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我该何去何从?利用卷积神经网络解码场景处理和视觉空间记忆交互的时间神经动力学。

Where do I go? Decoding temporal neural dynamics of scene processing and visuospatial memory interactions using convolutional neural networks.

作者信息

Naveilhan Clément, Zory Raphaël, Ramanoël Stephen

机构信息

Université Côte d'Azur, LAMHESS, Nice, France.

Institut Universitaire de France (IUF), Paris, France.

出版信息

J Vis. 2025 Aug 1;25(10):15. doi: 10.1167/jov.25.10.15.

Abstract

Visual scene perception enables rapid interpretation of the surrounding environment by integrating multiple visual features related to task demands and context, which is essential for goal-directed behavior. In the present work, we investigated the temporal neural dynamics underlying the interaction between the processing of bottom-up visual features and top-down contextual knowledge during scene perception. We asked whether newly acquired spatial knowledge would immediately modulate the early neural responses involved in the extraction of navigational affordances available (i.e., the number of open doors). For this purpose, we analyzed electroencephalographic data from 30 participants performing interleaved blocks of a scene memory task and a visuospatial memory task in which we manipulated the number of navigational affordances available. We used convolutional neural networks coupled with gradient-weighted class activation mapping to assess the main electroencephalographic channels and time points contributing to the classification performances. The results indicated an early temporal window of integration in occipitoparietal activity (50-250 ms post stimulus) for several aspects of visual perception, including scene color and number of affordances, as well as for spatial memory content. Moreover, a convolutional neural network trained to detect affordances in the scene memory task failed to generalize to detect the same affordances after participants learned spatial information about goal position within the scene. Taken together, these results reveal an early common window of integration for scene and visuospatial memory information, with a specific and immediate top-down influence of newly acquired spatial knowledge on early neural correlates of scene perception.

摘要

视觉场景感知通过整合与任务需求和情境相关的多种视觉特征,实现对周围环境的快速解读,这对目标导向行为至关重要。在本研究中,我们探究了场景感知过程中自下而上的视觉特征处理与自上而下的情境知识之间相互作用的时间神经动力学。我们询问新获得的空间知识是否会立即调节参与提取可用导航线索(即开门数量)的早期神经反应。为此,我们分析了30名参与者的脑电图数据,这些参与者执行了场景记忆任务和视觉空间记忆任务的交错组块,其中我们操纵了可用导航线索的数量。我们使用卷积神经网络结合梯度加权类激活映射来评估对分类性能有贡献的主要脑电图通道和时间点。结果表明,枕顶叶活动存在一个早期整合时间窗口(刺激后50 - 250毫秒),涉及视觉感知的多个方面,包括场景颜色和线索数量,以及空间记忆内容。此外,在场景记忆任务中训练用于检测线索的卷积神经网络,在参与者学习了场景中目标位置的空间信息后,无法泛化以检测相同的线索。综上所述,这些结果揭示了场景和视觉空间记忆信息的早期共同整合窗口,新获得的空间知识对场景感知的早期神经关联具有特定且即时的自上而下影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c39/12400970/23ff448ec99f/jovi-25-10-15-f001.jpg

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