The effect of connective tissue material uncertainties on knee joint mechanics under isolated loading conditions.
暂无分享,去创建一个
[1] M. Zobitz,et al. A Biomechanical Analysis of Matched Bone-Patellar Tendon-Bone and Double-Looped Semitendinosus and Gracilis Tendon Grafts , 1999, The American journal of sports medicine.
[2] C B Frank,et al. Tensile properties of the medial collateral ligament as a function of age , 1986, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[3] P J Hunter,et al. An anatomically based patient-specific finite element model of patella articulation: towards a diagnostic tool , 2005, Biomechanics and modeling in mechanobiology.
[4] Thomas L. Wickiewicz,et al. The Popliteofibular Ligament , 1996, The American journal of sports medicine.
[5] R A Moyer,et al. Anatomy and Kinematics of the Lateral Collateral Ligament of the Knee , 2000, The American journal of sports medicine.
[6] M. Hull,et al. How the stiffness of meniscal attachments and meniscal material properties affect tibio-femoral contact pressure computed using a validated finite element model of the human knee joint. , 2003, Journal of biomechanics.
[7] R Huiskes,et al. The three‐dimensional tracking pattern of the human patella , 1990, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[8] King H. Yang,et al. Sensitivity of the tibio-femoral response to finite element modeling parameters , 2007, Computer methods in biomechanics and biomedical engineering.
[9] S. Woo,et al. A three-dimensional finite element model of the human anterior cruciate ligament: a computational analysis with experimental validation. , 2004, Journal of biomechanics.
[10] R. LaPrade,et al. Mechanical Properties of the Posterolateral Structures of the Knee , 2005, The American journal of sports medicine.
[11] J. Weiss,et al. Material characterization of human medial collateral ligament. , 1998, Journal of biomechanical engineering.
[12] James R. Robinson,et al. Structural properties of the medial collateral ligament complex of the human knee. , 2005, Journal of biomechanics.
[13] S. Koskinen,et al. Dynamic Lateral Patellar Tilt in the Anterior Cruciate Ligament-Deficient Knee , 2001, The American journal of sports medicine.
[14] Jason P. Halloran,et al. Explicit finite element modeling of total knee replacement mechanics. , 2005, Journal of biomechanics.
[15] King H. Yang,et al. A new method to investigate in vivo knee behavior using a finite element model of the lower limb. , 2004, Journal of biomechanics.
[16] N. Brown,et al. Patellofemoral Contact Pressures and Lateral Patellar Translation after Medial Patellofemoral Ligament Reconstruction , 2007, The American journal of sports medicine.
[17] F. Noyes,et al. Biomechanical analysis of human ligament grafts used in knee-ligament repairs and reconstructions. , 1984, The Journal of bone and joint surgery. American volume.
[18] M J Pearcy,et al. Mechanical properties of the human anterior cruciate ligament. , 1995, Clinical biomechanics.
[19] J. C. Helton,et al. An Investigation of Uncertainty and Sensitivity Analysis Techniques for Computer Models , 1988 .
[20] M Abrahams,et al. Mechanical behaviour of tendon in vitro. A preliminary report. , 1967, Medical & biological engineering.
[21] Yasin Y Dhaher,et al. The effect of vastus medialis forces on patello-femoral contact: a model-based study. , 2002, Journal of biomechanical engineering.
[22] B Calvo,et al. Finite element analysis of the effect of meniscal tears and meniscectomies on human knee biomechanics. , 2005, Clinical biomechanics.
[23] A. Amis,et al. Anatomic and Biomechanical Study of the Lateral Collateral and Popliteofibular Ligaments , 2001, The American journal of sports medicine.
[24] W. H. Warden,et al. Radial tie fibers influence the tensile properties of the bovine medial meniscus , 1994, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[25] J. Elias,et al. Structural Properties of Lateral Collateral Ligament Reconstruction at the Fibular Head , 2006, The American journal of sports medicine.
[26] R. Batra. Elements of Continuum Mechanics , 2005 .
[27] L Blankevoort,et al. The effect of variable relative insertion orientation of human knee bone-ligament-bone complexes on the tensile stiffness. , 1995, Journal of biomechanics.
[28] Michael Abrahams,et al. Mechanical behaviour of tendonIn vitro , 1967, Medical and biological engineering.
[29] Miguel Ángel Martínez,et al. A three-dimensional finite element analysis of the combined behavior of ligaments and menisci in the healthy human knee joint. , 2006, Journal of biomechanics.
[30] Scott L Delp,et al. Knee muscle forces during walking and running in patellofemoral pain patients and pain-free controls. , 2009, Journal of biomechanics.
[31] S J Piazza,et al. Three-dimensional dynamic simulation of total knee replacement motion during a step-up task. , 2001, Journal of biomechanical engineering.
[32] R Steindler,et al. Human knee ligaments: mechanical tests and ultrastructural observations. , 1983, Italian journal of orthopaedics and traumatology.
[33] Darryl D. D'Lima,et al. Impact of Patellofemoral Design on Patellofemoral Forces and Polyethylene Stresses , 2003, The Journal of bone and joint surgery. American volume.
[34] A. Saltelli,et al. On the Relative Importance of Input Factors in Mathematical Models , 2002 .
[35] Javad Hashemi,et al. The mechanical properties of the human patellar tendon are correlated to its mass density and are independent of sex. , 2005, Clinical biomechanics.
[36] R. Haut,et al. The effects of test environment and cyclic stretching on the failure properties of human patellar tendons , 1990, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[37] R. Ibrahim. Structural Dynamics with Parameter Uncertainties , 1987 .
[38] K. An,et al. The influence of weakness in the vastus medialis oblique muscle on the patellofemoral joint: an in vitro biomechanical study. , 2000, Clinical biomechanics.
