AI Article Synopsis

  • Many animals utilize the geomagnetic field for precise long-distance migration, but individual responses to magnetic signals can vary greatly.
  • Instead of relying solely on magnetoreception, animals might benefit from collective navigation, which increases migration success rates significantly compared to using a secondary sensory cue or time integration alone.
  • However, a decline in population density negatively impacts the effectiveness of collective navigation, leading to a substantial drop in the number of individuals successfully completing their migratory journeys.

Article Abstract

Many animals use the geomagnetic field to migrate long distances with high accuracy; however, research has shown that individual responses to magnetic cues can be highly variable. Thus, it has been hypothesized that magnetoreception alone is insufficient for accurate migrations and animals must either switch to a more accurate sensory cue or integrate their magnetic sense over time. Here we suggest that magnetoreceptive migrators could also use collective navigation strategies. Using agent-based models, we compare agents utilizing collective navigation to both the use of a secondary sensory system and time-integration. Our models demonstrate that collective navigation allows for 70% success rates for noisy navigators. To reach the same success rates, a secondary sensory system must provide perfect navigation for over 73% of the migratory route, and time integration must integrate over 50 time-steps, indicating that magnetoreceptive animals could benefit from using collective navigation. Finally, we explore the impact of population loss on animals relying on collective navigation. We show that as population density decreases, a greater proportion of individuals fail to reach their destination and that a 50% population reduction can result in up to a 37% decrease in the proportion of individuals completing their migration.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9667355PMC
http://dx.doi.org/10.1098/rspb.2022.1910DOI Listing

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