InteractiveOceans

@ooi-cabledarray.bsky.social

https://interactiveoceans.washington.edu/ https://www.youtube.com/@interactive_oceans

Behold the workhorse of ocean science — the CTD Rosette! One cast. Thousands of meters. A snapshot of the water column from surface to seafloor 🌊🚢🧪 RCA OOI cruises primarily use CTD casts to measure ocean properties and take verification water samples near the Shallow and Deep Profiler Moorings.

Circular frame of gray bottles being lowered into the waterTwo students around a large cylindrical metal frame containing a rosette of gray bottlesLarge metal frame with gray bottles being lifted above the deck of a ship at night

Thanks to the NSF OOI Regional Cabled Array, vent life (first discovered in 1977) can now be viewed live 2,100 m (~7,000 ft) below the surface! The RCA HD camera gives us an unprecedented view into an underwater world 1.5 miles deep and 200 miles offshore. 🌊🚢🧪 VC: J. Thirtyacre, Univ. of Washington

Chuck McGuire, a Principal Engineer at UW-APL and NSF’s OOI Cabled Array, used a drone in 2017 to get an “eye in the sky” view of the research vessel Roger Revelle, operated by SIO. We sail on the R/V Revelle again this year (Aug 9-18), so stay tuned! 🌊🚢🧪 VC: C. McGuire & M. Elend, UW-APL, V17

These starbursts aren't fireworks, they're Sunflower sea stars! Populations are still recovering from sea star wasting disease, so every sighting of them is exciting. Here’s to a safe, happy 4th of July and a future where these stars continue to shine! 🎆🌊🚢🧪 PC: NSF-OOI/UW/CSSF, Dive R1756, V14

Purple sea star with many armsOrange sea star with many arms

This week we took a quick trip Lake Washington to calibrate an echosounder for deployment this summer. A tungsten carbide sphere was dangled below the boat and moved around in the “beams” produced by the transducers. Stay tuned for cruise updates in August! 🌊🚢🧪 PC: M. Vardaro & M. White, UW, V26

Cylindrical instrument housings and orange transducer heads attached to a blue gantry crane on a boat in a lakeWoman wearing a life vest with a squid drawn on itEngineer looking at a laptop while another engineer can be seen through the window raising a fishing line that is attached to the tungsten sphere below the boatWoman posing with a boathook like a whaler

Creating A Shared Consciousness About the Oceans - New Ways to Interact with the Oceans, produced in 2014 by UW Oceanography undergraduates Katie Bigham and Jessie Turner as part of the Ocean 411 Seagoing Research and Discovery Class. They sailed on Leg 1 of the OOI-NSF-UW VISIONS'14 Expedition. 🚢🧪🌊

Pretty pink predatory polyps! Unlike hard corals that thrive in shallow, sunlit areas, soft corals do not build reefs and thrive in the deep ocean. These colorful colonial carnivores attach to hard surfaces and grab food with their tentacles. 🌊🚢🧪 PC: UW/NSF-OOI/WHOI, J2-1668 (V24), J2-1542 (V23)

pink soft coral with branching polyps with eight fringed tentacles growing on a dark lava rockpink mushroom soft coral with a round "body" covered in fringed polyps with eight fringed tentaclesWhite carbonate outcrop covered with pink mushroom soft corals growing all over it, including beneath in a crevice

Dolphins frolicking at sunset! A pod of Short-beaked common dolphins leaps and swims in synchrony off the bow of the R/V Atlantis, as the sun sets over the open ocean in the NE Pacific. 🌊🧪🚢 VC: UW/NSF-OOI/WHOI; V25; edited by O. Parsons (UW)

Rattail fishes swim alongside the ROV at Axial Seamount. Rattails are highly efficient swimmers attracted to any disturbance, so they are one of the most commonly seen fish during deep-sea operations. But we never get tired of watching them! 🌊🚢🧪 VC: UW/NSF-OOI/WHOI, J2-1729, V25; ed: E. Pinneo (UW)

Happy Mother’s Day from the OOI Regional Cabled Array team to all the moms in marine science and around the world. Here we see an early RCA team member at work, learning that oceanography is fun for everyone! 🌊🚢🧪 PC: M. White, University of Washington, V25.

Child sitting and looking at a screen showing livestreamed underwater ROV imagery

Remarkable communities thrive in perpetual darkness in the ASHES hydrothermal vent field at Axial Seamount during the RCA 2025 summer expedition. The underwater hot springs emit >300°C fluids nearly a mile beneath the oceans’ surface! 🌊🚢🧪 VC: UW/NSF-OOI/WHOI, J2-1728, V25; ed. by E. Pinneo (UW)

Tanner crabs scuffle by a soft coral on a 60 m limestone pinnacle at S. Hydrate Ridge (~800 m depth) methane seep site. The larger crab is caught mid-molt and its smaller foe, emboldened by a stylish anemone headpiece, comes in swinging. 🌊🚢🧪 VC: UW/NSF-OOI/WHOI, J2-1738, V25; ed: O. Parsons (UW)

