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Documents publiés en "2002"

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Nombre de documents: 8

G

Garon, M., Légaré, A., Guardo, R., Savard, P., & Buschmann, M. D. (2002). Streaming potentials maps are spatially resolved indicators of amplitude, frequency and ionic strength responses of articular cartilage to load. Journal of Biomechanics, 35(1), 207-216. Lien externe

H

Hoemann, C. D., Sun, J., Chrzanowski, V., & Buschmann, M. D. (2002). A Multivalent Assay to Detect Glycosaminoglycan, Protein, Collagen, RNA, and DNA Content in Milligram Samples of Cartilage or Hydrogel-Based Repair Cartilage. Analytical Biochemistry, 300(1), 1-10. Lien externe

L

Légaré, A., Garon, M., Guardo, R., Savard, P., Poole, A. R., & Buschmann, M. D. (2002). Detection and analysis of cartilage degeneration by spatially resolved streaming potentials in articular cartilage. Journal of Orthopaedic Research, 20(4), 819-826. Lien externe

Li, L. P., Buschmann, M. D., & Shirazi-Adl, A. (2002). The role of fibril reinforcement in the mechanical behavior of cartilage. Dans Stoltz, J. F. (édit.), Mechanobiology : Cartilage and Chondrocyte (Vol. 2, 89-96). Non disponible

Li, L. P., Buschmann, M. D., & Shirazi-Adl, A. (avril 2001). The Role of Fibril Reinforcement in the Mechanical Behavior of Cartilage [Communication écrite]. 2nd International Symposium on Mechanobiology: Cartilage and Chondrocyte, Paris, France. Publié dans Biorheology, 39(1-2). Lien externe

Li, L. P., Shirazi-Adl, A., & Buschmann, M. D. (2002). Alterations in mechanical behaviour of articular cartilage due to changes in depth varying material properties : a nonhomogeneous poroelastic model study. Computer Methods in Biomechanics and Biomedical Engineering, 5(1), 45-52. Lien externe

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Ravenelle, F., Marchessault, R. H., Legaré, A., & Buschmann, M. D. (2002). Mechanical Properties and Structure of Swollen Crosslinked High Amylose Starch Tablets. Carbohydrate polymer, 47(3), 259-266. Lien externe

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Thibault, M., Poole, A. R., & Buschmann, M. D. (2002). Cyclic compression of cartilage/bone explants in vitro leads to physical weakening, mechanical breakdown of collagen and release of matrix fragments. Journal of Orthopaedic Research, 20(6), 1265-1273. Lien externe

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