Northumbria University secures new funding to ‘safeguard the health of astronauts’
Space health experts at Northumbria University have won a global competition that will enable them to explore blood flow restriction training among astronauts during spaceflight.
Professor Nick Caplan and Dr Luke Hughes, from Northumbria’s Aerospace Medicine and Rehabilitation Laboratory, have won the 2023 Humans in Space Challenge, run by South Korean health technology company, Boryung, in partnership with Axiom Space and Aurelia.
Funding from the competition will allow Professor Caplan and Dr Hughes to develop a space-ready version of the Delfi Personalised Tourniquet System for Blood Flow Restriction, which is used to perform Blood Flow Restriction Exercise (BFRE).
It involves applying a surgical-grade tourniquet cuff to an individual’s limb and inflating it to compress the limb and reduce blood flow and oxygen supply to muscle and bone tissue during exercise. BFRE has been shown to mitigate loss of muscle and bone mineral in individuals following surgery and during limb immobilisation here on Earth.
NASA, the European Space Agency (ESA) and private space exploration companies have identified BFRE as a potential countermeasure to improve astronaut health during spaceflight, particularly in exploration missions beyond low Earth orbit to the Moon during which limited time and equipment will be available for exercise.
However, currently no BFRE device exists that can be qualified and approved for crewed spaceflight research. Northumbria’s research project aims to develop a proof-of-concept design for an innovative Personalised Tourniquet System for spaceflight that can be qualified and approved for future spaceflight missions.
Professor Caplan and Dr Hughes will work with Western Clinical Engineering, in Canada, as the owners and manufacturers of the commercially available device, and Kayser Space, who specialise in developing and qualifying hardware for scientific research in space, to develop this space-ready version of the Delfi Personalised Tourniquet System.
Professor Caplan commented: “We are already investigating the Delfi Personalised Tourniquet System in simulated reduced gravity in our lab. Having the funding to now develop this hardware for actual spaceflight will open up many possibilities for further research in space.”
Astronauts suffer loss of muscle and bone mineral in space due to the absence of gravity and these deficits can persist long after return to Earth.
Dr Hughes added: “Our research will develop an innovative exercise device that meets the constraints of future missions and enables BFRE to be performed during spaceflight, with the goal of mitigating loss of muscle and bone in astronauts.”
By Matthew Neville – Senior Correspondent, Bdaily
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