A spider crab, living >6000 feet beneath the ocean’s surface, climbs down a precipice at the edge of the Dymond hydrothermal vent field near the base of Axial Seamount. These crabs are slow moving but major predators and scavengers at Axial! 🧪🌊🚢 VC: UW/NSF-OOI/WHOI, J2-1650, V24, ed. by E. Pinneo

Two opalescent nudibranchs navigate across platforms on the Regional Cabled Array shallow profiler moorings (200 m depth) near the base of the Cascadia Margin and Axial Seamount. See more biology videos and photos on our website and YouTube channel! (link in bio) VC: UW/NSF-OOI/WHOI, V25 🌊🚢🧪

The OOI-RCA has 3 Shallow Profiler Moorings: an instrumented platform at 200 m depth and a winched Science Pod containing 9 sensors that travels to near surface and back 9 times daily: to date, >55,000 profiles traversing >32 million meters! Learn more on our website (link in bio) 🌊🚢🧪 VC: UW/CSSF

Stunning jellies photographed at Southern Hydrate Ridge during the 2025 RCA cruise. Pic 1 is a Dinner Plate jelly, active hunters that can grow to 8 inches across; Pic 2 is Voragonema pedunculata, a small red jelly that can have up to 2000 tiny tentacles! 🌊🚢🧪 PC1 & 2: UW/NSF-OOI/WHOI, J2-1744, V25

Flat purple jellyfish with swirling tentaclesred jellyfish with many tiny tentacles

A white Neptunea snail crawling near Southern Hydrate Ridge, and another sitting on top of its yellow egg case. When they find suitable rocks, the snails create huge nurseries of 8-12" towers, each containing thousands of eggs, before they topple off and die. 🌊🚢🧪🐌 PC: UW/NSF-OOI/WHOI, J2-1738, V25

white snail crawling on mudwhite snail sitting on yellow egg case tower

Our VISIONS’25 UW Oceanography students included some amazing artists who helped boost morale and maintain shipboard mental health via creative pursuits! Their incredible creations included a) two octopuses and a rattail by Oliver Parsons and b) a blue heron and secretary bird by Leo Couchon. 🌊🚢🧪

A blue and black ink sketch of octopuses and a fish next to a colorful painting of two birds

Feeding frenzy! A swarm of hagfish tear apart a N Pacific Frostfish (?) at Hydrate Ridge offshore of OR. They look like eels but evolved ~550 million years ago, before sharks and bony fish! 🌊🚢🧪 PC: UW/NSF-OOI/WHOI, J-1719, V25; thanks to Dr. Brian Sidlauskas (Tulane) for the tentative carcass ID!

The Inferno edifice in the ASHES hydrothermal vent field in 2025. Superheated fluids streaming out of the chimneys contain dissolved gases and metals used by microbes within chemosynthetic organisms, which can completely encase sensors faster than you’d expect! PC: UW/NSF-OOI/WHOI, J-1707, V25 🌊🚢🧪

The top of a hydrothermal vent: black basalt rock with smaller, vertically projecting chimneys covered in white, filamentous bacteria, yellowish limpets, tube worms, and blue protist colonies. Black clouds of superheated water that look like smoke billow out of the top. In the center, a long thin metal rod is sticking out of one of the chimneys, lying along the top of the vent with a small white float attached. Rod and float are covered in biofouling organisms.

R/V Atlantis SSSG Allison Heater helps V’25 student Nate Bodensteiner and RCA scientist Joe Duprey cock Niskin bottles for water sampling at Axial Seamount (2600 m depth). Analyses of the recovered fluids help verify data from the RCA moorings and seafloor sensors. 🌊🚢🧪 PC: M. Elend, UW, V25

Three people opening and prepping a numbered series of large, gray bottles for holding water on the side deck of a ship.

Two roughtail skates sit in the mud among carbonate rubble at Southern Hydrate Ridge. These shark relatives are often seen lying partially buried on the seafloor at productive sites like this, where their prey (shellfish, worms, and small fish) are abundant. 🌊🚢🧪 PC: UW/NSF-OOI/WHOI, J2-1715, V25

Two purple skates (one facing left, the other in the background and partially buried, facing right) lying on the greenish-brown mud of the seafloor at Southern Hydrate Ridge. Small carbonate rocks are scattered around, along with a crab, an anemone, a red rockfish, and other animals.A purple roughtail skate facing the left side of the image, lying on the greenish-brown mud of the seafloor at Southern Hydrate Ridge. Small, yellowish carbonate rocks are scattered around it.

VISIONS students help tech Alex Rose (2nd from left) prep a “Mosquito” instrument. It injects dye into the seafloor at Southern Hydrate Ridge then sucks fluid into coiled tubes to measure sediment seawater flow. It's complicated to assemble so more hands are always helpful! 🌊🚢🧪 PC: M. Elend, UW, V24

A group of four UW students in purple gloves sitting on the floor in the ship's dry lab. They surround a triangular frame that they are assembling into a flow sampling instrument using a set of cylindrical coils of tubing and tools that are sitting on the floor next to it.