[39] D P Pioletti,et al. Viscoelastic constitutive law in large deformations: application to human knee ligaments and tendons. , 1998, Journal of biomechanics.
[40] J A Buckwalter,et al. Injury and repair of the musculoskeletal soft tissues. Savannah, Georgia, June 18–20, 1987 , 1988, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[41] J. Middleton,et al. Three-dimensional finite element modelling of the human ACL: simulation of passive knee flexion with a stressed and stress-free ACL. , 2004, Journal of biomechanics.
[42] W. Hayes,et al. The Effects of Donor Age and Strain Rate on the Biomechanical Properties of Bone-Patellar Tendon-Bone Allografts , 1994, The American journal of sports medicine.
[43] T. Mittlmeier,et al. The cruciate ligaments in knee replacement , 2004, International Orthopaedics.
[44] Espregueira-Mendes,et al. Anatomy of the lateral collateral ligament: a cadaver and histological study , 2006, Knee Surgery, Sports Traumatology, Arthroscopy.
[45] S. Woo,et al. Effects of postmortem storage by freezing on ligament tensile behavior. , 1986, Journal of biomechanics.
[46] J. Weiss,et al. Viscoelastic properties of the human medial collateral ligament under longitudinal, transverse and shear loading , 2005, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[47] J. O'Connor,et al. The components of passive knee movement are coupled to flexion angle. , 2000, Journal of biomechanics.
[48] J. Hollis,et al. Biomechanical Analysis of Patellar Tendon Allografts as a Function of Donor Age , 1995, The American journal of sports medicine.
[49] S. Woo,et al. Tensile properties of the human femur-anterior cruciate ligament-tibia complex , 1991, The American journal of sports medicine.
[50] Jiang Yao,et al. Sensitivities of medial meniscal motion and deformation to material properties of articular cartilage, meniscus and meniscal attachments using design of experiments methods. , 2006, Journal of biomechanical engineering.
[51] L. Draganich,et al. The Effects of Removal and Reconstruction of the Anterior Cruciate Ligament on Patellofemoral Kinematics , 1998, The American journal of sports medicine.
[52] N. Choi,et al. Tensile and viscoelastic properties of human patellar tendon , 1994, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[53] A. Minami,et al. Biomechanical evaluation of a newly devised model for the elongation-type anterior cruciate ligament injury with partial laceration and permanent elongation. , 2003, Clinical biomechanics.
[54] R Nagamine,et al. Patellar tracking measurement in the normal knee , 1995, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[55] M. Kjaer,et al. Region-specific mechanical properties of the human patella tendon. , 2005, Journal of applied physiology.
[56] Daniel K. Moon,et al. The effects of refreezing on the viscoelastic and tensile properties of ligaments. , 2006, Journal of biomechanics.
[57] D L Butler,et al. Location-dependent variations in the material properties of the anterior cruciate ligament. , 1992, Journal of biomechanics.
[58] Amy B Zavatsky,et al. Simultaneous in vitro measurement of patellofemoral kinematics and forces. , 2004, Journal of biomechanical engineering.
[59] Bjørn Skallerud,et al. Nonlinear solid finite element analysis of mitral valves with heterogeneous leaflet layers , 2009 .
[60] G A Ateshian,et al. Mechanical response of bovine articular cartilage under dynamic unconfined compression loading at physiological stress levels. , 2004, Osteoarthritis and cartilage.
[61] Gerard A. Ateshian,et al. Computer Simulations of Patellofemoral Joint Surgery , 2003, The American journal of sports medicine.
[62] A. M. Ahmed,et al. Tensile stress-strain characteristics of the human meniscal material. , 1995, Journal of biomechanics.
[63] F. Noyes,et al. Effects of structure and strain measurement technique on the material properties of young human tendons and fascia. , 1984, Journal of biomechanics.
[64] P. Walker,et al. Ligament length patterns, strength, and rotational axes of the knee joint. , 1976, Clinical orthopaedics and related research.
[65] Javad Hashemi,et al. Sex-based differences in the tensile properties of the human anterior cruciate ligament. , 2006, Journal of biomechanics.
[66] F. Noyes,et al. The strength of the anterior cruciate ligament in humans and Rhesus monkeys. , 1976, The Journal of bone and joint surgery. American volume.
[67] A. Amis,et al. The mechanical properties of the two bundles of the human posterior cruciate ligament. , 1994, Journal of biomechanics.
[68] D L Butler,et al. Comparison of material properties in fascicle-bone units from human patellar tendon and knee ligaments. , 1986, Journal of biomechanics.
[69] L. Blankevoort,et al. Validation of a three-dimensional model of the knee. , 1996, Journal of biomechanics.
[70] G. Cochran. A primer of orthopaedic biomechanics , 1982 .
[71] M. Hull,et al. A finite element model of the human knee joint for the study of tibio-femoral contact. , 2002, Journal of biomechanical engineering.
[72] D. E. Cooper,et al. The strength of the central third patellar. tendon graft , 1993, The American journal of sports medicine.
[73] L. Nolte,et al. Mechanical Tensile Properties of the Quadriceps Tendon and Patellar Ligament in Young Adults , 1999, The American journal of sports medicine.
[74] B B Seedhom,et al. The 'instantaneous' compressive modulus of human articular cartilage in joints of the lower limb. , 1999, Rheumatology.
[75] A I King,et al. Lower Limb: Advanced FE Model and New Experimental Data. , 2001, Stapp car crash journal.
[76] M. Hull,et al. The sensitivity of tibiofemoral contact pressure to the size and shape of the lateral and medial menisci , 2004, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[77] J M T Penrose,et al. Development of An Accurate Three-dimensional Finite Element Knee Model , 2002, Computer methods in biomechanics and biomedical engineering.