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Documents publiés en "2016"

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Nombre de documents: 25

Département de génie électrique

Duceppe, N., Wang, X., & Aubin, C.-É. (octobre 2016). 3D biomechanical evaluation of different implant configurations in scoliosis instrumentation with apical vertebral derotation [Communication écrite]. 46e Réunion annuelle de la Société de scoliose du Québec, Estérel, QC. Non disponible

Fradet, L., Wang, X., Lenke, L. G., & Aubin, C.-É. (2016). Biomechanical analysis of proximal junctional failure following adult spinal instrumentation using a comprehensive hybrid modeling approach. Clinical Biomechanics, 39, 122-128. Lien externe

Le Navéaux, F., Larson, A. N., Labelle, H., Wang, X., & Aubin, C.-É. (2016). How does implant distribution affect 3D correction and bone-screw forces in thoracic adolescent idiopathic scoliosis spinal instrumentation? Clinical Biomechanics, 39, 25-31. Lien externe

Salvi, G., Aubin, C.-É., Le Naveaux, F., Wang, X., & Parent, S. (2016). Biomechanical analysis of Ponte and pedicle subtraction osteotomies for the surgical correction of kyphotic deformities. European Spine Journal, 25(8), 2452-2460. Lien externe

Wang, X., Boyer, L., Le Naveaux, F., Schwend, R. M., & Aubin, C.-É. (2016). How does differential rod contouring contribute to 3-dimensional correction and affect the bone-screw forces in adolescent idiopathic scoliosis instrumentation? Clinical Biomechanics, 39, 115-121. Lien externe

Wang, X., Larson, A. N., Crandall, D. G., Parent, S., Labelle, H., Ledonio, C. G. T., & Aubin, C.-É. (octobre 2016). Does variation in pedicle screw pattern affect deformity correction and bone-screw forces in adolescent idiopathic scoliosis instrumentation using polyaxial screws with dorsal height adjustability? [Communication écrite]. 46e Réunion annuelle de la Société de scoliose du Québec, Estérel, QC. Non disponible

Département de génie mécanique

Aubin, C.-É., Labelle, H., Arnoux, P.-J., Parent, S., Wang, W., Baran, G., & Cahill, P. (2016). Biomechanics of high-grade spondylolisthesis with and without reduction. Medical & Biological Engineering & Computing, 54(4), 619-628. Lien externe

Aubin, C.-É., Sarwark, J. F., Schmid Dionne, E., & Parent, S. (2016). Fusionless vertebral physeal device. (Brevet no US9393058). Lien externe

Benoit, A., Mustafy, T., Londono, I., Grimard, G., Aubin, C.-É., & Villemure, I. (2016). In vivo dynamic compression has less detrimental effect than static compression on newly formed bone of a rat caudal vertebra. Journal of Musculoskeletal & Neuronal Interactions, 16(3), 211-220. Lien externe

Bianco, R.-J., Aubin, C.-É., Mac-Thiong, J.-M., Wagnac, E., & Arnoux, P.-J. (2016). Pedicle Screw Fixation Under Nonaxial Loads: A Cadaveric Study. Spine, 41(3), E124-E130. Lien externe

Bruna-Rosso, C., Arnoux, P.-J., Bianco, R.-J., Godio-Raboutet, Y., Fradet, L., & Aubin, C.-É. (2016). Finite Element Analysis of Sacroiliac Joint Fixation under Compression Loads. International Journal of Spine Surgery, 10, 11 pages. Lien externe

Caouette, C., Ikin, N., Villemure, I., Arnoux, P. J., Rauch, F., & Aubin, C.-É. (2016). Geometry reconstruction method for patient-specific finite element models for the assessment of tibia fracture risk in osteogenesis imperfecta. Medical & Biological Engineering & Computing, 55(4), 549-560. Lien externe

Cobetto, N., Aubin, C.-É., Parent, S., Clin, J., Barchi, S., Turgeon, I., & Labelle, H. (2016). Effectiveness of braces designed using computer-aided design and manufacturing (CAD/CAM) and finite element simulation compared to CAD/CAM only for the conservative treatment of adolescent idiopathic scoliosis: a prospective randomized controlled trial. European Spine Journal, 25(10), 3056-3064. Disponible

