Dear colleagues,

On behalf of my co-authors, I am pleased to announce our recent publication in Oceans as part of the Special Issue Marine Mammals in a Changing World, 3rd Edition

Mills, E.M.M., Piwetz, S., & Orbach, D.N. (2025). Dolphins ‘Orient-Against-Current’: Foraging in Dredged Channels. Oceans, 6(4), 78. https://doi.org/10.3390/oceans6040078

ABSTRACT

Bottlenose dolphins (Tursiops sp.) are opportunistic foragers with global distributions that utilize diverse feeding tactics based on environmental factors, habitat features, prey behavior, group dynamics, and genetics. We describe a unique foraging tactic regularly observed in the confluence of dredged shipping channels with high anthropogenic disturbance, and explore potential abiotic (temporal, tidal, habitat) drivers of the behavior. A shore-based digital theodolite was used from 2021 to 2022 to observe common bottlenose dolphins (T. truncatus) foraging within a current in a technique we term Orient-Against-Current (OAC). During OAC, dolphins position themselves facing into the flow of a current, swimming at a speed to maintain a stationary position within the current, and feed while prey move with the current towards them. Orient-Against-Current occurred in all seasons and throughout daylight hours, particularly during the winter and spring. Dolphins engaged in OAC during ebb tides and intermediate current speeds (1–2 knots), but not during slack tides. As OAC occurred closer to shoreline structures (i.e., seawalls, concrete blocks) than to mangroves and natural seagrass beds, it appears that hard human-engineered structures aid in prey capture during OAC. Knowledge of dolphin foraging techniques can aid in understanding behavioral plasticity shaped by anthropogenically altered environments in industrialized coastal areas.

The article is open access and freely available: https://www.mdpi.com/2673-1924/6/4/78

Best regards,

Eliza Mills
Associate Consultant | Federal Health & Sciences
Environmental Systems Research Institute (Esri)
Vienna, VA, USA
eliza.m.mills@gmail.com