by the EN model for the joint mapping of stimulus position and orientation. We find that in all the previously studied regimes, predicted OPM layouts are perfectly periodic. An unbiased search through the EN parameter space identifies a novel regime of aperiodic OPMs with pinwheel densities lower than found in experiments. In an extreme limit, aperiodic OPMs quantitatively resembling experimental observations emerge. Stabilization of these layouts results from strong nonlocal interactions rather than from a coverage-continuity-compromise.

CONCLUSIONS

Our results demonstrate that optimization models for stimulus representations dominated by nonlocal suppressive interactions are in principle capable of correctly predicting the common OPM design. They question that visual cortical feature representations can be explained by a coverage-continuity-compromise.

摘要

背景

许多哺乳动物的初级视觉皮层包含视觉空间的连续表征,其上叠加有大致重复的非周期性方向偏好图谱。最近发现,方向偏好图谱(OPM)遵循统计规律,这些规律在真兽类进化中广泛分离的物种之间显然是不变的。在这里,我们研究皮层图谱优化的最突出模型之一——弹性网(EN)模型,是否能够重现这种共同设计。EN模型生成的表征能在刺激空间覆盖和图谱连续性之间进行最优权衡。虽然该模型已在众多研究中使用,但到目前为止尚未获得关于预测的OPM精确布局的分析结果。

结果

我们提出一种数学方法,用于分析计算EN模型预测的用于刺激位置和方向联合映射的皮层表征。我们发现,在所有先前研究的情况下,预测的OPM布局都是完全周期性的。在EN参数空间中进行无偏搜索,确定了一种新的非周期性OPM状态,其风车密度低于实验中发现的密度。在一个极端情况下,出现了在数量上类似于实验观察结果的非周期性OPM。这些布局的稳定源于强烈的非局部相互作用,而非源于覆盖 - 连续性折衷。

结论

我们的结果表明,由非局部抑制相互作用主导的刺激表征优化模型原则上能够正确预测常见的OPM设计。它们对视觉皮层特征表征能否通过覆盖 - 连续性折衷来解释提出了质疑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eea8/3283456/1fdfc8d0ecc8/2042-1001-1-17-1.jpg

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