Subject-specific analysis of joint contact mechanics: application to the study of osteoarthritis and surgical planning.
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[1] J. Suh,et al. A cross-validation of the biphasic poroviscoelastic model of articular cartilage in unconfined compression, indentation, and confined compression. , 2001, Journal of biomechanics.
[2] R. Haut,et al. An approach for the stress analysis of transversely isotropic biphasic cartilage under impact load. , 1998, Journal of biomechanical engineering.
[3] Insu Jeon,et al. Biomechanical analysis of the effects of medial meniscectomy on degenerative osteoarthritis , 2011, Medical & Biological Engineering & Computing.
[4] W. A. Hodge,et al. Contact pressures in the human hip joint measured in vivo. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[5] Gerard A Ateshian,et al. Equivalence between short-time biphasic and incompressible elastic material responses. , 2007, Journal of biomechanical engineering.
[6] T. Quinn,et al. Solute diffusivity correlates with mechanical properties and matrix density of compressed articular cartilage. , 2005, Archives of biochemistry and biophysics.
[7] F. Menschik,et al. The hip joint as a conchoid shape , 1997 .
[8] Jean-Denis Laredo,et al. Comparison of MR-arthrography and CT-arthrography in hyaline cartilage-thickness measurement in radiographically normal cadaver hips with anatomy as gold standard. , 2009, Osteoarthritis and cartilage.
[9] Kiran H. Shivanna,et al. Cartilage contact pressure elevations in dysplastic hips: a chronic overload model , 2006, Journal of orthopaedic surgery and research.
[10] Pietro Cerveri,et al. Patient-specific acetabular shape modelling: comparison among sphere, ellipsoid and conchoid parameterisations , 2014, Computer methods in biomechanics and biomedical engineering.
[11] Kjeld Søballe,et al. What Factors Predict Failure 4 to 12 Years After Periacetabular Osteotomy? , 2012, Clinical orthopaedics and related research.
[12] Gheorghe Luta,et al. Lifetime risk of symptomatic knee osteoarthritis. , 2008, Arthritis and rheumatism.
[13] Garry Gold,et al. Advances in musculoskeletal MRI: Technical considerations , 2012, Journal of magnetic resonance imaging : JMRI.
[14] Scott L Delp,et al. The influence of femoral internal and external rotation on cartilage stresses within the patellofemoral joint , 2008, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[15] Thomas D Brown,et al. Posttraumatic Osteoarthritis: A First Estimate of Incidence, Prevalence, and Burden of Disease , 2006, Journal of orthopaedic trauma.
[16] Singiresu S Rao,et al. Reliability-Based Design , 1992 .
[17] Marcus G Pandy,et al. Grand challenge competition to predict in vivo knee loads , 2012, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[18] Felix Eckstein,et al. Accuracy and precision of quantitative assessment of cartilage morphology by magnetic resonance imaging at 3.0T. , 2005, Arthritis and rheumatism.
[19] S. Lo. Volume discretization into tetrahedra—II. 3D triangulation by advancing front approach , 1991 .
[20] Harry E Rubash,et al. In vivo cartilage contact deformation of human ankle joints under full body weight , 2008, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[21] Gerard A Ateshian,et al. The correspondence between equilibrium biphasic and triphasic material properties in mixture models of articular cartilage. , 2004, Journal of biomechanics.
[22] Steven A Olson,et al. The role of biomechanics and inflammation in cartilage injury and repair. , 2004, Clinical orthopaedics and related research.
[23] J S Jurvelin,et al. Biphasic poroviscoelastic simulation of the unconfined compression of articular cartilage: I--Simultaneous prediction of reaction force and lateral displacement. , 2001, Journal of biomechanical engineering.
[24] N H Yang,et al. Protocol for constructing subject-specific biomechanical models of knee joint , 2010, Computer methods in biomechanics and biomedical engineering.
[25] N. Broom,et al. Fracture behaviour of cartilage-on-bone in response to repeated impact loading. , 1990, Connective tissue research.
[26] George Papaioannou,et al. Predicting the effects of knee focal articular surface injury with a patient-specific finite element model. , 2010, The Knee.
[27] M. Schweitzer,et al. Special focus session. MR arthrography. , 2002, Radiographics : a review publication of the Radiological Society of North America, Inc.
[28] Jeremy F. Suggs,et al. In vivo flexion and kinematics of the knee after TKA: comparison of a conventional and a high flexion cruciate-retaining TKA design , 2009, Knee Surgery, Sports Traumatology, Arthroscopy.
