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Documents dont l'auteur est "Garon, Martin"

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Nombre de documents: 11

B

Buschmann, M. D., Garon, M., Ouellet, M., & Lavertu, M. (2001). Universal mechanical testing device. (Brevet no US6332364). Lien externe

Buschmann, M. D., Guardo, R., Garon, M., Le Guyader, P., & Savard, P. (1998). Medical apparatus for the diagnosis of cartilage degeneration via spatial mapping of compression-induced electrical potentials. (Brevet no US5779651). Lien externe

C

Changoor, A., Garon, M., Quenneville, É., Savard, P., Buschmann, M. D., & Hurtig, M. B. (2024). Non-invasive electroarthrography measures cartilage in live horses and correlates to direct measurements of cartilage streaming potentials in weight bearing regions of equine metacarpophalangeal joints. Osteoarthritis and Cartilage, 10 pages. Lien externe

Changoor, A., Garon, M., Quenneville, E., Bull, S. B., Gordon, K., Savard, P., Buschmann, M. D., & Hurtig, M. B. (2021). Non-invasive Electroarthrography Measures Load-Induced Cartilage Streaming Potentials via Electrodes Placed on Skin Surrounding an Articular Joint. CARTILAGE, 13(2 Suppl), 375S-385S. Lien externe

G

Garon, M., Savard, P., Legaré, A., & Buschmann, M. D. (2014). Characterization of the contact distribution between two arbitrary surfaces using electrode arrays. (Brevet no CA2378705). Lien externe

Garon, M., & Buschmann, M. D. (mars 2008). Non-homogeneous electromechanical properties of articular cartilage predict and electrical potential of positive polarity outside cartilage [Communication écrite]. 54th Annual Meeting of the Orthopaedic Research Society, San Francisco, California. Lien externe

Garon, M. (2007). Conception et validation d'une sonde arthroscopique pour l'évaluation des propriétés électromécaniques fonctionnelles du cartilage articulaire [Thèse de doctorat, École Polytechnique de Montréal]. Disponible

H

Hoemann, C. D., Guzman-Morales, J., Picard, G., Chen, G., Veilleux, D., Chevrier, A., Sim, S., Garon, M., Quenneville, E., Lafantaisie-Favreau, C.-H., Buschmann, M. D., & Hurtig, M. B. (2020). Guided bone marrow stimulation for articular cartilage repair through a freeze-dried chitosan microparticle approach. Materialia, 9, 12 pages. Lien externe

S

Sim, S., Hadjab, I., Garon, M., Quenneville, E., Lavigne, P., & Buschmann, M. D. (2017). Development of an Electromechanical Grade to Assess Human Knee Articular Cartilage Quality. Annals of Biomedical Engineering, 45(10), 2410-2421. Lien externe

Sim, S., Chevrier, A., Garon, M., Quenneville, E., Lavigne, P., Yaroshinsky, A., Hoemann, C. D., & Buschmann, M. D. (2017). Electromechanical probe and automated indentation maps are sensitive techniques in assessing early degenerated human articular cartilage. Journal of Orthopaedic Research, 35(4), 858-867. Lien externe

Sim, S., Hadjab, I., Garon, M., Quenneville, E., Lavigne, P., & Buschmann, M. D. (2017). Erratum to: Development of an Electromechanical Grade to Assess Human Knee Articular Cartilage Quality. Annals of Biomedical Engineering, 45(10), 2422-2422. Lien externe

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