Background-matching patterns are attractive: support for a processing bias

Background-matching visual patterns are selected to minimize detection by predators. However, once detected, what effects do these patterns have on conspecific perception? In humans, considerable evidence supports a ‘processing bias’, by which people prefer images that match the spatial statistics of natural scenes, likely because the brain has evolved, or develops, to process such scenes efficiently. A direct but untested prediction of this bias is that people should prefer background-matching patterns compared to similar patterns that mismatch the spatial statistics of their surroundings. We conducted an online experiment to test this prediction on over 1700 participants. Our results show that a preference for the most frequent value of Fourier slope (a measure of spatial structure) observed in natural scenes can be modulated by an additional preference for background matching. Because the initial stages of perception that underlie the efficient processing of visual scenes are widely conserved among animals, especially vertebrates, we expect this preference for background-matching patterns to be shared by other organisms. Two overlooked potential implications are that some animals may choose display sites with spatial statistics matching their own phenotype, and that the evolution of visual signals will, variously, be constrained or facilitated by such preferences for background-matching patterns.

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Publication Details

Journal
Animal Behaviour
Published
2026-08-26
DOI
https://doi.org/10.1016/j.anbehav.2026.123700
Primary Topic
Face Recognition and Perception
Type
article
Field-Weighted Citation Impact
0.00

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article

Background-matching patterns are attractive: support for a processing bias

Innes C. Cuthill, Julien P. Renoult, Yseult Héjja‐Brichard, Tamra C. Mendelson et al.
Animal Behaviour
Face Recognition and Perception
article

Background-matching patterns are attractive: support for a processing bias

Innes C. Cuthill, Julien P. Renoult, Yseult Héjja‐Brichard, Tamra C. Mendelson, Michel Raymond
article en

Abstract

Background-matching visual patterns are selected to minimize detection by predators. However, once detected, what effects do these patterns have on conspecific perception? In humans, considerable evidence supports a ‘processing bias’, by which people prefer images that match the spatial statistics of natural scenes, likely because the brain has evolved, or develops, to process such scenes efficiently. A direct but untested prediction of this bias is that people should prefer background-matching patterns compared to similar patterns that mismatch the spatial statistics of their surroundings. We conducted an online experiment to test this prediction on over 1700 participants. Our results show that a preference for the most frequent value of Fourier slope (a measure of spatial structure) observed in natural scenes can be modulated by an additional preference for background matching. Because the initial stages of perception that underlie the efficient processing of visual scenes are widely conserved among animals, especially vertebrates, we expect this preference for background-matching patterns to be shared by other organisms. Two overlooked potential implications are that some animals may choose display sites with spatial statistics matching their own phenotype, and that the evolution of visual signals will, variously, be constrained or facilitated by such preferences for background-matching patterns.

Animal BehaviourVol. 240
Centre National de la Recherche Scientifique (FR), University of Vienna (AT), University of Veterinary Medicine Vienna (AT), École Pratique des Hautes Études (FR), Université de Montpellier (FR), University of Bristol (GB), Centre d'Écologie Fonctionnelle et Évolutive (FR), Institut des Sciences de l'Evolution de Montpellier (FR), Institut de Recherche pour le Développement (FR), University of Maryland, Baltimore County (US), BOKU University (AT)
National Science Foundation, Division of Integrative Organismal Systems
Openalex Percentile: Top 9%
Face Recognition and Perception
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