Driscoll, M., Aubin, C.-É., Moreau, A., Wakula, Y., Amini, S., & Parent, S. (2016). Novel Hemi-Staple for the Fusionless Correction of Pediatric Scoliosis: Influence on Intervertebral Disks and Growth Plates in a Porcine Model. Clinical Spine Surgery, 29(9), 457-464. Lien externe

Duceppe, N., Wang, X., & Aubin, C.-É. (octobre 2016). 3D biomechanical evaluation of different implant configurations in scoliosis instrumentation with apical vertebral derotation [Communication écrite]. 46e Réunion annuelle de la Société de scoliose du Québec, Estérel, QC. Non disponible

Fradet, L., Wang, X., Lenke, L. G., & Aubin, C.-É. (2016). Biomechanical analysis of proximal junctional failure following adult spinal instrumentation using a comprehensive hybrid modeling approach. Clinical Biomechanics, 39, 122-128. Lien externe

Hachem, B., Aubin, C.-É., & Parent, S. (2016). Local Epiphyseal Growth Modulation for the Early Treatment of Progressive Scoliosis: Experimental Validation Using a Porcine Model. Spine, 41(17), E1009-E1015. Lien externe

Henao, J., Aubin, C.-É., Labelle, H., & Arnoux, J. P. (2016). Patient-specific finite element model of the spine and spinal cord to assess the neurological impact of scoliosis correction, preliminary application on two cases with and without intraoperative neurological complications. Computer Methods in Biomechanics and Biomedical Engineering, 19(8), 900-910. Lien externe

Lalande, V., Villemure, I., Parent, S., & Aubin, C.-É. (octobre 2016). Évaluation expérimentale des forces appliquées sur les plaques de croissance par un dispositif de compression antérieure sans fusion : résultats préliminaires [Communication écrite]. 46e réunion de la Société de scoliose du Québec (SSQ), Estérel, Québec, Canada. Non disponible

Le Navéaux, F., Larson, A. N., Labelle, H., Wang, X., & Aubin, C.-É. (2016). How does implant distribution affect 3D correction and bone-screw forces in thoracic adolescent idiopathic scoliosis spinal instrumentation? Clinical Biomechanics, 39, 25-31. Lien externe

Salvi, G., Aubin, C.-É., Le Naveaux, F., Wang, X., & Parent, S. (2016). Biomechanical analysis of Ponte and pedicle subtraction osteotomies for the surgical correction of kyphotic deformities. European Spine Journal, 25(8), 2452-2460. Lien externe

Sattout, A., Clin, J., Cobetto, N., Labelle, H., & Aubin, C.-É. (2016). Biomechanical Assessment of Providence Nighttime Brace for the Treatment of Adolescent Idiopathic Scoliosis. Spine Deformity, 4(4), 253-260. Lien externe

Thong, W., Parent, S., Wu, J., Aubin, C.-É., Labelle, H., & Kadoury, S. (2016). Three-dimensional morphology study of surgical adolescent idiopathic scoliosis patient from encoded geometric models. European Spine Journal, 25(10), 3104-3113. Lien externe

Wang, X., Boyer, L., Le Naveaux, F., Schwend, R. M., & Aubin, C.-É. (2016). How does differential rod contouring contribute to 3-dimensional correction and affect the bone-screw forces in adolescent idiopathic scoliosis instrumentation? Clinical Biomechanics, 39, 115-121. Lien externe

Wang, X., Larson, A. N., Crandall, D. G., Parent, S., Labelle, H., Ledonio, C. G. T., & Aubin, C.-É. (octobre 2016). Does variation in pedicle screw pattern affect deformity correction and bone-screw forces in adolescent idiopathic scoliosis instrumentation using polyaxial screws with dorsal height adjustability? [Communication écrite]. 46e Réunion annuelle de la Société de scoliose du Québec, Estérel, QC. Non disponible

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