<  Retour au portail Polytechnique Montréal

Documents dont l'auteur est "Hurtig, M. B."

Monter d'un niveau
Pour citer ou exporter [feed] Atom [feed] RSS 1.0 [feed] RSS 2.0
Grouper par: Auteurs ou autrices | Date de publication | Sous-type de document | Aucun groupement
Aller à : B | C | D | G | H | Q | S
Nombre de documents: 22

B

Bell, A. D., Hurtig, M. B., Quenneville, E., Rivard, G. E., & Hoemann, C. D. (2017). Effect of a Rapidly Degrading Presolidified 10 kDa Chitosan/Blood Implant and Subchondral Marrow Stimulation Surgical Approach on Cartilage Resurfacing in a Sheep Model. CARTILAGE, 8(4), 417-431. Lien externe

Bell, A., Lasau-Coman, V., Sun, J., Lowerison, M., Hurtig, M. B., & Hoemann, C. D. (2013). Bone-induced chondroinduction in sheep Jamshidi biopsy defects with and without treatment by subchondral chitosan-blood implant: 1 day, 3 week, and 3 month repair. CARTILAGE, 4(2), 131-143. Lien externe

Buschmann, M. D., Hoemann, C. D., Shive, M. S., Rossomacha, E., Chevrier, A., & Hurtig, M. B. (septembre 2006). Hybrid Biomaterials Composed of Chitosan and Blood Improve Cartilage Repair in Animal Models [Communication écrite]. Transactions 10th International Conference on Chitin and Chitosan, Montpellier, France. Non disponible

C

Changoor, A., Brett, W., Hoba, M., Garon, M., Quenneville, E., Gordon, K., Savard, P., Buschmann, M. D., Hurtig, M. B., & Trout, D. R. (2014). Electroarthrography, a Non-Invasive Streaming Potential-Based Method, Measures Cartilage Quality in Live Horses. Osteoarthritis and Cartilage, 22, S88-S89. Lien externe

Changoor, A., Hoba, M., Garon, M., Quenneville, E., Gordon, K., Buschmann, M. D., Savard, P., & Hurtig, M. B. (2013). Electroarthrography Provides a Non-Invasive Streaming Potential-Based Method for Detecting Natural and Trypsin-Induced Cartilage Degeneration in Equine Fetlock Joints. Osteoarthritis and Cartilage, 21, S103-S103. Lien externe

Changoor, A., Coutu, J. P., Garon, M., Quenneville, E., Hurtig, M. B., & Buschmann, M. D. (mai 2011). Sensitivity of a streaming potential -based arthroscopic device to cartilage changes produced in an ex vivo equine cartilage injury model [Communication écrite]. 17th Annual Canadian Connective Tissue Conference, Montréal, Québec. Non disponible

Changoor, A., Coutu, J. P., Garon, M., Quenneville, E., Hurtig, M. B., & Buschmann, M. D. (2011). Streaming potential-based arthroscopic device is sensitive to cartilage changes immediately post-impact in an equine cartilage injury model. Journal of Biomechanical Engineering, 133(6), 1-9. Lien externe

Chen, H., Hoemann, C. D., Sun, J., Ouyang, W., Chevrier, A., Dragomir, L., Lascau-Coman, V., Tran-Khanh, N., McKee, M. E., Shive, M. S., Hurtig, M. B., & Buschmann, M. D. (septembre 2010). Subchondral bone repair following marrow stimulation in a mature rabbit model [Communication écrite]. Transaction International Society for Cartilage Repair, Barcelona, Spain. Non disponible

Changoor, A., Quenneville, E., Garon, M., Hurtig, M. B., & Buschmann, M. D. (septembre 2009). Streaming potential-based arthroscopic device can detect changes immediately following localized impact in an equine impact model of osteoarthritis [Communication écrite]. OARSI World Congress on Osteoarthritis, Montréal, Québec. Non disponible

Changoor, A., Quenneville, E., Garon, M., Hurtig, M. B., & Buschmann, M. D. (septembre 2009). Streaming potential-based arthroscopic device can detect changes immediately following localized impact in an equine impact model of osteoarthritis [Communication écrite]. Segal North American Osteoarthritis Workshop, Chicago. Non disponible

