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タイトルImplementation and Integration of a Finite Element Model into the Bone Remodeling Model to Characterize Skeletal Loading
本文(外部サイト)http://hdl.handle.net/2060/20170001542
著者(英)Pennline, J. A.; Boppana, A.; Werner, C. R.; Lewandowski, B.
著者所属(英)NASA Glenn Research Center
発行日2017-01-23
言語eng
内容記述NASA's Digital Astronaut Project is developing a bone physiology model to predict changes in bone mineral density over the course of a space mission. The model intends to predict bone loss due to exposure in microgravity as well as predicting bone maintenance due to mechanical stimulus generated by exercise countermeasures. These predictions will be used to inform exercise device efficacy and to help design exercise protocols that will maintain bone mineral density during long exposures to microgravity during spaceflight. The mechanical stimulus and the stresses that are exhibited on the bone are important factors for bone remodeling. These stresses are dependent on the types of exercise that are performed and vary throughout the bone due to the geometry. A primary area of focus for bone health is the proximal femur. This location is critical in transmitting loads between the upper and lower body and have been known to be a critical failure point in older individuals with conditions like osteoporosis.
NASA分類Aerospace Medicine
レポートNOGRC-E-DAA-TN38786
権利Copyright, Distribution as joint owner in the copyright


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