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Micro-CT morfometrie×FEA Bone Remodeling×
VakgebiedBiomechanicaBiomechanica
FamilieProcess / pipelineProcess / pipeline
Jaar van ontstaan19891987
GrondleggerFeldkampRik Huiskes
Type3D image acquisition and quantitative analysisMulti-physics finite element pipeline
Oorspronkelijke bronFeldkamp, L. A., Davis, L. C., & Kress, J. W. (1984). Practical cone-beam algorithm. Journal of the Optical Society of America A, 1(6), 612-619. DOI ↗Huiskes, R., Weinans, H., Grootenboer, H. J., Dalstra, M., Fudala, B., & Slooff, T. J. (1987). Adaptive bone-remodeling theory applied to prosthetic-design analysis. Journal of Biomechanics, 20(11-12), 1135-1150. DOI ↗
AliassenmicroCT, Micro-CT analysis, 3D bone morphometryBone remodeling simulation, Trabecular architecture adaptation, Mechano-regulation
Verwant33
SamenvattingMicro-computed tomography (microCT) morphometry quantifies 3D bone and tissue architecture at micrometer resolution, enabling detailed assessment of bone density, trabecular structure, and porosity. Developed by Feldkamp and colleagues and standardized by the American Society for Bone and Mineral Research, microCT is the gold standard for preclinical bone analysis and has expanded to tissue engineering and material characterization.Finite element analysis (FEA) for bone remodeling predicts how bone tissue density and architecture adapt to changes in mechanical loading over time. Pioneered by Rik Huiskes and Donald Carter in the 1980s, this computational approach integrates stress analysis with biophysical remodeling rules to simulate the long-term response of bone to disease, aging, or surgical intervention.
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  3. PUBLISHED

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ScholarGateMethoden vergelijken: Micro-CT Morphometry · FEA Bone Remodeling. Geraadpleegd op 2026-06-15 via https://scholargate.app/nl/compare