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Documents dont l'auteur est "Wilke, H. J."

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Nombre de documents: 7

D

Dreischarf, M., Zander, T., Shirazi-Adl, A., Puttlitz, C. M., Adam, C. J., Chen, C. S., Goel, V. K., Kiapour, A., Kim, Y. H., Labus, K. M., Little, J. P., Park, W. M., Wang, Y. H., Wilke, H. J., Rohlmann, A., & Schmidt, H. (juillet 2014). Comparison of eight published lumbar spine finite element models [Communication écrite]. 7th World Congress of Biomechanics, Boston, Mass.. Non disponible

Dreischarf, M., Zander, T., Shirazi-Adl, A., Puttlitz, C. M., Adam, C. J., Chen, C. S., Goel, V. K., Kiapour, A., Kim, Y. H., Labus, K. M., Little, J. P., Park, W. M., Wang, Y. H., Wilke, H. J., Rohlmann, A., & Schmidt, H. (2014). Comparison of eight published static finite element models of the intact lumbar spine: Predictive power of models improves when combined together. Journal of Biomechanics, 47(8), 1757-1766. Lien externe

P

Parnianpour, M., Wang, J. L., Shirazi-Adl, A., Sparto, P., & Wilke, H. J. (1997). Effect of variations in trunk models in predicting muscle strength and spinal loading. Journal of Musculoskeletal Research, 1(01), 55-69. Lien externe

Parnianpour, M., Shirazi-Adl, A., Wang, J. L., Wilke, H. J., & Sparto, P. (janvier 1996). Effects of anatomical models and cost functions used by optimisation models on the predicted spinal load [Communication écrite]. Advances in bioengineering, ASME WAM, Atlanta. Non disponible

Parnianpour, M., Shirazi-Adl, A., Wang, J. L., Wilke, H. J., & Sparto, P. (janvier 1996). Novel approach to quantify strength and spinal loading using optimization models [Communication écrite]. Engineering systems design and analysis conference (ESDA), Montpellier, France. Non disponible

Q

Quint, U., Wilke, H. J., Shirazi-Adl, A., Parnianpour, M., Loer, F., & Claes, L. E. (1998). Importance of the Intersegmental Trunk Muscles for the Stability of the Lumbar Spine - a Biomechanical Study in Vitro. Spine, 23(18), 1937-1945. Lien externe

W

Wang, J. L., Shirazi-Adl, A., Parnianpour, M., & Wilke, H. J. (janvier 1996). Dynamic response at creep and relaxation of motion segment L2-L3 by the viscoelastic finite element modelling [Communication écrite]. Engineering systems design and analysis conference (ESDA), Montpellier, France. Non disponible

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