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Biomedical subjects

Edward D Flinn

Publications and source records attributed to Edward D Flinn.

11 recordsLinked to original sources

Can CO2 help harvest minerals on Mars?

When astronauts first go to Mars, it will be difficult for them to bring everything they need to survive. Even the first tentative explorations could last as long as two years. However, spaceships can carry only limited supplies. "We might have to do what explorers have done for ages: live off the land," says chemical engineer Ken Debelak of Vanderbilt University. It is a meager atmosphere, compared to Earth's, and it is about 95% carbon dioxide. This, however, turns out to be an advantage. The CO2, says Debelak, can be used to harvest almost everything else.

Carbon Dioxide↗

Subtle shake-up in bone-loss research.

Recent research in the prevention of bone loss during weightlessness is described. Scientists are studying the effects of vibration on bone loss in laboratory animals and humans. Research is focused on determining how bone formation is triggered, the effects of stimulation of the stress response in bones, and the mechanisms behind the effects. Clinton Rubin at the State University of New York at Stony Brook is experimenting with 90 Hz vibration frequencies in rats. Other researchers are studying the effects of vibration plates in the treatment of osteoporosis in postmenopausal women and in children with low bone density. Tests among astronauts have been proposed, but none are scheduled.

Aerospace Medicine↗

Ceramic photocell implants could restore sight.

Researchers are perfecting the use of ceramic photocells for retinal implantation. The work is being done at the Space Vacuum Epitaxy Center in Houston, TX. The photocells are the results of experiments with oxide detectors conducted in space using the Wake Shield Facility. Artificial retinas are constructed of 100,000 microscopic ceramic detectors attached to a polymer film, which disintegrates after implantation. Initially, four arrays will be implanted, totalling 400,000 detectors per eye. If successful, two additional arrays would be implanted. Human trials are expected to begin in 2002.

Bionics↗