arXiv:2509.15748cs.CVq-bio.NC2025-09被引 1

提出混合李半群与级联结构,统一建模视觉感受野在不同参数下的响应关系。

Hybrid Lie semi-group and cascade structures for the generalized Gaussian derivative model for visual receptive fields

  • 结合李群半群思想,建立感受野响应的微小变化关系。
  • 发现粗尺度响应可通过细尺度输出叠加小滤波器递推计算。
  • 适用于生物视觉模型构建与高效感受野计算设计。

由于真实图像在不同观察条件下因自然变换导致结构差异,视觉层级早期层的感受野响应易受几何变换影响。本文通过协变感受野族处理这一变异性,扩展感受野形状以覆盖图像变换的自由度。针对多参数感受野族中不同形状参数下的空间与时空响应关系,提出两种机制:(i) 微观的无穷小关系,基于半群与李群思想;(ii) 宏观的级联平滑特性,即粗尺度响应可由细尺度输出叠加小支持增量滤波器递推得到,结构类似李代数但具方向偏好。结果深化了对感受野响应跨参数关系的理解,可用于设计更高效的多参数感受野响应计算方案,并为生物视觉中简单细胞的理论建模提供理想化框架。

原文摘要 · Abstract (English)

Because of the variabilities of real-world image structures under the natural image transformations that arise when observing similar objects or spatio-temporal events under different viewing conditions, the receptive field responses computed in the earliest layers of the visual hierarchy may be strongly influenced by such geometric image transformations. One way of handling this variability is by basing the vision system on covariant receptive field families, which expand the receptive field shapes over the degrees of freedom in the image transformations. This paper addresses the problem of deriving relationships between spatial and spatio-temporal receptive field responses obtained for different values of the shape parameters in the resulting multi-parameter families of receptive fields. For this purpose, we derive both (i) infinitesimal relationships, roughly corresponding to a combination of notions from semi-groups and Lie groups, as well as (ii) macroscopic cascade smoothing properties, which describe how receptive field responses at coarser spatial and temporal scales can be computed by applying smaller support incremental filters to the output from corresponding receptive fields at finer spatial and temporal scales, structurally related to the notion of Lie algebras, although with directional preferences. The presented results provide (i) a deeper understanding of the relationships between spatial and spatio-temporal receptive field responses for different values of the filter parameters, which can be used for both (ii) designing more efficient schemes for computing receptive field responses over populations of multi-parameter families of receptive fields, as well as (iii)~formulating idealized theoretical models of the computations of simple cells in biological vision.

视觉感知感受野建模李群

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