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50 Years of Environmental Data Can Predict Health and Strandings of Sea Lions Pups in California

March 27, 2026

Scientists use decades of research to make connections between environmental conditions and malnourished sea lions pups along the California coast.
A California sea lion mother rests on a sandy beach with her head up, eyes closed, and standing on her flippers, while her pup lies across her belly. Behind her are more sea lions and the water's edge. A California sea lion with her pup on the beach at San Miguel Island. Photo taken under NOAA Fisheries Permit #16087. Credit: NOAA Fisheries

For more than 50 years, NOAA Fisheries has conducted vital research on seal and sea lion populations at a remote research station on San Miguel Island, California. The long-term data set provides clues to help us understand what environmental conditions lead to malnourished California sea lion pups and increased stranding levels. This information is important for managing their populations and helping rehabilitation centers prepare for periods when sea lion pup strandings may be elevated.

A small building with an orange roof sits on a ridge with a blue ocean behind it. The horizon line is overlayed with a map of California and an inset showing San Miguel Island and Point Bennett on the western point.
San Miguel Research Station perched atop a cliff overlooking the Pt. Bennett pinniped colony. Photo taken under NOAA Fisheries Permit #22678. Image credit: NOAA Fisheries. Map credit: Lencer, CC BY-SA 3.0 via Wikipedia Commons

Our research began on San Miguel Island in 1969 after scientists discovered a colony of northern fur seals breeding on Point Bennett the year before. This amazing uninhabited island lies 26 miles offshore of the California coast. It’s part of the Channel Islands National Park and is home to some of the largest populations of land-breeding pinnipeds in the world. Prior to this discovery, northern fur seals were last documented in California during the early 1800s—before their population was wiped out by seal hunters. Researchers began studying the new colony of fur seals along with California sea lions that also breed on the island.

View across Point Bennett on San Miguel Island. A sandy beach is filled with sea lions and fur seal while waves break along the shoreline
Summer breeding season at Adams Cove, part of the Pt. Bennett pinniped colony on San Miguel Island. Photo taken under NOAA Fisheries Permit #22678. Credit: NOAA Fisheries

We conduct long-term studies on abundance, distribution, survival, reproduction, foraging ecology, health, and disease of northern fur seals and California sea lions. Our research led to California sea lions being designated a top-level predator and a sentinel species of ocean health. Scientists use this long time series to understand how species respond to changes in their environment.

Two researches sit on a sandy berm looking out over Point Bennett on San Miguel Island. The sandy spit behind them is filled with seal lions and fur seals.
Sharon Melin (NOAA Fisheries) and Sophie Guarasci (The Marine Mammal Center) conducting observations of California sea lions at Adams Cove, Pt. Bennett pinniped colony. Photo taken under NOAA Fisheries Permit #22678. Credit: NOAA Fisheries

California sea lions are ecosystem indicators because they respond rapidly to environmental changes. These include increases in ocean temperatures that can affect food availability or the production of algal toxins that can result in death. Starving or sick sea lions often become stranded on public beaches and pose a public health risk because of infectious diseases. When live strandings are high, they can strain rehabilitation facilities, which care for stranded sea lions but operate on limited resources.

A group of adult female and juvenile sea lions in warm evening light alertly look at the camera.
Adult female and juvenile California sea lions at San Miguel Island, CA. Photo taken under NOAA Fisheries Permit #16078. Credit: NOAA Fisheries/Jeff Harris

Stranding events are often associated with ocean-warming events, like marine heatwaves, that reduce the amount of prey available for sea lions. Today, scientists study these links to help understand, predict, and prepare for large stranding events on the California coast.

In late 2025, a team from NOAA Fisheries and the University of Washington used more than 50 years of California sea lion pup data from San Miguel Island and local ocean conditions. They developed a predictive model linking pup weight and growth to stranding event levels. The preliminary results indicate we can predict the weight and growth rates of California sea lion pups based on sea surface temperatures. This helps provide an early warning of conditions in the California Current Ecosystem that may lead to large stranding events of weaned pups due to poor body condition at weaning.

Three California sea lion pups lie together on a sandy beach. One is propped up by one flipper while another flipper scratches it's side.
California sea lion pups rest on the beach at Point Bennett on San Miguel Island. Photo taken under NOAA Fisheries Research Permits #16087-01 and #14327. Credit: NOAA Fisheries/Paul Hillman

Having this information months ahead of time allows state and federal managers and stranding network partners to anticipate and coordinate responses to large stranding events of emaciated sea lion pups. Existing regional ocean models that simulate ocean temperatures and other physical and biogeochemical conditions allow us to forecast these predictions months in advance. For more on this story, see this newsletter from University of Washington’s Cooperative Institute for Climate, Ocean, and Ecosystem Studies.

Last updated by Alaska Fisheries Science Center on March 30, 2026