[29] R W Mann,et al. Cartilage stresses in the human hip joint. , 1994, Journal of biomechanical engineering.
[30] A. Maroudas,et al. Further studies on the composition of human femoral head cartilage. , 1980, Annals of the rheumatic diseases.
[31] G. Bergmann,et al. Hip contact forces and gait patterns from routine activities. , 2001, Journal of biomechanics.
[32] Fei Hu,et al. Contributions of non-spherical hip joint cartilage surface to hip joint contact stress , 2011, 2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[33] C L Saltzman,et al. Ankle osteoarthritis: distinctive characteristics. , 1999, Instructional course lectures.
[34] D. GeersM.G.,et al. Multi-scale computational homogenization , 2010 .
[35] V. Mow,et al. Biphasic creep and stress relaxation of articular cartilage in compression? Theory and experiments. , 1980, Journal of biomechanical engineering.
[36] W Herzog,et al. Inadequate placement of osteochondral plugs may induce abnormal stress-strain distributions in articular cartilage --finite element simulations. , 2002, Medical engineering & physics.
[37] Klaus A Siebenrock,et al. Feasibility of T 2* mapping for the evaluation of hip joint cartilage at 1.5T using a three‐dimensional (3D), gradient‐echo (GRE) sequence: A prospective study , 2009, Magnetic resonance in medicine.
[38] Vipin Chaudhary,et al. Segmentation of lumbar vertebrae from clinical CT using active shape models and GVF-snake , 2011, 2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[39] Jesse B Jupiter,et al. Elbow position affects distal radioulnar joint kinematics. , 2009, The Journal of hand surgery.
[40] R Huiskes,et al. The role of computational models in the search for the mechanical behavior and damage mechanisms of articular cartilage. , 2005, Medical engineering & physics.
[41] X. Edward Guo,et al. Mechano-electrochemical properties of articular cartilage: their inhomogeneities and anisotropies. , 2002, Annual review of biomedical engineering.
[42] T D Brown,et al. A contact-coupled finite element analysis of the natural adult hip. , 1984, Journal of biomechanics.
[43] A. Silman,et al. Hip osteoarthritis and dysplasia in Chinese men. , 1995, Annals of the rheumatic diseases.
[44] W C Hutton,et al. Contact pressures in the human hip joint. , 1987, The Journal of bone and joint surgery. British volume.
[45] A Shirazi-Adl,et al. Investigation of mechanical behavior of articular cartilage by fibril reinforced poroelastic models. , 2003, Biorheology.
[46] T M Quinn,et al. Static compression is associated with decreased diffusivity of dextrans in cartilage explants. , 2000, Archives of biochemistry and biophysics.
[47] Seungbum Koo,et al. Recent advances in MRI of articular cartilage. , 2009, AJR. American journal of roentgenology.
[48] Christopher L Peters,et al. Center edge angle measurement for hip preservation surgery: technique and caveats. , 2011, Orthopedics.
[49] Karol Miller,et al. Constitutive modeling of cartilaginous tissues: a review. , 2006, Journal of applied biomechanics.
[50] Y. Fung,et al. Biomechanics: Mechanical Properties of Living Tissues , 1981 .
[51] S B Murphy,et al. The prognosis in untreated dysplasia of the hip. A study of radiographic factors that predict the outcome. , 1995, The Journal of bone and joint surgery. American volume.
[52] R. O. Murray,et al. The aetiology of primary osteoarthritis of the hip. , 1965, The British journal of radiology.
[53] B Calvo,et al. Influence of the tunnel angle in ACL reconstructions on the biomechanics of the knee joint. , 2006, Clinical biomechanics.
[54] Matthew J Silva,et al. Cartilage Tolerates Single Impact Loads of as Much as Half the Joint Fracture Threshold , 2004, Clinical orthopaedics and related research.
[55] Kunihiko Okano,et al. Joint Congruency as an Indication for Rotational Acetabular Osteotomy , 2009, Clinical orthopaedics and related research.
[56] T. Brown,et al. The effects of contact pressure elevations and aseptic necrosis on the long‐term outcome of congenital hip dislocation , 1990, Journal of Orthopaedic Research.
[57] Scott Tashman,et al. In-vivo measurement of dynamic joint motion using high speed biplane radiography and CT: application to canine ACL deficiency. , 2003, Journal of biomechanical engineering.
[58] Richard J Hawkins,et al. The Prevalence of Glenohumeral Osteoarthrosis in Unstable Shoulders * , 2003, The American journal of sports medicine.
