NASA NTRS · 20170007201
A Flexible Method for Producing F.E.M. Analysis of Bone Using Open-Source Software
Abstract
Individuals who experience decreases in load-bearing bone densities can be subject to a higher risk of bone fracture during daily activity. Astronauts may lose up to nine percent of their load-bearing bone density for every month they spend in space [1]. Because of this, specialized countermeasures reduce percent loss in bone density and reduce fracture risk upon returning to Earth. Astronauts will typically not be at risk for fracture during spaceflight, because of the lesser loads experienced in microgravity conditions. However, once back on Earth, astronauts have an increased risk for bone fracture as a result of weakened bone and return to 1G conditions [2]. It is therefore important to understand the significance of any bone density loss in addition to developing exercises in an attempt to limit losses in bone strength. NASA seeks to develop a deeper understanding of fracture risk through the development of a computational bone strength model to assess the bone fracture risk of astronauts pre-flight and post-flight. This study addresses the several key processes needed to develop such strength analyses using medical image processing and finite element modeling.
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Boppana, Abhishektha, Sefcik, Ryan, Myers, Jerry G., Lewandowski, Beth. 2016-06-29. A Flexible Method for Producing F.E.M. Analysis of Bone Using Open-Source Software. https://ntrs.nasa.gov/citations/20170007201
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