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Osteology / Bone / Osteoporosis / Trabecula / Buckling / Cancellous bone / Human vertebral column / Compression fracture / Osseous tissue / Anatomy / Skeletal system / Medicine


Development of a multi-scale finite element model of the osteoporotic lumbar vertebral body for the investigation of apparent level vertebra mechanics and micro-level trabecular mechanics
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Document Date: 2010-09-06 21:29:13


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File Size: 468,97 KB

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Company

Elsevier Ltd. / /

Country

United States / /

Currency

USD / /

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Facility

Biomedical Innovation Queensland University of Technology / C. Adam Institute of Health / Biomedical Innovation Queensland University of Technology GPO Box / /

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IndustryTerm

unstable systems / lattice network / stainless steel columns / large displacement solutions / /

OperatingSystem

L3 / /

Organization

Health and Biomedical Innovation Queensland University of Technology GPO Box / Queensland University of Technology / Brisbane / Clayton Adam Institute of Health / C. Adam Institute of Health / /

Person

Lattice / /

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Position

multi-scale model / vertebral compression fracture / model development process / ratios representative / model / Australia Corresponding author / Associate Professor / /

Technology

Adam / simulation / /

URL

http /

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