Researchers at Draper Laboratory in Cambridge, Mass., are working on a NASA-funded concept for a spacesuit that would help astronauts adjust to weightlessness by resisting movement to imitate gravity.

โ€œWe would expect the resistance to simulate movements against a gravitational acceleration when in microgravity,โ€ said Kevin Duda, senior member of the technical staff in the Draper Laboratoryโ€™s Human Centered Engineering Group.

An inertial measurement unit would help the suit gauge an astronautโ€™s movement. That in turn could allow flywheel gyroscopes โ€” spinning devices that resist changes in angular momentum caused by motion โ€” to raise or lower spacesuit resistance for every movement, by increasing speed or changing direction.

First-generation versions of the suit mainly would help astronauts working inside the protected habitat of a space station or spacecraft. But if the concept holds up, it might eventually help stabilize astronauts during spacewalks, as well as on low-gravity planets or asteroids.

โ€œSensing and adapting to exactly what an astronaut wants to do is difficult,โ€ Duda said. โ€œWe need to analyze the mechanics and prototype the concept before we can accurately quantify the type of performance we can expect.โ€

Wearing such a suit also might help astronauts ease back into life on Earth, because their muscle coordination would not have to readjust from the resistance-free motions in microgravity.

Another side benefit from the suit could take the form of a space technology spinoff that helps people go through physical rehabilitation. Patients suffering from stroke, spinal cord and brain injuries could make use of the device, as could older people.

โ€œA wearable, full-motion device could be programmed to help you learn, or re-learn, specific movements,โ€ Duda explained.

Dudaโ€™s Draper Lab group has partnered on the project with scientists at NASAโ€™s Johnson Space Center in Houston and the Massachusetts Institute of Technology in Cambridge. They plan to first create a prototype for a spacesuit arm by 2012, with funding from the NASA Innovative Advanced Concepts program.

If success attracts continued funds, Duda said, a full-body wearable suit could become a reality within a decade โ€” easily within the time frame for NASAโ€™s plans targeting the asteroids, Mars and beyond.