A Dynamic Finite Element Analysis of Impulsive Loading of the Extension-Splinted Rabbit Knee
- 1 May 1990
- journal article
- research article
- Published by ASME International in Journal of Biomechanical Engineering
- Vol. 112 (2) , 119-128
- https://doi.org/10.1115/1.2891162
Abstract
A dynamic nonlinear finite element model was developed to study juxtarticular stresses in the splinted rabbit knee, an established laboratory model for creating osteoarthrosis due to impulsive loading. Plane strain finite element results were validated by comparison with corresponding experimental data. Parametric effects studied included the input tibial displacement speed, the local bone density distribution, and the modulus of cartilage and subchondral bone. While the computed resultant contact force magnitude was sensitive to a number of model parameters, the stress patterns, when normalized to a given resultant force magnitude, were not. Despite comparable force peaks, the finite element results showed approximately six-fold higher effective strain rate levels for a severely impulsive loading protocol known to induce rapid osteoarthrosis, versus those for a mildly impulsive loading protocol not usually associated with cartilage damage. A propensity for elevated shear in the deep cartilage layer near the contact periphery, observed in nearly all computed stress distributions, is consistent with previous experimental findings of fissuring at that level in the impulsively loaded rabbit knee.Keywords
This publication has 9 references indexed in Scilit:
- Finite element analysis of acetabular reconstruction: Noncemented threaded cupsActa Orthopaedica, 1987
- Relation of coxarthrosis to stresses and morphogenesis: A finite element analysisActa Orthopaedica, 1987
- Experimental determination of the linear biphasic constitutive coefficients of human fetal proximal femoral chondroepiphysisJournal of Biomechanics, 1986
- Finite element studies of some juxtarticular stress changes due to localized subchondral stiffeningJournal of Biomechanics, 1984
- A contact-coupled finite element analysis of the natural adult hipJournal of Biomechanics, 1984
- The effects of indirect blunt trauma on adult canine articular cartilage.Journal of Bone and Joint Surgery, 1983
- Musculo-skeletal shock absorption: Relative contribution of bone and soft tissues at various frequenciesJournal of Biomechanics, 1978
- Survival of articular cartilage after controlled impactJournal of Bone and Joint Surgery, 1977
- The compressive behavior of bone as a two-phase porous structureJournal of Bone and Joint Surgery, 1977