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自上而下对立体深度感知的影响。

Top-down influences on stereoscopic depth-perception.

作者信息

Bülthoff I, Bülthoff H, Sinha P

机构信息

Max-Planck-Institut für biologische Kybernetik, Tübingen, Germany.

出版信息

Nat Neurosci. 1998 Jul;1(3):254-7. doi: 10.1038/699.

Abstract

The interaction between depth perception and object recognition has important implications for the nature of mental object representations and models of hierarchical organization of visual processing. It is often believed that the computation of depth influences subsequent high-level object recognition processes, and that depth processing is an early vision task that is largely immune to 'top-down' object-specific influences, such as object recognition. Here we present experimental evidence that challenges both these assumptions in the specific context of stereoscopic depth-perception. We have found that observers' recognition of familiar dynamic three-dimensional (3D) objects is unaffected even when the objects' depth structure is scrambled, as long as their two-dimensional (2D) projections are unchanged. Furthermore, the observers seem perceptually unaware of the depth anomalies introduced by scrambling. We attribute the latter result to a top-down recognition-based influence whereby expectations about a familiar object's 3D structure override the true stereoscopic information.

摘要

深度感知与物体识别之间的相互作用,对于心理物体表征的本质以及视觉处理层次组织模型具有重要意义。人们通常认为,深度计算会影响后续的高级物体识别过程,并且深度处理是一项早期视觉任务,在很大程度上不受诸如物体识别等“自上而下”的特定物体影响。在此,我们提供实验证据,在立体深度感知的特定背景下对这两个假设提出质疑。我们发现,只要熟悉的动态三维(3D)物体的二维(2D)投影不变,即使其深度结构被打乱,观察者对这些物体的识别也不会受到影响。此外,观察者在感知上似乎并未意识到由打乱深度所引入的异常。我们将后一结果归因于一种基于识别的自上而下的影响,即对熟悉物体3D结构的预期超越了真实的立体信息。

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