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Documents dont l'auteur est "Ghezelbash, Farshid"

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Nombre de documents: 28

D

Daareyni, A., Baghani, M., Ghezelbash, F., & Zakerzadeh, M. R. (2022). Data-driven modeling of an elastomer bushing system under various visco-hyperelastic deformations. Computational Materials Science, 214, 111710 (11 pages). Lien externe

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Eskandari, A. H., Ghezelbash, F., Shirazi-Adl, A., & Lariviere, C. (2024). Comparative evaluation of different spinal stability metrics. Journal of Biomechanics, 162, 111901 (10 pages). Lien externe

Eskandari, A. H., Ghezelbash, F., Shirazi-Adl, A., Gagnon, D., Mecheri, H., & Larivière, C. (2023). Validation of an EMG submaximal method to calibrate a novel dynamic EMG-driven musculoskeletal model of the trunk: Effects on model estimates. Journal of Electromyography and Kinesiology, 68, 102728 (9 pages). Lien externe

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Fallah, F., Nosier, A., Sharifi, M., & Ghezelbash, F. (2016). On perturbation method in mechanical, thermal and thermo-mechanical loadings of plates: cylindrical bending of FG plates. Zamm-Zeitschrift Fur Angewandte Mathematik Und Mechanik, 96(2), 217-232. Lien externe

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Ghezelbash, F., Liu, S., Shirazi-Adl, A., & Li, J. (2022). Blood clot behaves as a poro-visco-elastic material. Journal of the Mechanical Behavior of Biomedical Materials, 128, 8 pages. Lien externe

Ghezelbash, F., Shirazi-Adl, A., Gagnon, D., Shahvarpour, A., Arjmand, N., Eskandari, A. H., & Lariviere, C. (2022). Submaximal electromyography-driven musculoskeletal modeling of the human trunk during static tasks: Equilibrium and stability analyses. Journal of Electromyography and Kinesiology, 65, 102664 (10 pages). Lien externe

Ghezelbash, F., Shahvarpour, A., Larivière, C., & Shirazi-Adl, A. (2021). Evaluating stability of human spine in static tasks: a combined in vivo-computational study. Computer Methods in Biomechanics and Biomedical Engineering, 25(10), 1156-1168. Lien externe

Ghezelbash, F., Eskandari, A. H., Shirazi-Adl, A., Kazempour, M., TavaKoli, J., Baghani, M., & Costi, J. J. (2021). Modeling of human intervertebral disc annulus fibrosus with complex multi-fiber networks. Acta Biomaterialia, 123, 208-221. Lien externe

Ghezelbash, F., Shirazi-Adl, A., Plamondon, A., & Arjmand, N. (2020). Comparison of different lifting analysis tools in estimating lower spinal loads Evaluation of NIOSH criterion. Journal of Biomechanics, 112, 110024 (6 pages). Lien externe

Ghezelbash, F., Schmidt, H., Shirazi-Adl, A., & El-Rich, M. (juillet 2019). Internal load-sharing in the human passive lumbar spine: Review of in vitro and finite element model studies [Communication écrite]. 3rd International Workshop on Spinal and Deformation, Berlin, Germany (11 pages). Publié dans Journal of Biomechanics, 102. Lien externe

Ghezelbash, F., Eskandari, A. H., Shirazi-Adl, A., Kazempour, M., Tavakoli, J., Baghani, M., & Costi, J. J. (2020). Modeling of Human Intervertebral Disc Annulus Fibrosus with Complex Multi-Fiber Networks. SSRN Electronic Journal, 41 pages. Lien externe

Ghezelbash, F., Shirazi-Adl, A., Baghani, M., & Eskandari, A. H. (juillet 2019). On the modeling of human intervertebral disc annulus fibrosus: Elastic, permanent deformation and failure responses [Communication écrite]. 3rd International Workshop on Spinal Loading and Deformation, Berlin, Germany (10 pages). Publié dans Journal of Biomechanics. Lien externe

Ghezelbash, F., Shirazi-Adl, A., El Ouaaid, Z., Plamondon, A., & Arjmand, N. (juillet 2019). Subject-specific regression equations to estimate lower spinal loads during symmetric and asymmetric static lifting [Communication écrite]. 3rd International Workshop on Spinal Loading and Deformation, Berlin, Germany (12 pages). Publié dans Journal of Biomechanics, 102. Lien externe

Ghezelbash, F. (2019). Subject-Specific Computational Musculoskeletal Modeling of Human Trunk in Lifting : Role of Age, Sex, Body Weight and Body Height [Thèse de doctorat, Polytechnique Montréal]. Disponible

Ghezelbash, F., Eskandari, A. H., Shirazi-Adl, A., Arjmand, N., El-Ouaaid, Z., & Plamondon, A. (mai 2017). Effects of motion segment simulation and joint positioning on spinal loads in trunk musculoskeletal models [Communication écrite]. 2nd International Workshop on Spinal Loading and Deformation, Berlin, Germany. Publié dans Journal of Biomechanics, 70. Lien externe

