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PNAS Plus: History of art paintings through the lens of entropy and complexity

机译:PNAS Plus:从熵和复杂性的角度看艺术绘画的历史

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摘要

Art is the ultimate expression of human creativity that is deeply influenced by the philosophy and culture of the corresponding historical epoch. The quantitative analysis of art is therefore essential for better understanding human cultural evolution. Here, we present a large-scale quantitative analysis of almost 140,000 paintings, spanning nearly a millennium of art history. Based on the local spatial patterns in the images of these paintings, we estimate the permutation entropy and the statistical complexity of each painting. These measures map the degree of visual order of artworks into a scale of order–disorder and simplicity–complexity that locally reflects qualitative categories proposed by art historians. The dynamical behavior of these measures reveals a clear temporal evolution of art, marked by transitions that agree with the main historical periods of art. Our research shows that different artistic styles have a distinct average degree of entropy and complexity, thus allowing a hierarchical organization and clustering of styles according to these metrics. We have further verified that the identified groups correspond well with the textual content used to qualitatively describe the styles and the applied complexity–entropy measures can be used for an effective classification of artworks.
机译:艺术是人类创造力的最终表达,受到相应历史时代的哲学和文化的深刻影响。因此,对艺术进行定量分析对于更好地理解人类文化进化至关重要。在这里,我们对将近一千年的艺术史进行了近14万幅画作的大规模定量分析。基于这些绘画图像中的局部空间模式,我们估计每幅绘画的置换熵和统计复杂度。这些措施将艺术品的视觉秩序程度映射为一定程度的秩序—无序和简单—复杂,以局部反映艺术史学家提出的定性类别。这些措施的动态行为揭示了艺术的明显时间演变,其特征是与艺术的主要历史时期相吻合的过渡。我们的研究表明,不同的艺术风格具有不同的平均熵和复杂度,因此可以根据这些指标进行层次化组织和样式聚类。我们进一步证实,所识别的群体与用于定性描述样式的文字内容非常吻合,并且所应用的复杂性-熵测度可以用于艺术品的有效分类。

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