bioRxiv · 10.1101/488544
Polarized light information modulates sensorimotor decision making in goldfish
Abstract
Animal survival relays on environmental information gathered by their sensory systems. In invertebrates the polarization angle of light is known to provide vital information for a wide range of visual tasks. However, the role of polarization sensitivity in vertebrates remains poorly understood. Here we study if polarization vision enhances threat detection in goldfish. We found that adding a polarization cue to a low intensity contrast looming stimulus biases the type of evasive behavior the animals perform. While low contrast looms mostly evoke subtle alarm reactions, the addition of a polarized cue dramatically increases the probability of eliciting a fast escape maneuver, the C-start response. Goldfish can be startled by polarized light stimuli coming not only from above but also from the sides indicating that polarization sensitivity spans large areas of the retina. In addition, we observed that while low intensity contrast looms preferentially elicit alarm behaviours, high intensity contrast looms rarely induced them, but elicited C-start responses with a high probability. Together, our results show that the addition of a polarized light cue to a low intensity contrast stimulus shifts animals decision making from low threshold alarm responses to the higher threshold C-start escape behaviour. This additional visual cue, thus, might aid underwater threat detection and predator avoidance in the animals natural environment. Summary statementThis study gives the first compelling evidence that fish can use polarized light information to improve their decision making in the context of visual threat detection.
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Otero Coronel, S. J., Beron de Astrada, M., Medan, V.. 2018-12-07. Polarized light information modulates sensorimotor decision making in goldfish. https://doi.org/10.1101/488544
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