Mechanical Damping of Mouse Bone and Surrounding Tissues
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2011/10/14
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Description:The experimental and computational results revealed that both surrounding tissues and bone contributed to load damping. Approximately 60% of phase shift was induced by bone itself and this shift was increased with bone curvature. Although structural curvature reduces critical loads for buckling in a beam theory, evolution apparently favors maintaining curvature in the tibia. In addition to bone's compressive damping capacity, surrounding tissues as well as naturally occurring bone curvature are contributors to mechanical damping, which may ultimately affect bone remodeling and bone quality. [Description provided by NIOSH]
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Pages in Document:1-13
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NIOSHTIC Number:nn:20052631
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Citation:12th Annual Pilot Research Project Symposium, University of Cincinnati Education and Research Center, October 13-14, 2011, Cincinnati, Ohio. Cincinnati, OH: University of Cincinnati, 2011 Oct; :1-13
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Federal Fiscal Year:2012
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Performing Organization:University of Cincinnati
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Peer Reviewed:True
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Start Date:20050701
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Source Full Name:12th Annual Pilot Research Project Symposium, University of Cincinnati Education and Research Center, October 13-14, 2011, Cincinnati, Ohio
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End Date:20260630
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Main Document Checksum:urn:sha-512:e4e29955d7378cfca8e4de855c0bb189dfbefdb4db345c8b97e6ad2d4fce793be564bdaecd2740d597acefa868ba447fe4f0e0db9bdf6bb0b996a2ec7b1c0d7a
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