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Documents publiés en "2011"

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Nombre de documents: 15

Département de génie chimique

Amini, S., Mortazavi, F., Sun, J., Lévesque, M., Hoemann, C. D., & Villemure, I. (mai 2011). The biomechanical behavior of the growth plate under compression is related to its collagen content and organization [Communication écrite]. 17th Annual Canadian Connective Tissue Conference, Montréal, Québec. Non disponible

Changoor, A., Nelea, M., Méthot, S., Tran-Khanh, N., Chevrier, A., Restrepo, A., Shive, M. S., Hoemann, C. D., & Buschmann, M. D. (2011). Structural characteristics of the collagen network in human normal, degraded and repair articular cartilages observed in polarized light and scanning electron microscopies. Osteoarthritis and Cartilage, 19(12), 1458-1468. Lien externe

Changoor, A., Nelea, M., Méthot, S., Tran-Khanh, N., Chevrier, A., Restrepoi, A., Shive, M. S., Hoemann, C. D., & Buschmann, M. D. (mai 2011). Collagen network structure in human normal, degraded and repair articular cartilages [Communication écrite]. 17th Annual Canadian Connective Tissue Conference, Montréal, Québec. Non disponible

Chen, G., Sun, J., Lascau-Coman, V., Chevrier, A., Marchand, C., & Hoemann, C. D. (2011). Acute Osteoclast Activity following Subchondral Drilling Is Promoted by Chitosan and Associated with Improved Cartilage Repair Tissue Integration. CARTILAGE, 2(2), 173-185. Lien externe

Chen, H., Chevrier, A., Hoemann, C. D., Sun, J., Ouyang, W., & Buschmann, M. D. (2011). Characterization of subchondral bone repair for marrow-stimulated chondral defects and its relationship to articular cartilage resurfacing. American Journal of Sports Medicine, 39(8), 1731-1730. Lien externe

Chen, H., Hoemann, C. D., Sun, J., Chevrier, A., McKee, M. D., Shive, M. S., Hurtig, M., & Buschmann, M. D. (2011). Depth and type of subchondral perforation influence the outcome of bone marrow stimulation cartilage repair. Journal orthopaedic research, 29(8), 1178-1184. Lien externe

Chevrier, A., Hoemann, C. D., Sun, J., & Buschmann, M. D. (2011). Temporal and spatial modulation of chondrogenic foci in subchondral microdrill holes by chitosan-glycerol phosphate/blood implants. Osteoarthritis and Cartilage, 19(1), 136-144. Lien externe

Guzman-Morales, J., Ariganello, M. B., Hammami, I., Thibault, M., Jolicoeur, M., & Hoemann, C. D. (2011). Biodegradable chitosan particles induce chemokine release and negligible arginase-1 activity compared to IL-4 in murine bone marrow-derived macrophages. Biochemical and Biophysical Research Communications, 405(4), 538-544. Lien externe

Hoemann, C. D., & Sun, J. (2011). Two-part cytocompatible system, useful to prepare a cytocompatible polymer composition for repairing e.g. cartilage, comprises a first part liquid solution of a polymer in a first container and a second part liquid solution of a salt. (Demande de brevet no WO2011060553). Lien externe

Hoemann, C. D., Kandel, R. A., Roberts, S., Saris, D. B. F., Creemers, L., Mainil-Varlet, P., Methot, S., Hollander, A. P., & Buschmann, M. D. (2011). International Cartilage Repair Society (ICRS) Recommended Guidelines for Histological Endpoints for Cartilage Repair Studies in Animal Models and Clinical Trials. CARTILAGE, 2(2), 153-172. Lien externe

Hoemann, C. D., Sun, J., Hurtig, M., Guzman-Morales, J., & Hubert-Lafantaisie, C. (2011). Presolidified composition and method for in situ delivery of broad molecular weight range of chitosan implants with or without therapeutics for regenerative medicine and cartilage repair applications. (Demande de brevet no WO2011060554). Lien externe

Hurtig, M. B., Buschmann, M. D., Fortier, L. A., Hoemann, C. D., Hunziker, E. B., Jurvelin, J. S., Mainil-Varlet, P., McIlwraith, C. W., Sah, R. L., & Whiteside, R. A. (2011). Preclinical studies for cartilage repair : recommendations from the International Cartilage Repair Society. CARTILAGE, 2(2), 137-152. Lien externe

Marchand, C., Chen, H., Buschmann, M. D., & Hoemann, C. D. (2011). Standardized three-dimensional volumes of interest with adapted surfaces for more precise subchondral bone analyses by micro-computed tomography. Tissue Engineering. Part C, Methods, 17(4), 475-484. Lien externe

Département de génie mécanique

Amini, S., Mortazavi, F., Sun, J., Lévesque, M., Hoemann, C. D., & Villemure, I. (mai 2011). The biomechanical behavior of the growth plate under compression is related to its collagen content and organization [Communication écrite]. 17th Annual Canadian Connective Tissue Conference, Montréal, Québec. Non disponible

Institut de génie biomédical

Changoor, A., Nelea, M., Méthot, S., Tran-Khanh, N., Chevrier, A., Restrepo, A., Shive, M. S., Hoemann, C. D., & Buschmann, M. D. (2011). Structural characteristics of the collagen network in human normal, degraded and repair articular cartilages observed in polarized light and scanning electron microscopies. Osteoarthritis and Cartilage, 19(12), 1458-1468. Lien externe

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