Jellyfish 'can sense ocean currents'
Jellyfish can sense the ocean current and actively swim against it, according to a study which involved tagging and tracking the creatures, the BBC reports.
The research, by an international team, could help scientists work out how jellyfish form "blooms".
These blooms may comprise between hundreds and millions of jellyfish, and can persist in a given area for months.
But it remains unclear just how the jellyfish sense changes in water, the paper in Current Biology journal says.
The scientists, including researchers from Swansea University and Deakin University in Warnambool, Australia, tagged 18 large barrel jellyfish (Rhizostoma octopus) in the Bay of Biscay.
The team caught the jellyfish and fitted them with loggers that measured acceleration and body orientation.
The tags were fitted around each jellyfish's body with a cable tie.
At the same time, the researchers used floating sensors to monitor and measure the currents.
This showed that the jellyfish were able actively to swim against the current, apparently in response to feeling themselves drift.
In a second part of the study, the researchers used their data to create a realistic simulation of the movement of a bloom of jellyfish in the ocean.
This showed that the "current-oriented swimming behavior" helped the animals to form blooms, by "keeping them in particular areas" rather than allowing them to be dispersed or washed ashore by the currents.
What is not yet clear is how exactly the jellyfish work out which way to travel.
The scientists think the animals might sense the current across the surface of their bodies. They also speculate that the jellyfish might use the Earth's magnetic field to navigate - an ability seen in some other migrating marine species, including sea turtles.
The ultimate aim of studying and tracking swimming jellyfish is to improve the forecasting of jellyfish blooms, which have increased in frequency over the past decade, disrupting fisheries and stinging swimmers.
Perhaps troublingly, these results show that swimming against the current helps hold blooms together, even in areas when currents are strong.









