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Updated: May 5, 2026

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Windowing Chicken Eggs for Developmental Studies
Published on: October 1, 2007
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Predisposed and learned preferences for multipoint visual statistics in visually naive newly hatched chicks.
Mirko Zanon1, Bastien Samuel Lemaire1,2,3, Eugenio Piasini4,5
1Center for Mind/Brain Sciences, University of Trento, Rovereto38068, Italy.
Proceedings. Biological Sciences
|March 5, 2026
Summary
Newly hatched chicks show innate preferences for certain visual patterns, similar to adult humans and rats. This suggests evolution, not just experience, shapes efficient visual coding in animals.
Area of Science:
- Visual neuroscience
- Comparative psychology
- Evolutionary biology
Background:
- Humans and rats can detect luminance distribution and pixel correlations in images.
- This sensitivity is linked to efficient coding in the visual system, retaining key features.
- It's unclear if this visual optimization is innate or learned.
Purpose of the Study:
- To investigate whether visual system optimization for image processing is innate or shaped by experience.
- To determine if newly hatched chicks exhibit preferences for specific visual correlation patterns.
Main Methods:
- Visually naive domestic chicks were presented with various visual patterns (luminance, 2-point, 3-point, 4-point correlations, and noise).
- Chicks' spontaneous approach behaviors towards these patterns were recorded.
- The effect of visual experience (natural visual imprinting) on pattern preference was also studied.
Main Results:
- Chicks preferred luminance, 2-point (lines), and 4-point (rectangular) correlation patterns over noise.
- No preference was observed for 3-point correlations compared to noise.
- Exposure to 3- and 4-point patterns led to a preference for noise, suggesting a learned reduction in complexity preference.
Conclusions:
- Innate biological predispositions significantly influence the efficient coding of natural images, as evidenced by chick behavior.
- Visual experience and learning can modify these preferences, potentially favoring stimuli with lower statistical complexity.