Changoor, A., Quenneville, E., Garon, M., Hurtig, M. B., & Buschmann, M. D. (juillet 2009). Streaming potential-based arthroscopie device can detect changes immediately following localized impact in an equine impact model of osteoarthritis [Communication écrite]. 15th Canadian Connective Tissue Conference, Calgary, Canada. Non disponible

Chevrier, A., Sun, J., Hurtig, M. B., Hoemann, C. D., & Buschmann, M. D. (mars 2008). Interspecies comparison of meniscus properties in human, sheep and rabbit [Communication écrite]. 54th Annual Meeting of the Orthopaedic Research Society, San Francisco, California. Non disponible

Changoor, A., Quenneville, E., Garon, M., Cloutier, L., Hurtig, M. B., & Buschmann, M. D. (février 2007). Streaming potential-based arthroscopic device discerns topographical differences in cartilage covered and uncovered by meniscus in ovine stifle joints [Communication écrite]. 53rd Annual Meeting of the Orthopaedic Research Society, San Diego, CA, USA. Lien externe

Changoor, A., Quenneville, E., Garon, M., Cloutier, L., Légaré, A., Hurtig, M. B., & Buschmann, M. D. (novembre 2006). Streaming potential-based arthroscopic device discerns topographical differences in cartilage covered and unconvered by meniscus in ovine stifle joints [Communication écrite]. Canadian Arthritis Network Annual Meeting, Winnipeg. Non disponible

D

Depres-tremblay, G., Chevrier, A., Snow, M., Hurtig, M. B., Rodeo, S., & Buschmann, M. D. (2016). Rotator cuff repair: a review of surgical techniques, animal models, and new technologies under development. Journal of Shoulder and Elbow Surgery, 25(12), 2078-2085. Lien externe

G

Garon, M., Légaré, A., Quenneville, E., Sims, T. J., Hollander, A. P., Hurtig, M. B., Shive, M. S., & Buschmann, M. D. (septembre 2007). Cartilage streaming potentials measured with and arthroscopic medical device correlate with site-specific biochemical and biomechanical properties of equine articular cartilage [Communication écrite]. 7th World Congress International Society for Cartilage Repair, Warsaw, Poland. Lien externe

Garon, M., Légaré, A., Quenneville, E., Hurtig, M. B., & Buschmann, M. D. (2003). Straming potential based arthroscopic instrument distinguishes site-specific properties of equine articular cartilage. Transactions of the annual meeting of the orthopaedic research society, 28(255). Lien externe

H

Hoemann, C. D., Gosselin, Y., Chen, H., Sun, J., Hurtig, M. B., Carli, A., & Stanish, W. D. (2013). Characterization of initial microfracture defects in human condyles. Journal of Knee Surgery, 26(5), 347-356. Lien externe

Hurtig, M. B., Hoemann, C. D., Fortier, L., Markel, M. D., & Grynpas, M. (septembre 2007). Recommendations for use of animal models in cartilage repair : report from the ICRS animal models working group [Communication écrite]. 7th World Congress International Society for Cartilage Repair, Warsaw, Poland. Non disponible

Hoemann, C. D., Akens, M., Jun, S., Rossomacha, E., Shive, M. S., Buschmann, M. D., & Hurtig, M. B. (janvier 2003). Thermogelling chitosan formulation suppresses subchondral cyst formation in a cartilage repair model in sheep [Communication écrite]. American college of veterinary surgeons, Washington DC. Non disponible

Q

Quenneville, E., Légaré, A., Garon, M., Hurtig, M. B., & Buschmann, M. D. (janvier 2003). New arthroscopic device for functional mapping of articular cartilage [Communication écrite]. Transactions 9th canadian connective tissue conference, Montréal, Québec. Non disponible

S

Shive, M. S., Hoemann, C. D., Restrepo, A., Hurtig, M. B., Duval, N., Ranger, P., Stannish, W., & Buschmann, M. D. (2006). BST-CarGel: In Situ ChondroInduction for Cartilage Repair. Dans Operative Techniques in Orthopaedics: Articular Cartilage Surgery (Vol. 16, 271-278). Lien externe

Liste produite: Wed Jul 17 04:23:25 2024 EDT.