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Documents publiés en "2019"

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Nombre de documents: 12

A

Aubin, C.-É., & Wang, X. (2019). Biomechanics of Sagittal Balance – Modeling of the Spine. Dans Roussouly, P., Pinheiro-Franco, J. L., Labelle, H., & Gehrchen, M. (édit.), Sagittal Balance of the Spine – From Normal to Pathology: A Key for Treatment Strategy . Lien externe

Aubin, C.-É., Armstrong, R., Rawlinson, J., & Wang, X. (juin 2019). How do additional rods reduce loading of the primary rods in adult spinal instrumentation with pedicle subtraction osteotomy? [Communication écrite]. 2nd International Combined Meeting of Orthopaedic Research Societies (ICORS) and the Canadian Orthopaedic Association and Canadian Orthopaedic Research Society, Montréal, Québec, Canada. Non disponible

B

Bianco, R.-J., Arnoux, P.-J., Mac-Thiong, J.-M., & Aubin, C.-É. (2019). Thoracic pedicle screw fixation under axial and perpendicular loadings: A comprehensive numerical analysis. Clinical Biomechanics, 68, 190-196. Lien externe

J

Jaramillo, A. M., Aubin, C.-É., Hachem, B., Londono, I., Pelletier, J., Parent, S., & Villemure, I. (2019). Mechanobiological analysis of porcine spines instrumented with intra-vertebral staples. Journal of Musculoskeletal & Neuronal Interactions, 19(1), 13-20. Lien externe

K

Kadoury, S., Knez, D., & Aubin, C.-É. (2019). Biomechanically driven intraoperative spine registration during navigated anterior vertebral body tethering. Physics in Medicine & Biology, 64(11), 115008 (28 pages). Lien externe

L

La Barbera, L., Larson, A. N., Wang, X., & Aubin, C.-É. (mai 2019). Screw density and pattern have limited impact on the 3D correction of Lenke 1A curves [Communication écrite]. 34eme Congrès de la Recherche des étudiants des cycles supérieurs et des postdoctorants au Centre de recherche du Centre hospitalier universitaire Sainte-Justine, Montréal, Québec, Canada. Non disponible

La Barbera, L., Larson, A. N., Wang, X., & Aubin, C.-É. (avril 2018). Screw density has lower impact than correction objectives on 3D correction of Lenke 1A curves [Communication écrite]. 39e journée de la recherche du Programme d'orthopédie Édouward-Samson (POES) et de la division d'orthopédie de l'Université de Montréal, Montréal, Québec, Canada. Non disponible

S

Sarwark, J. F., Castelein, R. M., Maqsood, A., & Aubin, C.-É. (2019). The biomechanics of induction in adolescent idiopathic scoliosis: Theoretical factors. Journal of Bone and Joint Surgery-American Volume, 101(6), e22 (6 pages). Lien externe

Sterba, M., Aubin, C.-É., Wagnac, E., Fradet, L., & Arnoux, P.-J. (2019). Effect of impact velocity and ligament mechanical properties on lumbar spine injuries in posterior-anterior impact loading conditions: a finite element study. Medical and Biological Engineering and Computing, 57(6), 1381-1392. Lien externe

W

Wang, X., Aubin, C.-É., Armstrong, R., & Rawlinson, J. (octobre 2019). Biomechanical effects of additional rods in spinal instrumentation with pedicle subtraction osteotomy [Communication écrite]. 49e Réunion annuelle de la Société de scoliose du Québec, Québec City, Québec, Canada. Non disponible

Wang, X., Aubin, C.-É., Ritzman, T., McBride, L., Rawlinson, J., & Diaz, C. (2019). Differential Rod Contouring Simulation. (Rapport technique). Non disponible

Wang, X., Yeung, K., Cheung, J. P. Y., Lau, J. Y.-N., Qi, W., Cheung, K. M.-C., & Aubin, C.-É. (juillet 2019). A Novel Superelastic Shape-Memory Rod Provides More Options for Optimal AIS Correction: Biomechanical Analysis of A Clinical Trial with 5-Year Follow-Up [Communication écrite]. 26th International Meeting on Advanced Spine Techniques (IMAST 2019), Amsterdam, The Netherlands. Non disponible

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