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‘Snooping’ on dolphins offers acoustic clues to hotspots for food and friends

08.18.26 | Florida Atlantic University
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For dolphins, the ocean is a world of sound. Their whistles carry social information, helping them communicate and stay connected, while echolocation – rapid-fire clicks – function like underwater sonar, helping them navigate their surroundings and detect potential prey.

But dolphins aren’t the only noise makers. Fish make sounds in the underwater soundscape and so do vessel traffic and other human activities. For dolphins and their prey, the sounds they make may be just as important as the sounds they hear.

By eavesdropping on these cetaceans, researchers from Florida Atlantic University ’s Harbor Branch Oceanographic Institute have uncovered new clues about how dolphins navigate and use their underwater world –

including evidence suggesting that dolphins themselves may be eavesdropping on their prey and that their prey may be eavesdropping on them.

Using an autonomous wave glider equipped with an acoustic recorder, the team spent two months listening across the East Florida Shelf, capturing a rare glimpse into the acoustic lives of dolphins along Florida’s Atlantic coast. Published in the journal PeerJ , the findings reveal distinct patterns in dolphin whistles and echolocation, suggesting dolphins may favor different habitats for socializing and hunting.

Over two months, the wave glider captured nearly 62 hours of underwater sound, with dolphins detected in more than 1,600 recordings. Researchers then compared dolphin whistles and echolocation with environmental conditions, including depth, temperature, salinity, currents, productivity and human-generated noise, revealing not just where dolphins were detected, but what may have shaped their behavior.

Findings reveal that whistle activity, which is primarily associated with social behavior, was more frequently detected in nearshore waters and was influenced by factors including location, water temperature, sound levels and chlorophyll-a concentration. Two prominent areas of predicted whistle activity emerged near St. Augustine and Ponce Inlet, with additional areas near Melbourne Beach and north of Ponce Inlet, suggesting that portions of the nearshore environment may be particularly important for dolphin social activity.

Echolocation told a different story – and offered perhaps the most intriguing clue of all. The rapid-fire clicks were concentrated from Melbourne to Ponce Inlet and offshore toward Long John Reef, where sound-producing fish were also abundant. The overlap suggests dolphins may be using acoustic clues from their prey as they hunt, giving researchers a way to pinpoint potential feeding grounds without ever seeing a dolphin or its prey.

“What we’re seeing is a fascinating separation between the acoustic behaviors dolphins use for social life and those they use for finding food,” said Greg O’Corry-Crowe , Ph.D., co-author, a research professor at FAU Harbor Branch and a National Geographic Explorer. “The fact that echolocation was associated with sound-producing fish, while whistles were linked to a different set of environmental conditions, suggests dolphins may be responding to their surroundings in very different ways depending on what they are doing. In essence, the same ocean can become a different habitat to a dolphin depending on whether it is looking for a meal or communicating with other dolphins.”

Researchers also found mismatches between fish and dolphin activity, suggesting that fish may quiet down when they detect dolphins.

“Everybody is snooping on everybody else,” said O’Corry-Crowe. “This raises a fascinating question for our future research: Are dolphins listening for fish, and are fish listening for dolphins?”

The timing of dolphin detections also shifted, with more activity in March than April, possibly reflecting seasonal movements of different dolphin populations along Florida’s Atlantic coast.

The study also highlights a challenge for dolphins and researchers: vessel noise can mask their calls, making communication harder for dolphins and detection harder for scientists. Some high-whistle areas also experience heavy vessel traffic, suggesting that important dolphin habitat may overlap with noisy waters.

“By listening to the sounds dolphins produce, we can begin to understand what they may be doing in different areas of the ocean and identify places that may be especially important for social activity or feeding,” said Jessica Carvalho, first author and a research scientist at FAU Harbor Branch. “That information can ultimately help us better protect critical dolphin habitat, particularly in coastal waters increasingly affected by human activity.”

At the heart of the study was a wave glider, an autonomous, wave-powered vehicle that served as a continuously operating underwater listening station. It allowed researchers to monitor a broad area over an extended period without the limitations of boat-based surveys.

“The ocean is filled with sounds that humans rarely hear, and autonomous platforms give us a way to enter that hidden acoustic world,” said Laurent Chérubin , Ph.D., senior author and a research professor at FAU Harbor Branch. “A wave glider can travel through the ocean and listen continuously, allowing us to detect patterns that would be almost impossible to capture with occasional boat surveys. It is like giving researchers an ear that can remain in the ocean for weeks at a time, revealing a world of animal behavior that is otherwise largely unknown to us.”

The study highlights the power of sound to reveal how dolphins use their environment. By identifying areas of concentrated social and foraging activity, acoustic monitoring could help pinpoint important dolphin habitats and guide efforts to protect them.

“Every sound gives us another piece of the puzzle,” O’Corry-Crowe said. “When we combine dolphin vocalizations with the sounds of their prey and the physical characteristics of the ocean, we begin to see the underwater environment from the dolphins’ perspective. That can fundamentally change how we think about their habitat.”

This work was support by the Harbor Branch Oceanographic Institute Foundation Specialty License Plate “Protect Wild Dolphins” and “Protect Florida Whales.”

- FAU -

About Florida Atlantic University:

Florida Atlantic University is one of the nation’s fastest-rising public research universities, serving more than 32,000 students in South Florida. Ranked among the Top 100 Public Universities by U.S. News & World Report, recognized as a Top 25 Best-In-Class College, and cited by Washington Monthly as one of the nation’s most effective engines of upward mobility, Florida Atlantic is also one of only 13 institutions nationwide to hold Carnegie Foundation designations for R1 research, opportunity and community engagement. Guided by its strategic plan, “2031FAU: Where Tomorrow Begins,” the university is focused on delivering career-ready education and experiential learning, driving scholarly inquiry that creates healthier, safer and more prosperous communities, strengthening institutional excellence, and elevating its impact across South Florida and beyond. Florida Atlantic continues to advance its position as Florida’s first quantum university, integrating research, education and industry partnerships around next-generation computing technologies. Through other signature strengths in neuroscience and healthy aging, environmental, ocean and coastal innovation, and national defense and autonomous systems, Florida Atlantic expands knowledge, fuels economic opportunity and fulfills its mission as South Florida’s hometown university.

PeerJ

10.7717/peerj.21547

Observational study

Animals

Differential acoustic habitat use in delphinids along the Florida Atlantic coast

31-Jul-2026

Keywords

Article Information

Contact Information

Gisele Galoustian
Florida Atlantic University
ggaloust@fau.edu

How to Cite This Article

APA:
Florida Atlantic University. (2026, August 18). ‘Snooping’ on dolphins offers acoustic clues to hotspots for food and friends. Brightsurf News. https://www.brightsurf.com/news/8J4E244L/snooping-on-dolphins-offers-acoustic-clues-to-hotspots-for-food-and-friends.html
MLA:
"‘Snooping’ on dolphins offers acoustic clues to hotspots for food and friends." Brightsurf News, Aug. 18 2026, https://www.brightsurf.com/news/8J4E244L/snooping-on-dolphins-offers-acoustic-clues-to-hotspots-for-food-and-friends.html.