A team on board R/V Falkor has captured the first confirmed footage of a colossal squid in its environment, revealing a rare glimpse into the lives of these massive creatures. The baby squid is estimated to be around 2 meters long and weighs over 20 kilograms.
Researchers at Schmidt Ocean Institute have discovered vibrant communities of ancient sponges and corals in the wake of recently detached iceberg A-84. This observation sheds new light on the resilience and adaptability of Antarctic ecosystems.
An international team of scientists mapped four unnamed underwater canyons and explored nearly 20 methane seep ecosystems off the Chilean coast. The expedition uncovered a dazzling array of creatures, including commercially valuable fish and potentially new species, in surprisingly diverse ecosystems.
Five global projects will advance understanding of ocean systems in a changing climate through improved data and modeling. The Ocean Biogeochemistry Virtual Institute will refine ocean carbon cycling and ecosystem resilience research.
A multidisciplinary team discovers three new active hydrothermal vent fields over a 434-mile stretch of the Mid-Atlantic Ridge, revealing rich biological communities and vast marine life. The discovery highlights the need for more research to understand the effects of deep-sea mining on these unique ecosystems.
Researchers collected over 300 samples from the seafloor to study biodiversity, mineral makeup, and ecological effects of toxic waste dumping. They discovered a new area of methane seepage and a whale fall, providing insights into the impact of human actions on deep-sea ecosystems.
Researchers identified likely new marine species on nine seamounts explored for the first time in the Phoenix Islands Archipelago. The expedition also collected high-resolution seafloor mapping data and footage of rare organisms, including a glass octopus and whale shark.
The Keeling Curve, a critical indicator of global warming, will continue to be monitored with $1.45 million in funding from the Schmidts. The measurements have provided key evidence that the world's oceans are becoming increasingly acidic due to human-induced carbon dioxide emissions.
Researchers from Australia and international partners discovered five undescribed coral species, including black corals and sponges, and recorded a rare fish in the Coral Sea. They also collected critical habitat samples to improve understanding of seabed features and marine ecosystems.
The Schmidt Marine Coastal Pollution Challenge selected four innovative solutions to address the urgent need to eliminate the causes and reduce the impact of coastal pollution, specifically nitrogen and phosphorous. The winning projects include a biodegradable plastic alternative and a low-cost nitrogen sensor technology.
A remote at-sea science expedition has completed a first look at the deep waters of the Coral Sea, discovering new corals and possible species never before seen. The team mapped over 35,500 square kilometers of seafloor, creating detailed maps that will be available for scientific research and management.
Researchers from Western Australian Museum and Schmidt Ocean Institute discover a 150-foot siphonophore and up to 30 new species in the abyssal deep sea canyons off Ningaloo. The expedition, led by Dr. Nerida Wilson, used an underwater robot to explore depths of up to 4,500 meters.
A recent expedition led by the University of Western Australia has revealed rich and diverse ecosystems in the cold waters deep within the Bremer Canyon submarine canyons. The team collected deep-sea corals, fauna, seawater, and geological samples, providing a new understanding of these previously unknown ecosystems.
Researchers found vibrant colors and diverse life in hydrothermal vent towers, showcasing the importance of studying extreme environments. The discovery also highlights the devastating impact of human activity on these ecosystems, with numerous pieces of trash found amidst the beauty.
New species of corals and animals found in Costa Rican waters, emphasizing the need for conservation efforts. The expedition highlights the importance of preserving these ecosystems before they face threats from human activities and climate change.
A new hydrothermal vent field, JaichMaat, has been discovered using submarine robotics. The vent field features multiple mounds with unique geological and geochemical characteristics, supporting diverse microbial and animal communities. Detailed maps allow for the quantification of these communities in relation to geologic features.
A recent expedition demonstrated how AI can dramatically accelerate exploration of deep sea ecosystems using autonomous robots and high-throughput data analysis. Scientists used unsupervised clustering to analyze seafloor images and identify biological hotspots, which were then surveyed and sampled within days.