[59] R. Mann,et al. A comparison of lower-extremity skeletal kinematics measured using skin- and pin-mounted markers , 1997 .
[60] G Rau,et al. Movement biomechanics goes upwards: from the leg to the arm. , 2000, Journal of biomechanics.
[61] R. Trousdale,et al. Acetabular Labral Tears Rarely Occur in the Absence of Bony Abnormalities , 2004, Clinical orthopaedics and related research.
[62] Yasin Y Dhaher,et al. The effect of connective tissue material uncertainties on knee joint mechanics under isolated loading conditions. , 2010, Journal of biomechanics.
[63] W M Lai,et al. Drag-induced compression of articular cartilage during a permeation experiment. , 1980, Biorheology.
[64] M. Holmes. Finite deformation of soft tissue: analysis of a mixture model in uni-axial compression. , 1986, Journal of biomechanical engineering.
[65] V. Mow,et al. A transversely isotropic biphasic model for unconfined compression of growth plate and chondroepiphysis. , 1998, Journal of biomechanical engineering.
[66] Wasim Khan,et al. The Operative Management of Patella Malalignment , 2012, The open orthopaedics journal.
[67] Seonghun Park,et al. Dynamic response of immature bovine articular cartilage in tension and compression, and nonlinear viscoelastic modeling of the tensile response. , 2006, Journal of biomechanical engineering.
[68] V. Mlynárik,et al. Investigation of laminar appearance of articular cartilage by means of magnetic resonance microscopy. , 1996, Magnetic resonance imaging.
[69] Charles E Spritzer,et al. In vivo cartilage contact strains in patients with lateral ankle instability. , 2010, Journal of biomechanics.
[70] Clark R. Dohrmann,et al. A uniform nodal strain tetrahedron with isochoric stabilization , 2009 .
[71] Nicholas A T Brown,et al. Acetabular cartilage thickness: accuracy of three-dimensional reconstructions from multidetector CT arthrograms in a cadaver study. , 2010, Radiology.
[72] J. Weiss,et al. Finite element implementation of incompressible, transversely isotropic hyperelasticity , 1996 .
[73] J. Weiss,et al. Subject-specific finite element model of the pelvis: development, validation and sensitivity studies. , 2005, Journal of biomechanical engineering.
[74] Farzam Farahmand,et al. A detailed and validated three dimensional dynamic model of the patellofemoral joint. , 2012, Journal of biomechanical engineering.
[75] G A Ateshian,et al. Knee cartilage topography, thickness, and contact areas from MRI: in-vitro calibration and in-vivo measurements. , 1999, Osteoarthritis and cartilage.
[76] Hans-Christian Hege,et al. A 3D statistical shape model of the pelvic bone for segmentation , 2004, SPIE Medical Imaging.
[77] Clare K Fitzpatrick,et al. Development of a statistical shape model of the patellofemoral joint for investigating relationships between shape and function. , 2011, Journal of biomechanics.
[78] Joost Dekker,et al. Biomechanical factors and physical examination findings in osteoarthritis of the knee: associations with tissue abnormalities assessed by conventional radiography and high-resolution 3.0 Tesla magnetic resonance imaging , 2012, Arthritis Research & Therapy.
[79] H. Genant,et al. Accuracy of CT-based thickness measurement of thin structures: modeling of limited spatial resolution in all three dimensions. , 2002, Medical physics.
[80] Hollis G. Potter,et al. SYMPOSIUM: ABJS CARL T. BRIGHTON WORKSHOP ON HIP PRESERVATION SURGERY MRI of Hip Cartilage , 2012 .
[81] K. Kopecky,et al. Musculoskeletal imaging with multislice CT. , 2001, AJR. American journal of roentgenology.
[82] Cyril B Frank,et al. Congruency Effects on Load Bearing in Diarthrodial Joints , 2004, Computer methods in biomechanics and biomedical engineering.
[83] 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.
[84] C. Herberhold,et al. In situ measurement of articular cartilage deformation in intact femoropatellar joints under static loading. , 1999, Journal of biomechanics.
[85] Harry E Rubash,et al. In vivo patellar tracking: Clinical motions and patellofemoral indices , 2008, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[86] Hamid Nayeb-Hashemi,et al. Effect of frontal plane tibiofemoral angle on the stress and strain at the knee cartilage during the stance phase of gait , 2010, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[87] W Herzog,et al. The role of viscoelasticity of collagen fibers in articular cartilage: axial tension versus compression. , 2005, Medical engineering & physics.
