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February 19, 2026Animals0 citationsOpen Access

Predator–Prey Dynamics Between Eurasian Sparrowhawk and Its Bird Prey During Spring Migration in the Forests at Hel Peninsula (N Poland) over 1982–2024

KCKamila CymermanMRMagdalena Remisiewicz

Key Points

  • The aim is to explore how climate change influences the timing of Eurasian Sparrowhawks' migration relative to their bird prey.
  • Daily ringing of birds conducted from March 26 to May 15, 1982–2021 at Hel Peninsula.
  • Collection of pluckings in 2024 to identify prey of Eurasian Sparrowhawks.
  • Analysis of correlations between migration timings of Sparrowhawks and specific bird prey species.
  • No overall trend in migration median dates for Sparrowhawks was observed, but large variations were noted.
  • Migration timing correlated with temperatures and timing of their prey species.
  • Adult males and females migrated early following warmer weather, while young males migrated early in warm Aprils.

Abstract

Climate change in Europe can influence the predator–prey interactions, a scarcely studied topic in birds. We examined relationships between the spring passage timing of the Eurasian Sparrowhawk, a generalist peak predator, and its main bird prey species (Song Thrush, Eurasian Blackbird, Common Chaffinch, Great Tit, European Robin). All species were ringed daily (26 March–15 May) in 1982–2021 at Hel Peninsula (N Poland). In 2024, we collected pluckings to identify Sparrowhawks’ prey. Sparrowhawks’ daily migration dynamics and those for the Song Thrush, Robin and Chaffinch were correlated. Sparrowhawks’ median dates of passage showed no multi-year trend, but large variation, correlated with those of its prey and with temperatures. Adult females and males migrated through Hel early after warm February and March at wintering grounds. Young males migrated early during warm Aprils at Hel. Medians were correlated between adult males and Robins, adult females and Blackbirds, and young females and Song Thrush. This suggests that Sparrowhawks adjust their migration timing each spring to the availability of these three prey species, with some sex differences, as males are smaller than females. Identifying changes in predator–prey dynamics in response to climate change helps us understand its effect on forest ecosystems.

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Cite This Study

Cymerman et al. (2026) studied this question.

synapsesocial.com/papers/6996a7b5ecb39a600b3ed975https://doi.org/10.3390/ani16040627
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