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The mechanics of the knee and prosthesis design
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Goodfellow, J.1
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Clinical results of the Oxford knee. Surface arthroplasty of the tibiofemoral joint with a meniscal bearing prosthesis
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Goodfellow JW, O'Connor J. Clinical results of the Oxford knee. Surface arthroplasty of the tibiofemoral joint with a meniscal bearing prosthesis. Clin Orthop Relat Res. 1986; 205:21-42.
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A radiographic study of bearing movement in unicompartmental Oxford knee replacements
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Bradley J, Goodfellow JW, O'Connor JJ. A radiographic study of bearing movement in unicompartmental Oxford knee replacements. J Bone Joint Surg Br. 1987; 69:598-601.
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Bradley, J.1
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A model of human knee ligaments in the sagittal plane. Response to passive flexion
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Zavatsky AB, O'Connor JJ. A model of human knee ligaments in the sagittal plane. Response to passive flexion. Proc Inst Mech Eng [H]. 1992; 206:125-134.
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Zavatsky, A.B.1
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A model of human knee ligaments in the sagidal plane. 2. Fibre recruitment under load
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Zavatsky AB, O'Connor JJ. A model of human knee ligaments in the sagidal plane. 2. Fibre recruitment under load. Proc Inst Mech Eng [H]. 1992; 206:135-145.
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Biarticulating two-dimensional computer model of the human patellofemoral joint
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Gill HS, O'Connor JJ. Biarticulating two-dimensional computer model of the human patellofemoral joint. Clin Biomech (Bristol, Avon). 1996; 11:81-89.
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Gill, H.S.1
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Fibre recruitment and shape changes of knee ligaments during motion: As revealed by a computer graphics-based model
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Lu TW, O'Connor JJ. Fibre recruitment and shape changes of knee ligaments during motion: as revealed by a computer graphics-based model. Proc Inst Mech Eng [H]. 1996; 210:71-79.
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Lu, T.W.1
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Lines of action and moment arms of the major force-bearing structures crossing the human knee joint: Comparison between theory and experiment
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Lu TW, O'Connor JJ. Lines of action and moment arms of the major force-bearing structures crossing the human knee joint: comparison between theory and experiment. J Anat. 1996; 189 (Pt 3):575-585.
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TW, L.1
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Klinische anwendung biomechanisched und funktionell anatomischer am kniegelenk
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Friedrich N, Muller W, O'Brien W. Klinische anwendung biomechanisched und funktionell anatomischer am kniegelenk. Orthopäde. 1992; 21:41-50.
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The fibre bundle anatomy of human cruciate ligaments
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Mommersteeg TJ, Kooloos JG, Blankevoort L, Kauer JM, Huiskes R, Roeling FQ. The fibre bundle anatomy of human cruciate ligaments. J Anat. 1995; 187 (pt 2):461-71.
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12
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0002768206
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The tensile properties of human anterior cruciate ligament (ACL) and ACL graft tissues
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Daniel DM, Akeson WH, O'Connor JJ, eds, New York, NY: Raven Press;
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Woo SL-Y, Adams DJ. The tensile properties of human anterior cruciate ligament (ACL) and ACL graft tissues. In: Daniel DM, Akeson WH, O'Connor JJ, eds. Knee Ligainents, Structure, Function Injury and Repair. New York, NY: Raven Press; 1990.
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Knee Ligainents, Structure, Function Injury and Repair
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Woo, S.L.-Y.1
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Tibiofemoral movement 2: The loaded and unloaded living knee studied by MRI
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Hill PF, Vedi V, William A, Iwald H, Pinskerova V, Freeman MA. Tibiofemoral movement 2: the loaded and unloaded living knee studied by MRI. J Bone Joint Surg Br. 2000; 82:1196-1198.
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15
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0032612564
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The effect of cartilage deformation on the laxity of the knee joint
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Huss RA, Holstein H, O'Connor JJ. The effect of cartilage deformation on the laxity of the knee joint. Proc Inst Mech Eng [H]. 1999; 213:19-32.
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Huss, R.A.1
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A mathematical model of forces in the knee under isometric quadriceps contractions
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Huss RA, Holstein H, O'Connor JJ. A mathematical model of forces in the knee under isometric quadriceps contractions. Clin Biomech (Bristol, Avon). 2000; 15:112-122.
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