<  Retour au portail Polytechnique Montréal

Documents dont l'auteur est "Schmidt, Hendrik"

Monter d'un niveau
Pour citer ou exporter [feed] Atom [feed] RSS 1.0 [feed] RSS 2.0
Grouper par: Auteurs ou autrices | Date de publication | Sous-type de document | Aucun groupement
Aller à : D | G | R | S | V
Nombre de documents: 15

D

Dreischarf, M., Shirazi-Adl, A., Arjmand, N., Rohlmann, A., & Schmidt, H. (2016). Estimation of Loads on Human Lumbar Spine: A Review of In Vivo and Computational Model Studies. Journal of Biomechanics, 49(6), 833-845. Lien externe

G

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

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

Galbusera, F., Schmidt, H., Noailly, J., Malandrino, A., Lacroix, D., Wilke, H.-J., & Shirazi-Adl, A. (2011). Comparison of four methods to simulate swelling in poroelastic finite element models of intervertebral discs. Journal of the Mechanical Behavior of Biomedical Materials, 4(7), 1234-1241. Lien externe

R

Reitmaier, S., Graichen, F., Shirazi-Adl, A., & Schmidt, H. (2017). Separate the Sheep from the Goats: Use and Limitations of Large Animal Models in Intervertebral Disc Research. Journal of Bone & Joint Surgery, 99(19), e102-e102. Lien externe

Rajaee, M. A., Arjmand, N., Shirazi-Adl, A., Plamondon, A., & Schmidt, H. (2015). Comparative evaluation of six quantitative lifting tools to estimate spine loads during static activities. Applied Ergonomics, 48, 22-32. Lien externe

Reitmaier, S., Shirazi-Adl, A., Bashkuev, M., Wilke, H.-J., Gloria, A., & Schmidt, H. (2012). In Vitro and in Silico Investigations of Disc Nucleus Replacement. Journal of the Royal Society Interface, 9(73), 1869-1879. Lien externe

S

Shirazi-Adl, A., Schmidt, H., & Kingma, I. (juillet 2019). 3rd International workshop on spinal loading and deformation [Communication écrite]. 3r International Workshop on Spinal Loading and Deformation, Berlin, Germany (4 pages). Publié dans Journal of Biomechanics, 102. Lien externe

Schmidt, H., & Shirazi-Adl, A. (2018). Temporal and spatial variations of pressure within intervertebral disc nuclei. Journal of the Mechanical Behavior of Biomedical Materials, 79, 309-313. Lien externe

Schmidt, H., Shirazi-Adl, A., Arjman, N., & Dreischarf, M. (mars 2018). Estimation of loads on human lumbar spine - a critical review of past in vivo and computational model studies [Communication écrite]. 15th International Symposium Computer Methods in Biomechanics and Biomedical Engineering and 3rd Conference on Imaging and Visualization (CMBBE 2018), Lisbon, Portugal. Non disponible

Schmidt, H., Shirazi-Adl, A., Schilling, C., & Dreischarf, M. (juillet 2016). Influence of preload on intervertebral disc stiffness in loading-unloading cycles of compression [Communication écrite]. 22nd Congress of the European Society of Biomechanics, Lyon, France. Lien externe

Shirazi-Adl, A., Schmidt, H., & Kingma, I. (2016). Spine Loading and Deformation - From Loading to Recovery. Journal of Biomechanics, 49(6), 813-816. Lien externe

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., Galbusera, F., Wilke, H.-J., & Shirazi-Adl, A. (2011). Remedy for fictive negative pressures in biphasic finite element models of the intervertebral disc during unloading. Computer Methods in Biomechanics and Biomedical Engineering, 14(3), 293-303. Lien externe

V

Velísková, P., Bashkuev, M., Shirazi-Adl, A., & Schmidt, H. (mai 2017). Computational study of the role of fluid content and flow on the lumbar disc response in cyclic compression: Replication of in vitro and in vivo conditions [Communication écrite]. 2nd International Workshop on Spinal Loading and Deformation, Berlin, Germany. Publié dans Journal of Biomechanics, 70. Lien externe

Liste produite: Fri Apr 19 04:31:18 2024 EDT.