Ascenzi et al., 2004 - Google Patents
Mathematical modeling of human secondary osteonsAscenzi et al., 2004
View PDF- Document ID
- 2215104260506787367
- Author
- Ascenzi M
- Kabo J
- Andreuzzi M
- Publication year
- Publication venue
- Scanning: The Journal of Scanning Microscopies
External Links
Snippet
This investigation explores the structural dimensions and patterns within single secondary osteons, with consideration of their biological variation. New data from images obtained previously of osteons observed through linearly polarized light, electron microscopy, and …
- 210000001564 Haversian System 0 title abstract description 115
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US7353153B2 (en) | Method and system for modeling bone structure | |
US7212958B2 (en) | Method and system for modelling bone structure | |
EP1351628B1 (en) | System and method for modeling bone structure | |
Yosibash et al. | A CT-based high-order finite element analysis of the human proximal femur compared to in-vitro experiments | |
Alastrué et al. | Assessing the use of the “opening angle method” to enforce residual stresses in patient-specific arteries | |
Marco et al. | Numerical modelling of femur fracture and experimental validation using bone simulant | |
US7283940B2 (en) | Multidirectional morphology and mechanics of osteonic lamellae | |
Ascenzi et al. | Mathematical modeling of human secondary osteons | |
US8082135B2 (en) | Method and system for modeling bone structure | |
Furlong et al. | A finite element analysis of the influence of surgical herniation on the viscoelastic properties of the intervertebral disc | |
US7127383B2 (en) | Modeling viscoelastic torsional properties of osteons | |
Zysset | A constitutive law for trabecular bone | |
Austman et al. | Development of a customized density—modulus relationship for use in subject-specific finite element models of the ulna | |
Kong et al. | Recent advance in evaluation methods for characterizing mechanical properties of bone | |
Makuch et al. | Human cancellous bone mechanical properties and penetrator geometry in nanoindentation tests | |
EP1472662B1 (en) | Method of predicting lamellar mechanical behaviour | |
Guo | Fatigue of trabecular bone | |
Rodriguez Marval | Strain Rate Dependent Response and Fluid Load Support of the Knee Joint Under Compression | |
Jasiuk | Multi-scale analysis of bone | |
Hosseini | Constitutive Modeling of Trabecular Bone in Large Strain Compression | |
Chang et al. | The effect of material inhomogeneous for femoral finite element analysis | |
Rudert | Bone grafting for femoral head osteonecrosis: Automated creation of patient-specific finite element models | |
Pereira | Identification of cohesive laws of cortical bone under mode I, mode II and mixed-mode I+ II | |
Engbretson | Determining the modulus of intact bovine vertebral cancellous bone tissue: Development and validation of a protocol | |
Trainor | Measurement and containment of femoral cross-sectional deformation during hip replacement surgery |