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Documents publiés en "2023"

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Nombre de documents: 12

C

Constant, C., Aubin, C.-É., Kremers, H. M., Garcia, D. V. V., Wyles, C. C., Rouzrokh, P., & Larson, A. N. (2023). The use of deep learning in medical imaging to improve spine care: A scoping review of current literature and clinical applications. North American Spine Society Journal (NASSJ), 15, 14 pages. Disponible

G

Gay, M., Wang, X., Ritzman, T., Floccari, L., Schwend, R. M., & Aubin, C.-É. (2023). Biomechanical analysis of rod contouring in posterior spinal instrumentation and fusion for 3D correction of adolescent idiopathic scoliosis. Spine Deformity, 11(6), 1309-1316. Lien externe

Guy, A., & Aubin, C.-É. (2023). Finite element simulation of growth modulation during brace treatment of adolescent idiopathic scoliosis. Journal of Orthopaedic Research, 41(9), 2065-2074. Lien externe

L

Lin, Y., Cheng, A., Pirie, J., Davidson, J., Levy, A., Matava, C., Aubin, C.-É., Robert, E., Buyck, M., Hecker, K., Gravel, G., & Chang, T. P. (2023). Quantifying Simulated Contamination Deposition on Healthcare Providers Using Image Analysis. Simulation in Healthcare, 18(3), 207-213. Lien externe

Lopez Poncelas, M., La Barbera, L., Rawlinson, J. J., Polly, D. W., & Aubin, C.-É. (2023). Influence of spinal lordosis correction location on proximal junctional failure: a biomechanical study. Spine Deformity, 11(1), 49-58. Lien externe

Lopez Poncelas, M., La Barbera, L., Rawlinson, J., Crandall, D., & Aubin, C.-É. (2023). Proximal junctional failure after surgical instrumentation in adult spinal deformity: biomechanical assessment of proximal instrumentation stiffness. Spine Deformity, 11(1), 59-69. Lien externe

M

Mahecha Capacho, D. R., Beaudry, C., Aubin, C.-É., & Armellini, F. (mai 2023). De la gestion des idées innovantes à la norme ISO 56000 [Présentation]. Dans 90e congrès de l'ACFAS, Montreal, Qc, Canada. Non disponible

Martin, S., Cobetto, N., Larson, A. N., & Aubin, C.-É. (2023). Biomechanical modeling and assessment of lumbar vertebral body tethering configurations. Spine Deformity, 11(5), 1041-1048. Lien externe

Q

Qiao, N., Villemure, I., & Aubin, C.-É. (2023). A novel method for assigning bone material properties to a comprehensive patient-specific pelvic finite element model using biplanar multi-energy radiographs. Computer Methods in Biomechanics and Biomedical Engineering, 13 pages. Lien externe

S

Solorzano Barrera, C., Villemure, I., & Aubin, C.-É. (2023). A novel methodology to estimate bone mechanical properties using dual-energy imaging to improve pedicle screw fixation. Journal of Musculoskeletal and Neuronal Interact, 23(3), 316-327. Disponible

W

Wang, X., Larson, A. N., Polly, D. W. J., & Aubin, C.-É. (2023). Biomechanical Computational Study of Pedicle Screw Position and Density in Adolescent Idiopathic Scoliosis Instrumentation. Spine, 48(20), 1436-1445. Lien externe

Wang, X., Schwend, R. M., Ritzman, T., Floccari, L., & Aubin, C.-É. (2023). Concave rod first vs. convex rod first in AIS instrumentation with differential rod contouring: computer modeling and simulations based on ten AIS surgical cases. Spine Deformity, 11(6), 1317-1324. Lien externe

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