[88] Benjamin J. Ellis,et al. Role of the acetabular labrum in load support across the hip joint. , 2011, Journal of biomechanics.
[89] S. Lo. Volume discretization into tetrahedra-I. Verification and orientation of boundary surfaces , 1991 .
[90] Sharmila Majumdar,et al. Mechanism of disease in early osteoarthritis: application of modern MR imaging techniques -- a technical report. , 2013, Magnetic resonance imaging.
[91] F Eckstein,et al. Quantitative determination of joint incongruity and pressure distribution during simulated gait and cartilage thickness in the human hip joint , 1999, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[92] J. Hazes,et al. Musculoskeletal disorders and disability in persons aged 85 and over: a community survey. , 1994, Annals of the rheumatic diseases.
[93] 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.
[94] P. Büchler,et al. A finite element model of the shoulder: application to the comparison of normal and osteoarthritic joints. , 2002, Clinical biomechanics.
[95] Ara Kassarjian,et al. Direct MR arthrography of the hip with leg traction: feasibility for assessing articular cartilage. , 2008, AJR. American journal of roentgenology.
[96] V C Mow,et al. Swelling and curling behaviors of articular cartilage. , 1998, Journal of biomechanical engineering.
[97] A. Grodzinsky,et al. Cartilage tissue remodeling in response to mechanical forces. , 2000, Annual review of biomedical engineering.
[98] Oubay Hassan,et al. An averaged nodal deformation gradient linear tetrahedral element for large strain explicit dynamic applications , 2001 .
[99] T D Brown,et al. Acute articular fracture severity and chronic cartilage stress challenge as quantitative risk factors for post-traumatic osteoarthritis: illustrative cases. , 2010, The Iowa orthopaedic journal.
[100] Mario Lamontagne,et al. Femoroacetabular impingement alters hip and pelvic biomechanics during gait Walking biomechanics of FAI. , 2009, Gait & posture.
[101] Horst Bischof,et al. DT-MRI Based Computation of Collagen Fiber Deformation in Human Articular Cartilage: A Feasibility Study , 2010, Annals of Biomedical Engineering.
[102] Ulrich Glitsch,et al. Epidemiological Evidence for Work Load as a Risk Factor for Osteoarthritis of the Hip: A Systematic Review , 2012, PloS one.
[103] K. Markolf,et al. Stiffness and laxity of the knee--the contributions of the supporting structures. A quantitative in vitro study. , 1976, The Journal of bone and joint surgery. American volume.
[104] D. D’Lima,et al. In vivo contact kinematics and contact forces of the knee after total knee arthroplasty during dynamic weight-bearing activities. , 2008, Journal of biomechanics.
[105] G G Koch,et al. One in four people may develop symptomatic hip osteoarthritis in his or her lifetime. , 2010, Osteoarthritis and cartilage.
[106] 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.
[107] Hamid Nayeb-Hashemi,et al. The effect of the frontal plane tibiofemoral angle and varus knee moment on the contact stress and strain at the knee cartilage. , 2010, Journal of applied biomechanics.
[108] Richard M Aspden,et al. Statistical methods in finite element analysis. , 2002, Journal of biomechanics.
[109] Gerard A. Ateshian,et al. Computer Simulations of Patellofemoral Joint Surgery , 2003, The American journal of sports medicine.
[110] Peter W Lementowski,et al. Obesity and osteoarthritis. , 2008, American journal of orthopedics.
[111] Benjamin J. Ellis,et al. Validation of finite element predictions of cartilage contact pressure in the human hip joint. , 2008, Journal of biomechanical engineering.
[112] D G Wilder,et al. Mechanical changes in the knee after meniscectomy. , 1976, The Journal of bone and joint surgery. American volume.
[113] Clare K Fitzpatrick,et al. Computationally efficient finite element evaluation of natural patellofemoral mechanics. , 2010, Journal of biomechanical engineering.
[114] Yongnam Song,et al. Changes in articular cartilage mechanics with meniscectomy: A novel image-based modeling approach and comparison to patterns of OA. , 2011, Journal of biomechanics.
[115] Albert C. Chen,et al. Depth‐dependent confined compression modulus of full‐thickness bovine articular cartilage , 1997, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[116] M. Papini,et al. A nonlinear biphasic fiber-reinforced porohyperviscoelastic model of articular cartilage incorporating fiber reorientation and dispersion. , 2011, Journal of biomechanical engineering.