Ghezelbash, F., Shirazi-Adl, A., Plamondon, A., & Arjmand, N. (mars 2018). Subject-specific risk assessment of obesity and ageing in spine biomechanics [Communication écrite]. 15th International Symposium Computer Methods in Biomechanics and Biomedical Engineering and 3rd Conference on Imaging and Visualization (CMBBE 2018), Lisbon, Portugal. Lien externe

Ghezelbash, F., Shirazi-Adl, A., El Ouaaid, Z., Plamondon, A., & Arjmand, N. (mars 2018). Subject-specific trunk musculoskeletal modeling: Characteristics, validation, and applications [Communication écrite]. 15th International Symposium Computer Methods in Biomechanics and Biomedical Engineering and 3rd Conference on Imaging and Visualization (CMBBE 2018), Lisbon, Portugal (1 page). Lien externe

Ghezelbash, F., El Ouaaid, Z., Shirazi-Adl, A., Plamondon, A., & Arjmand, N. (mai 2017). Trunk musculoskeletal response in maximum voluntary exertions: A combined measurement-modeling investigation [Communication écrite]. 2nd International Workshop on Spinal Loading and Deformation, Berlin, Germany. Publié dans Journal of Biomechanics, 70. Lien externe

Ghezelbash, F., Eskandari, A. H., Shirazi-Adl, A., Arjmand, N., El Ouaaid, Z., & Plamondon, A. (mai 2017). Effects of joint positioning and stiffness on spinal loads and kinematics in trunk musculoskeletal models [Communication écrite]. 2nd International Workshop on Spine Loading and Deformation, Berlin, Germany. Lien externe

Ghezelbash, F., Shirazi-Adl, A., Plamondon, A., Arjmand, N., & Parnianpour, M. (2017). Obesity and Obesity Shape Markedly Influence Spine Biomechanics: A Subject-Specific Risk Assessment Model. Annals of Biomedical Engineering, 45(10), 2373-2382. Lien externe

Ghezelbash, F., El Ouaaid, Z., Shirazi-Adl, A., Plamondon, A., & Arjmand, N. (mai 2017). Subject-specific regression equations to estimate spinal loads in symmetric lifting [Communication écrite]. 2nd International Workshop on Spine Loading and Deformation, Berlin, Germany. Lien externe

Ghezelbash, F., El Ouaaid, Z., Shirazi-Adl, A., Plamondon, A., & Arjmand, N. (mai 2017). Subject-specific validation of a trunk musculoskeletal model in maximum voluntary exertions [Communication écrite]. 2nd International Workshop on Spine Loading and Deformation, Berlin, Germany. Lien externe

Ghezelbash, F., Shirazi-Adl, A., Arjmand, N., El Ouaaid, Z., & Plamondon, A. (juillet 2016). Effects of curved muscles and disc positioning in trunk models on spinal loads [Communication écrite]. 19th Canadian Society for Biomechanics (CSB 2016), Hamilton, ON, Canada. Lien externe

Ghezelbash, F., Shirazi-Adl, A., Arjmand, N., El Ouaaid, Z., & Plamondon, A. (juillet 2016). Significance of scaling in the musculoskeletal modeling of the spine biomechanics [Communication écrite]. 19th Canadian Society for Biomechanics (CSB 2016), Hamilton, ON, Canada. Lien externe

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Li, X., Liu, Y., Li, L., Huo, R., Ghezelbash, F., Ma, Z., Bao, G., Liu, S., Yang, Z., Weber, M. H., Li-Jessen, N. Y. K., Haglund, L., & Li, J. (2023). Tissue-mimetic hybrid bioadhesives for intervertebral disc repair. Materials Horizons, 10(5), 1705-1718. Lien externe

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Makani, A., Shirazi-Adl, A., & Ghezelbash, F. (2022). Computational biomechanics of human knee joint in stair ascent: Muscle-ligament-contact forces and comparison with level walking. International Journal for Numerical Methods in Biomedical Engineering, 38(11), e3646 (29 pages). Lien externe

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Ramirez, V., Ghezelbash, F., Shirazi-Adl, A., & Bazrgari, B. (2023). Trunk muscle forces and spinal loads during heavy deadlift: Effects of personalization, muscle wrapping, muscle lever arm, and lumbopelvic rhythm. International Journal for Numerical Methods in Biomedical Engineering, 39(4), e3680 (11 pages). Lien externe

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Shamsi, M.B., Sarrafzadeh, J., Jamshidi, A., Arjmand, N., & Ghezelbash, F. (2017). Comparison of spinal stability following motor control and general exercises in nonspecific chronic low back pain patients. Clinical Biomechanics, 48, 42-48. Lien externe

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