Finite element modelling of the bone-implant interface and experimental validation
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Micromotion affects the tissue outcome at the peri-implant site. Interstitial fluid flow, induced by micromotion, may play a curtail part in the mesenchymal stem cell differentiation pathway necessary for bone regeneration. The aim of this project is to mo ...
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The goal of this study is to analyze mechanical behavior of a new scaffold composed of PLA/bTCP in revision knee arhtroplasty (RKA). For this purpose, finite element models of RKA was developed to study the importance of the geometry of bones, the fixation ...
Objectives: To validate an experimental setup designed to apply load onto bone tissue using osseointegrated implants in a rabbit model. Specifically, (1) to design an apparatus capable of generating controlled forces, (2) to assess implant placement, maint ...
It is a clinical challenge to obtain a sufficient orthopedic implant fixation in weak osteoporotic bone. When the primary implant fixation is poor, micromotions occur at the bone-implant interface, activating osteoclasts, which leads to implant loosening. ...