Related Experiment Video
Updated: May 19, 2026

Harmonic Radar Tags for Insect Tracking: Lightweight, Low-cost, and Accessible
Published on: May 13, 2025
Biologically inspired warning patterns deter a passerine, Parus major, from digital turbine blades
George R A Hancock1,2, Heta Lehtonen1, Theo Brown1,3
1Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, Helsinki 00014, Finland.
None:
Wind power has been at the forefront of renewable energy investment, but bird fatalities from turbine collisions remain a key ecological and social concern. Increasingly, how principles from sensory ecology might reduce collisions by enhancing the detectability or aversiveness of turbine blades have been investigated. In nature, aposematic species use high-contrast colors and striped patterns to warn predators of their unprofitability. These signal elements are effective due to their conspicuousness across variable natural scenes, memorability, generalisability from mimicry, and exploitation of innate color aversions. This begs the question: might employing biologically inspired turbine warning colors help birds to avoid turbine blades? Here, we used a screen-based "game" experimental setup to test the behavioral responses of wild-caught great tits (Parus major) to 3 existing wind turbine patterns (white, red-striped, and single black blade) as well as a novel biologically inspired aposematic pattern. Tits were less likely to approach and, when they did approach, took significantly longer to approach patterned than uniform white blades. This effect was strongest for our bio-inspired pattern. Our work supports the need for further investigation into the use of warning patterns to reduce bird collisions with wind turbines.
Related Concept Videos
Predator-Prey Interactions
Conservation of Declining Populations
Fixed Action Patterns
Frequency-dependent Selection
Limits to Natural Selection
Convergent Evolution
