The conflicting requirements of laxity and conformity in total knee replacement.
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[1] F. Girgis,et al. The cruciate ligaments of the knee joint. Anatomical, functional and experimental analysis. , 1975, Clinical orthopaedics and related research.
[2] I. Paul,et al. On the origins of high in vivo wear rates in polyethylene components of total joint prostheses. , 1979, Clinical orthopaedics and related research.
[3] T. Andriacchi,et al. The influence of total knee-replacement design on walking and stair-climbing. , 1982, The Journal of bone and joint surgery. American volume.
[4] R. Warren,et al. An in vitro biomechanical evaluation of anterior-posterior motion of the knee. Tibial displacement, rotation, and torque. , 1982, The Journal of bone and joint surgery. American volume.
[5] D. Bartel,et al. The effect of conformity, thickness, and material on stresses in ultra-high molecular weight components for total joint replacement. , 1986, The Journal of bone and joint surgery. American volume.
[6] D. Bartel,et al. The problem of surface damage in polyethylene total knee components. , 1986, Clinical orthopaedics and related research.
[7] P. Walker,et al. Wear of ultra-high-molecular-weight polyethylene components of 90 retrieved knee prostheses. , 1988, The Journal of arthroplasty.
[8] P S Walker,et al. Bearing surface design in total knee replacement. , 1988, Engineering in medicine.
[9] R. E. Jensen,et al. Analysis of the Failure of 122 Polyethylene Inserts From Uncemented Tibial Knee Components , 1991, Clinical orthopaedics and related research.
[10] P R Cavanagh,et al. Three-dimensional kinematics of the human knee during walking. , 1992, Journal of biomechanics.
[11] L Ryd,et al. Polyethylene wear in unicondylar knee prostheses. 106 retrieved Marmor, PCA, and St Georg tibial components compared. , 1992, Acta orthopaedica Scandinavica.
[12] J. Kärrholm,et al. Three‐dimensional knee joint movements during a step‐up: Evaluation after anterior cruciate ligament rupture , 1994, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[13] P S Walker,et al. Optimization of the bearing surface geometry of total knees. , 1994, Journal of biomechanics.
[14] T. Wright,et al. Cyclic compressive loading results in fatigue cracks in ultra high molecular weight polyethylene , 1995, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[15] T. Santner,et al. Exponential model for the tensile true stress‐strain behavior of as‐irradiated and oxidatively degraded ultra high molecular weight polyethylene , 1996, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[16] D R Broome,et al. A knee simulating machine for performance evaluation of total knee replacements. , 1997, Journal of biomechanics.
[17] P. Walker,et al. A computer model with surface friction for the prediction of total knee kinematics. , 1997, Journal of biomechanics.
[18] Peter S. Walker,et al. Inherent differences in the laxity and stability between the intact knee and total knee replacements , 1997 .
[19] L Ryd,et al. Wear in retrieved condylar knee arthroplasties. A comparison of wear in different designs of 280 retrieved condylar knee prostheses. , 1997, The Journal of arthroplasty.