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Documents publiés en "2012"

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Nombre de documents: 9

A

Adankon, M. M., Dansereau, J., Parent, S., Labelle, H., & Cheriet, F. (février 2012). Scoliosis curve type classification using kernel machine from 3D trunk image [Communication écrite]. Medical Imaging 2012 : Computer-Aided Diagnosis, San Diego, California, USA. Lien externe

B

Beaudette, K., Strupler, M., Benboujja, F., Parent, S., Aubin, C.-É., & Boudoux, C. (2012). Optical Coherence Tomography for the Identification of Musculoskeletal Structures of the Spine: a Pilot Study. Biomedical Optics Express, 3(3), 533-542. Lien externe

D

Desbiens-Blais, F., Clin, J., Parent, S., Labelle, H., & Aubin, C.-É. (2012). New brace design combining CAD/CAM and biomechanical simulation for the treatment of adolescent idiopathic scoliosis. Clinical Biomechanics, 27(10), 999-1005. Lien externe

Driscoll, M., Aubin, C.-É., Moreau, A., Wakula, Y., Sarwark, J. F., & Parent, S. (2012). Spinal Growth Modulation Using a Novel Intravertebral Epiphyseal Device in an Immature Porcine Model. European Spine Journal, 21(1), 138-144. Lien externe

G

Gervais, J., Périé-Curnier, D., Parent, S., Labelle, H., & Aubin, C.-É. (2012). MRI signal distribution within the intervertebral disc as a biomarker of adolescent idiopathic scoliosis and spondylolisthesis. BMC Musculoskeletal Disorders, 13(1), 239. Disponible

P

Pasha, S., Aubin, C.-É., Labelle, H., Parent, S., & Mac-Thiong, J.-M. (juillet 2012). Biomechanical Analysis of Spino-Pelvic Parameters in Adolescent Idiopathic Scoliosis After Spinal Instrumentation and Fusion: a Case Study. [Communication écrite]. 9th Biennial Meeting of the International Research Society of Spinal Deformities (IRSSD 2012), Poznan, Poland. Lien externe

W

Wang, X., Aubin, C.-É., Crandall, D., Parent, S., & Labelle, H. (2012). Biomechanical Analysis of 4 Types of Pedicle Screws for Scoliotic Spine Instrumentation. Spine, 37(14), E823-E835. Lien externe

Wang, X., Aubin, C.-É., Labelle, H., Parent, S., & Crandall, D. (2012). Biomechanical Analysis of Corrective Forces in Spinal Instrumentation for Scoliosis Treatment. Spine, 37(24), E1479-E1487. Lien externe

Wang, X., Aubin, C.-É., Larson, A. N., Labelle, H., & Parent, S. (juillet 2012). Biomechanical Analysis of Pedicle Screw Density in Spinal Instrumentation for Scoliosis Treatment: First Results. [Communication écrite]. 9th Biennial Meeting of the International Research Society of Spinal Deformities (IRSSD 2012), Poznan, Poland. Lien externe

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