Multimodal Learning 相关度: 7/10

TAVAE: A VAE with Adaptable Priors Explains Contextual Modulation in the Visual Cortex

Balázs Meszéna, Keith T. Murray, Julien Corbo, O. Batuhan Erkat, Márton A. Hajnal, Pierre-Olivier Polack, Gergő Orbán
arXiv: 2602.11956v1 发布: 2026-02-12 更新: 2026-02-12

AI 摘要

论文提出了任务可适应的VAE模型(TAVAE),用于解释视觉皮层中的上下文调制现象。

主要贡献

  • 提出了Task-Amortized VAE (TAVAE)
  • 验证了视觉系统可以按需学习灵活的任务特定上下文先验
  • 将生成模型中的潜变量后验与V1皮层的神经活动联系起来

方法论

构建了一个生成模型,优化V1视觉皮层处理简单区分任务的能力,并分析小鼠任务执行时的大规模神经活动记录。

原文摘要

The brain interprets visual information through learned regularities, a computation formalized as probabilistic inference under a prior. The visual cortex establishes priors for this inference, some delivered through established top-down connections that inform low-level cortices about statistics represented at higher levels in the cortical hierarchy. While evidence shows that adaptation leads to priors reflecting the structure of natural images, it remains unclear whether similar priors can be flexibly acquired when learning a specific task. To investigate this, we built a generative model of V1 optimized for a simple discrimination task and analyzed it together with large-scale recordings from mice performing an analogous task. In line with recent approaches, we assumed that neuronal activity in V1 corresponds to latent posteriors in the generative model, enabling investigation of task-related priors in neuronal responses. To obtain a flexible test bed, we extended the VAE formalism so that a task can be acquired efficiently by reusing previously learned representations. Task-specific priors learned by this Task-Amortized VAE were used to investigate biases in mice and model when presenting stimuli that violated trained task statistics. Mismatch between learned task statistics and incoming sensory evidence produced signatures of uncertainty in stimulus category in the TAVAE posterior, reflecting properties of bimodal response profiles in V1 recordings. The task-optimized generative model accounted for key characteristics of V1 population activity, including within-day updates to population responses. Our results confirm that flexible task-specific contextual priors can be learned on demand by the visual system and deployed as early as the entry level of visual cortex.

标签

VAE 视觉皮层 上下文调制 生成模型 神经科学

arXiv 分类

q-bio.NC cs.AI cs.LG