Knee joint injury risk assessment by means of experimental measurements and proper generalized decomposition

Author:

Ghnatios Chady,Hage Ilige,Metni Najib

Publisher

Cellule MathDoc/CEDRAM

Subject

Mechanics of Materials,General Materials Science

Reference58 articles.

1. [1] Hirsch, C.; Frankel, V. H. Analysis of forces producing fractures of the proximal end of the femur, J. Bone Joint Surg., Volume 42 (1960) no. 3, pp. 633-640 (British volume)

2. [2] Mezghani, N.; de Guise, J.; Grimard, G.; Baillargeon, D.; Ouakrim, Y.; Parent, G.; Fuentes, A.; Lavigne, P.; Ranger, P. Method and system for knee joint evaluation and diagnostic aid in normal and pathologic state, 3 January 2017 (U.S. Patent No. 9,532,732)

3. [3] Lloyd, D. G.; Besier, T. F. An EMG-driven musculoskeletal model to estimate muscle forces and knee joint moments in vivo, J. Biomech., Volume 36 (2003) no. 6, pp. 765-776

4. [4] Shippen, J. M.; May, B. Calculation of muscle loading and joint contact forces during the rock step in Irish dance, J. Dance Med. Sci., Volume 14 (2010) no. 1, pp. 11-18

5. [5] Michnik, R.; Jurkojć, J.; Pauk, J. Identification of muscles forces during gait of children with foot disabilities, Mechanics, Volume 80 (2009) no. 6, pp. 48-51

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