27.12.2012 Views

ARUP; ISBN: 978-0-9562121-5-3 - CMBBE 2012 - Cardiff University

ARUP; ISBN: 978-0-9562121-5-3 - CMBBE 2012 - Cardiff University

ARUP; ISBN: 978-0-9562121-5-3 - CMBBE 2012 - Cardiff University

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

6. REFERENCES<br />

1. Belenguer Querol L., Büchler P., Rueckert D., Nolte L. P., and González Ballester<br />

M. A., 2006, “Statistical finite element model for bone shape and biomechanical<br />

properties.,” MICCAI, 9(Pt 1), pp. 405-11.<br />

2. Bonaretti S., Reimers N., Reyes M., Nikitsin A., Joensson A., Nolte L.-peter, and<br />

Büchler P., 2008, “Assessment of Peri-Articular Implant Fitting Based on<br />

Statistical Finite Element Modeling,” Bone, pp. 1-10.<br />

3. Bryan R., Nair P. B., and Taylor M., 2009, “Use of a statistical model of the<br />

whole femur in a large scale, multi-model study of femoral neck fracture risk.,”<br />

Journal of biomechanics, 42, pp. 2171-2176.<br />

4. Taddei F., Martelli S., Reggiani B., Cristofolini L., and Viceconti M., 2006,<br />

“Finite-element modeling of bones from CT data: sensitivity to geometry and<br />

material uncertainties,” IEEE Transactions on Biomedical Engineering, 53(11),<br />

pp. 2194–2200.<br />

5. Laz P. J., Stowe J. Q., Baldwin M. A., Petrella A. J., and Rullkoetter P. J., 2007,<br />

“Incorporating uncertainty in mechanical properties for finite element-based<br />

evaluation of bone mechanics,” Journal of Biomechanics, 40(13), pp. 2831-2836.<br />

6. Khalaji I., Rahemifar K., and Samani A., Finite Element Analysis. 2008,<br />

Proceedings of the 30th Annual International IEEE EMBS Conference.<br />

7. Blanz V., Mehl A., Vetter T., Seidel H.-peter, Dentistry R., and Informatik D., “A<br />

Statistical Method for Robust 3D Surface Reconstruction from Sparse Data 2,”<br />

Journal of Dentistry, pp. 1-8.<br />

8. Cootes T. F., and Taylor C. J., 2001, “Statistical models of appearance for medical<br />

image analysis and computer vision,” SPIE proceedings series.<br />

9. Rajamani K. T., Styner M. a, Talib H., Zheng G., Nolte L. P., and González<br />

Ballester M. a, 2007, “Statistical deformable bone models for robust 3D surface<br />

extrapolation from sparse data.,” Medical image analysis, 11(2), pp. 99-109.<br />

10. Hraiech N., 2010, “Mesh morphing and shape indexing in human femur modeling<br />

applications,” Université de Rennes.<br />

11. Heller M. O., Bergmann G., Kassi J.-P., Claes L., Haas N. P., and Duda G. N.,<br />

2005, “Determination of muscle loading at the hip joint for use in pre-clinical<br />

testing.,” Journal of biomechanics, 38(5), pp. 1155-63.<br />

12. Speirs A. D., Heller M. O., Duda G. N., and Taylor W. R., 2007, “Physiologically<br />

based boundary conditions in finite element modelling.,” Journal of biomechanics,<br />

40(10), pp. 2318-23.<br />

13. Schileo E., Dall’Ara E., Taddei F., Malandrino A., Schotkamp T., Baleani M., and<br />

Viceconti M., 2008, “An accurate estimation of bone density improves the<br />

accuracy of subject-specific finite element models,” Journal of Biomechanics,<br />

41(11), pp. 2483-91.<br />

14. Morgan E., Bayraktar H. ., and Keaveny T. M., 2003, “Trabecular bone modulus–<br />

density relationships depend on anatomic site,” Journal of Biomechanics, 36(7),<br />

pp. 897-904.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!