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Finite element analysis and CT-based structural rigidity analysis to assess failure load in bones with simulated lytic defects
- Source :
- Bone, 58, pp. 160-7, Bone, 58, 160-7, Bone, 58, 160-167. Elsevier
- Publication Year :
- 2014
-
Abstract
- Item does not contain fulltext There is an urgent need to improve the prediction of fracture risk for cancer patients with bone metastases. Pathological fractures that result from these tumors frequently occur in the femur. It is extremely difficult to determine the fracture risk even for experienced physicians. Although evolving, fracture risk assessment is still based on inaccurate predictors estimated from previous retrospective studies. As a result, many patients are surgically over-treated, whereas other patients may fracture their bones against expectations. We mechanically tested ten pairs of human cadaveric femurs to failure, where one of each pair had an artificial defect simulating typical metastatic lesions. Prior to testing, finite element (FE) models were generated and computed tomography rigidity analysis (CTRA) was performed to obtain axial and bending rigidity measurements. We compared the two techniques on their capacity to assess femoral failure load by using linear regression techniques, Student's t-tests, the Bland-Altman methodology and Kendall rank correlation coefficients. The simulated FE failure loads and CTRA predictions showed good correlation with values obtained from the experimental mechanical testing. Kendall rank correlation coefficients between the FE rankings and the CTRA rankings showed moderate to good correlations. No significant differences in prediction accuracy were found between the two methods. Non-invasive fracture risk assessment techniques currently developed both correlated well with actual failure loads in mechanical testing suggesting that both methods could be further developed into a tool that can be used in clinical practice. The results in this study showed slight differences between the methods, yet validation in prospective patient studies should confirm these preliminary findings.
- Subjects :
- medicine.medical_specialty
Histology
Physiology
Endocrinology, Diabetes and Metabolism
Finite Element Analysis
Osteolysis
METIS-301798
Article
Weight-Bearing
Correlation
Linear regression
medicine
Humans
Femur
Structural rigidity
Rank correlation
Aged, 80 and over
Orthodontics
business.industry
IR-90971
Flexural rigidity
Finite element method
Biomechanical Phenomena
Surgery
Reconstructive and regenerative medicine Radboud Institute for Health Sciences [Radboudumc 10]
Linear Models
Tomography, X-Ray Computed
Cadaveric spasm
business
Femoral Fractures
Subjects
Details
- ISSN :
- 87563282
- Database :
- OpenAIRE
- Journal :
- Bone, 58, pp. 160-7, Bone, 58, 160-7, Bone, 58, 160-167. Elsevier
- Accession number :
- edsair.doi.dedup.....069fb30a367fbea7c6d1931289605f64