Why we're watching the giant Australian cuttlefish
Australia is home to the world's only known site where cuttlefish gather to mate en masse.
See also stories tagged with Cephalopod
Australia is home to the world's only known site where cuttlefish gather to mate en masse.
A study that examined the shape of hundreds of fossilized shark teeth suggests that modern shark biodiversity was triggered by the end-Cretaceous mass extinction event, about 66 million years ago.
Most of us will have watched a BBC documentary at some point and seen exotic octopuses, cuttlefish and squid in foreign seas. Fewer of us realise that these molluscs, which resemble aliens in our imagination with their tentacles ...
Gloomy octopuses used to blend in. They were just another cephalopod, drab-gray and medium-bodied, living in the ocean off east-central Australia. Until, a few decades ago, the octopuses started to spread.
Every year, millions of animals are used in scientific research across the UK. Statistics suggest that almost four million scientific procedures were carried out on animals in 2016 alone. The majority of these were reported ...
A fossil slab discovered in Kansas 70 years ago and twice misidentified—first as a green alga and then as a cephalopod—has been reinterpreted as the preserved remains of a large cartilaginous fish, the group that includes ...
Marine animals such as mantis shrimp and squid have inspired a new mode of underwater navigation that allows for greater accuracy.
James Cook University (JCU) scientists in Australia have found high carbon dioxide levels cause squid to bungle attacks on their prey.
Cephalopods—which include octopuses, squid, and cuttlefish—are masters of disguise. They can camouflage to precisely match their surroundings in a matter of seconds, and no scientist has quite been able to replicate the spectacle. ...
An international team of scientists has identified the neural circuits that enable cuttlefish to change their appearance in just the blink to eye - and discovered that this is similar to the neural circuit that controls iridescence ...