Related Experiment Video
Updated: Aug 16, 2026

A Video Surveillance System to Monitor Breeding Colonies of Common Terns (Sterna Hirundo)
Published on: July 22, 2018
Changes in productivity and contaminants in bald eagles nesting along the lower Columbia River, USA
Jeremy A Buck1, Robert G Anthony, Carol A Schuler
1US Fish and Wildlife Service, Oregon Fish and Wildlife Office, 2600 Southeast 98th Avenue, Suite 100, Portland, Oregon 97266, USA. jeremy_buck@fws.gov
Abstract:
Previous studies documented poor productivity of bald eagles (Haliaeetus leucocephalus) in the lower Columbia River (LCR), USA, and elevated p,p'-dichlorodiphenyldichloroethylene (DDE), polychlorinated biphenyls (PCBs), dioxins, and furans in eagle eggs. From 1994 to 1995, we collected partially incubated eggs at 19 of 43 occupied territories along the LCR and compared productivity and egg contaminants to values obtained in the mid-1980s. We found higher productivity at new nesting sites along the river, yet productivity at 23 older breeding territories remained low and was not different (p = 0.713) between studies. Eggshell thickness at older territories had not improved (p = 0.404), and eggshells averaged 11% thinner than shells measured before dichlorodiphenyltrichloroethane use. Decreases in DDE (p = 0.022) and total PCBs (p = 0.0004) in eggs from older breeding areas occurred between study periods. Productivity was not correlated to contaminants, but DDE, PCBs, and dioxin-like chemicals exceeded estimated no-effect values. Some dioxin-like contaminants in eggs were correlated to nest location, with highest concentrations occurring toward the river's mouth where productivity was lowest. Although total productivity increased due to the success of new nesting pairs in the region, egg contaminants remain high enough to impair reproduction at older territories and, over time, may alter productivity of new pairs nesting near the river's mouth.
More Related Videos
Related Concept Videos
Conservation of Declining Populations
Threats to Biodiversity
Optimal Foraging
Conservation of Small Populations

