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Documents publiés en "2014"

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Nombre de documents: 22

A

Adouni, M., & Shirazi-Adl, A. (2014). Evaluation of Knee Joint Muscle Forces and Tissue Stresses-Strains During Gait in Severe OA Versus Normal Subjects. Journal of Orthopaedic Research, 32(1), 69-78. Lien externe

Adouni, M., & Shirazi-Adl, A. (2014). Partitioning of knee joint internal forces in gait is dictated by the knee adduction angle and not by the knee adduction moment. Journal of Biomechanics, 47(7), 1696-1703. Lien externe

Adouni, M., Shirazi-Adl, A., & Marouane, H. (juillet 2014). Anterior cruciate ligament force markedly increases with gastrocnemius contraction : Analysis of the knee joint in gait and at different flexion angles [Communication écrite]. 7th World Congress of Biomechanics, Boston, Mass.. Non disponible

Adouni, M., Shirazi-Adl, A., & Marouane, H. (mars 2014). Gastrocnemius Contraction Substantially Increases ACL Force in Knee Joint in Gait and in all Flexion Angles [Communication écrite]. 60th Annual Meeting of the Orthopaedic Research Society, New Orleans, Louisiana. Lien externe

Arjmand, N., Hajihosseinali, M., Shirazi-Adl, A., & Plamondon, A. (juillet 2014). Effect of Body Weight on Spine Loads in Different Activities: A Detailed Biomechanical Modeling Investigation [Communication écrite]. 7th World Congress of Biomechanics, Boston, Mass.. Non disponible

Arjmand, N., Rajaee, M. A., Shirazi-Adl, A., & Plamondon, A. (juillet 2014). Comparison of Five Lifting Analysis Tools to Determine Low Back Loads [Communication écrite]. 7th World Congress of Biomechanics, Boston, Mass.. Non disponible

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

E

El Ouaaid, Z., Shirazi-Adl, A., & Plamondon, A. (2014). Effect of changes in orientation and position of external loads on trunk muscle activity and kinematics in upright standing. Journal of Electromyography and Kinesiology, 24(3), 387-393. Lien externe

El Ouaaid, Z., Shirazi-Adl, A., Plamondon, A., & Arjmand, N. (2014). Elevation and orientation of external loads influence trunk neuromuscular response and spinal forces despite identical moments at the L5-S1 level. Journal of Biomechanics, 47(12), 3035-3042. Lien externe

El Ouaaid, Z., Shirazi-Adl, A., Plamondon, A., & Arjmand, N. (juillet 2014). Trunk Muscle Activity and Spinal Loads Substantially Alter with External Load Orientation and Position despite Identical Moment [Communication écrite]. 7th World Congress of Biomechanics, Boston, Mass.. Non disponible

G

Galbusera, F., Bashkuev, M., Wilke, H.-J., Shirazi-Adl, A., & Schmidt, H. (2014). Comparison of various contact algorithms for poroelastic tissues. Computer Methods in Biomechanics and Biomedical Engineering, 17(12), 1323-1334. Lien externe

H

Hajihosseinali, M., Arjmand, N., Shirazi-Adl, A., Farahmand, F., & Ghiasi, M. S. (2014). A novel stability and kinematics-driven trunk biomechanical model to estimate muscle and spinal forces. Medical Engineering and Physics, 36(10), 1296-1304. Lien externe

M

Marouane, H., Shirazi-Adl, A., Adouni, M., & Hashemi, J. (2014). Steeper posterior tibial slope markedly increases ACL force in both active gait and passive knee joint under compression. Journal of Biomechanics, 47(6), 1353-1359. Lien externe

Marouane, H., Shirazi-Adl, A., Adouni, M., & Hashemi, J. (juillet 2014). Steeper Posterior Tibial Slope Markedly Increases Forces in Anterior Cruciate Ligament [Affiche]. 7th World Congress of Biomechanics, Boston, Mass.. Non disponible

Marouane, H., Shirazi-Adl, A., Adouni, M., & Hashemi, J. (mars 2014). Steeper posterior tibial slope substantially increases ACL force both in gait and in isolated knee joint in compression at all flexion angles [Communication écrite]. 60th Annual Meeting of the Orthopaedic Research Society, New Orleans, Louisiana. Lien externe

Motaghinasab, S., Shirazi-Adl, A., Parnianpour, M., & Urban, J. P. G. (2014). Disc size markedly influences concentration profiles of intravenously administered solutes in the intervertebral disc: a computational study on glucosamine as a model solute. European Spine Journal, 23(4), 715-723. Lien externe

S

Schmidt, H., Bashkuev, M., Galbusera, F., Wilke, H.-J., & Shirazi-Adl, A. (2014). Finite element study of human lumbar disc nucleus replacements. Computer Methods in Biomechanics and Biomedical Engineering, 17(16), 1762-1776. Lien externe

Schmidt, H., Shirazi-Adl, A., Bashkuev, C., Schilling, C., & Dreischarf, M. (juillet 2014). On the fluid flow mechanisms in the intervertebral disc under physiological dynamic loading-unloading cycles [Communication écrite]. 7th World Congress of Biomechanics, Boston, Mass.. Non disponible

Shahvarpour, A., Shirazi-Adl, A., Bazrgari, B., & Larivière, C. (juillet 2014). Experimental and Computational Investigation of Trunk Response to Sudden Forward Perturbations [Communication écrite]. 7th World Congress of Biomechanics, Boston, Mass.. Non disponible

Shahvarpour, A., Shirazi-Adl, A., Mecheri, H., & Lariviere, C. (2014). Trunk response to sudden forward perturbations - Effects of preload and sudden load magnitudes, posture and abdominal antagonistic activation. Journal of Electromyography and Kinesiology, 24(3), 394-403. Lien externe

T

Tafazzol, A., Arjmand, N., Shirazi-Adl, A., & Parnianpour, M. (2014). Lumbopelvic rhythm during forward and backward sagittal trunk rotations: Combined in vivo measurement with inertial tracking device and biomechanical modeling. Clinical Biomechanics, 29(1), 7-13. Lien externe

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