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首页> 外文期刊>Frontiers in Human Neuroscience >Aesthetics by Numbers: Links between Perceived Texture Qualities and Computed Visual Texture Properties
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Aesthetics by Numbers: Links between Perceived Texture Qualities and Computed Visual Texture Properties

机译:数字美学:感知的纹理质量与计算的视觉纹理属性之间的联系

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Our world is filled with texture. For the human visual system, this is an important source of information for assessing environmental and material properties. Indeed—and presumably for this reason—the human visual system has regions dedicated to processing textures. Despite their abundance and apparent relevance, only recently the relationships between texture features and high-level judgments have captured the interest of mainstream science, despite long-standing indications for such relationships. In this study, we explore such relationships, as these might be used to predict perceived texture qualities. This is relevant, not only from a psychologicaleuroscience perspective, but also for more applied fields such as design, architecture, and the visual arts. In two separate experiments, observers judged various qualities of visual textures such as beauty, roughness, naturalness, elegance, and complexity. Based on factor analysis, we find that in both experiments, ~75% of the variability in the judgments could be explained by a two-dimensional space, with axes that are closely aligned to the beauty and roughness judgments. That a two-dimensional judgment space suffices to capture most of the variability in the perceived texture qualities suggests that observers use a relatively limited set of internal scales on which to base various judgments, including aesthetic ones. Finally, for both of these judgments, we determined the relationship with a large number of texture features computed for each of the texture stimuli. We find that the presence of lower spatial frequencies, oblique orientations, higher intensity variation, higher saturation, and redness correlates with higher beauty ratings. Features that captured image intensity and uniformity correlated with roughness ratings. Therefore, a number of computational texture features are predictive of these judgments. This suggests that perceived texture qualities—including the aesthetic appreciation—are sufficiently universal to be predicted—with reasonable accuracy—based on the computed feature content of the textures.
机译:我们的世界充满了质感。对于人类视觉系统,这是评估环境和材料特性的重要信息来源。确实是(并且可能是出于这个原因)人类视觉系统具有专用于处理纹理的区域。尽管它们的丰富性和明显的相关性,但直到最近,纹理特征和高级判断之间的关系才引起了主流科学的兴趣,尽管这种关系已长期存在。在这项研究中,我们探索了这样的关系,因为它们可以用来预测感知的纹理质量。这不仅是从心理学/神经科学的角度来看,而且对于设计,建筑和视觉艺术等更多应用领域也很重要。在两个单独的实验中,观察者判断了视觉纹理的各种品质,例如美观,粗糙,自然,优雅和复杂。基于因子分析,我们发现在两个实验中,判断中的〜75%的变异性可以由二维空间解释,其二维轴与外观和粗糙度判断紧密相关。二维判断空间足以捕获所感知的纹理质量的大部分可变性,这表明观察者使用相对有限的内部标尺集作为各种判断(包括美学判断)的基础。最后,对于这两个判断,我们确定了与为每个纹理刺激计算的大量纹理特征的关系。我们发现较低的空间频率,倾斜的方向,较高的强度变化,较高的饱和度和发红的存在与较高的美容等级相关。捕获图像强度和均匀度的功能与粗糙度等级相关。因此,许多计算纹理特征可预测这些判断。这表明,基于计算出的纹理特征内容,感知到的纹理质量(包括美学欣赏)已经足够普遍,可以以合理的准确性进行预测。

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