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Article in English | MEDLINE | ID: mdl-22978618

ABSTRACT

Bone defects in revision knee arthroplasty are often located in load-bearing regions. The goal of this study was to determine whether a physiologic load could be used as an in situ osteogenic signal to the scaffolds filling the bone defects. In order to answer this question, we proposed a novel translation procedure having four steps: (1) determining the mechanical stimulus using finite element method, (2) designing an animal study to measure bone formation spatially and temporally using micro-CT imaging in the scaffold subjected to the estimated mechanical stimulus, (3) identifying bone formation parameters for the loaded and non-loaded cases appearing in a recently developed mathematical model for bone formation in the scaffold and (4) estimating the stiffness and the bone formation in the bone-scaffold construct. With this procedure, we estimated that after 3 years mechanical stimulation increases the bone volume fraction and the stiffness of scaffold by 1.5- and 2.7-fold, respectively, compared to a non-loaded situation.


Subject(s)
Arthroplasty, Replacement, Knee , Osteogenesis , Animals , Bone and Bones/diagnostic imaging , Bone and Bones/physiology , Finite Element Analysis , Models, Biological , Rats , Tissue Engineering , Tissue Scaffolds , Weight-Bearing/physiology , X-Ray Microtomography
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