Simulation Study on Mechanisms of Hip Fractures in Backward Falls

Author:

HIRABAYASHI Satoko1,TSUCHIDA Tomonari1,TANAKA Eiichi1,MIZUNO Koji1

Affiliation:

1. Department of Mechanical Science & Engineering, Graduate School of Engineering, Nagoya University

Publisher

Japan Society of Mechanical Engineers

Subject

Biomedical Engineering

Reference23 articles.

1. (1) Sakamoto, K., Nakamura, T., Hagino, H., Endo, N., Mori, S., Muto, Y., Harada, A., Nakano, T., Yamamoto, S., Kushida, K., Tomita, K., Yoshimura, M., Yamamoto, H., Report on the Japanese Orthopaedic Association's 3-year project observing hip fractures at fixed-point hospitals. Journal of Orthopaedic Science Vol.11, No.2 (2006), pp.127-134.

2. (2) Wakao, N., Harada, A., Matsui, Y., Takemura, M., Shimokata, H., Mizuno, M., Ito, M., Matsuyama, Y., Ishiguro, N., The effect of impact direction on the fracture load of osteoporotic proximal femurs. Medical Engineering & Physics Vol.31, No.9 (2009), pp.1134-1139.

3. (3) Gullberg, B., Johnell, O., Kanis, J.A., World-wide Projections for Hip Fracture. Osteoporosis International Vol.7, No.5 (1997), pp.407-413.

4. (4) Robinovitch, S.N., Evans, S.L., Minns, J., Laing, A.C., Kannus, P., Cripton, P.A., Derler, S., Birge, S.J., Plant, D., Cameron, I.D., Kiel, D.P., Howland, J., Khan, K., Lauritzen, J.B., Hip protectors: recommendations for biomechanical. Osteoporosis International Vol.20, No.12 (2009), pp.1977-1988.

5. (5) Bessho, M., Ohnishi, I., Matsumoto, T., Ohashi, S., Matsuyama, J., Tobita, K., Kaneko, M., and Nakamura, K., Prediction of proximal femur strength using a CT-based nonlinear finite element method: differences in predicted fracture load and site with changing load and boundary conditions. Bone Vol. 45, No.2 (2009), pp.226-231.

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