[117] Anna Stankiewicz,et al. Anisotropy, inhomogeneity, and tension-compression nonlinearity of human glenohumeral cartilage in finite deformation. , 2005, Journal of biomechanics.
[118] Felix Eckstein,et al. Direct comparison of contact areas, contact stress and subchondral mineralization in human hip joint specimens , 1997, Anatomy and Embryology.
[119] T. Gill,et al. Analysis of tibiofemoral cartilage deformation in the posterior cruciate ligament-deficient knee. , 2009, The Journal of bone and joint surgery. American volume.
[120] R. Haut,et al. Mechanical responses of the rabbit patello-femoral joint to blunt impact. , 1995, Journal of biomechanical engineering.
[121] Alfio Grillo,et al. A transversely isotropic, transversely homogeneous microstructural-statistical model of articular cartilage. , 2005, Journal of biomechanics.
[122] Jacob Fish,et al. Toward realization of computational homogenization in practice , 2008 .
[123] D Coggon,et al. Osteoarthritis of the hip and acetabular dysplasia. , 1991, Annals of the rheumatic diseases.
[124] A. Maroudas,et al. Influence of cyclic loading on the nutrition of articular cartilage. , 1990, Annals of the rheumatic diseases.
[125] F Eckstein,et al. Equivalence and precision of knee cartilage morphometry between different segmentation teams, cartilage regions, and MR acquisitions. , 2012, Osteoarthritis and cartilage.
[126] Cheryl A. Petersilge,et al. MR arthrography for evaluation of the acetabular labrum , 2001, Skeletal Radiology.
[127] Gerard A Ateshian,et al. Solute transport across a contact interface in deformable porous media. , 2012, Journal of biomechanics.
[128] R N Villar,et al. Predictors of progression of osteoarthritis in femoroacetabular impingement: a radiological study with a minimum of ten years follow-up. , 2009, The Journal of bone and joint surgery. British volume.
[129] K. An,et al. Pressure distribution on articular surfaces: application to joint stability evaluation. , 1990, Journal of biomechanics.
[130] Marco Viceconti,et al. Automatic generation of finite element meshes from computed tomography data. , 2003, Critical reviews in biomedical engineering.
[131] Miroslav Sochor,et al. Gradient of contact stress in normal and dysplastic human hips. , 2003, Medical engineering & physics.
[132] V C Mow,et al. The biphasic poroviscoelastic behavior of articular cartilage: role of the surface zone in governing the compressive behavior. , 1993, Journal of biomechanics.
[133] Henry P. Wynn,et al. Quality through design : experimental design, off-line quality control and Taguchi's contributions , 1991 .
[134] A. Cárdenas-Blanco,et al. Can T1-rho MRI detect acetabular cartilage degeneration in femoroacetabular impingement?: a pilot study. , 2012, The Journal of bone and joint surgery. British volume.
[135] Ayman Habib,et al. OpenSim: Open-Source Software to Create and Analyze Dynamic Simulations of Movement , 2007, IEEE Transactions on Biomedical Engineering.
[136] R Huiskes,et al. Pathways of load-induced cartilage damage causing cartilage degeneration in the knee after meniscectomy. , 2003, Journal of biomechanics.
[137] Scott Tashman,et al. Journal of Orthopaedic Surgery and Research Accuracy of Biplane X-ray Imaging Combined with Model-based Tracking for Measuring In-vivo Patellofemoral Joint Motion , 2022 .
[138] S Trattnig,et al. Discrimination between fluid, synovium, and cartilage in patients with rheumatoid arthritis: contrast enhanced Spin Echo versus non-contrast-enhanced fat-suppressed Gradient Echo MR imaging. , 1999, Clinical radiology.
[139] L R Frank,et al. Short echo time projection reconstruction MR imaging of cartilage: comparison with fat-suppressed spoiled GRASS and magnetization transfer contrast MR imaging. , 1997, Radiology.
[140] Christopher R Dennison,et al. Sensitivity of Bragg gratings in birefringent optical fiber to transverse compression between conforming materials. , 2010, Applied optics.
[141] G A Ateshian,et al. A Conewise Linear Elasticity mixture model for the analysis of tension-compression nonlinearity in articular cartilage. , 2000, Journal of biomechanical engineering.
[142] M. Doblaré,et al. A finite element simulation of the effect of graft stiffness and graft tensioning in ACL reconstruction. , 2005, Clinical biomechanics.
[143] V. Mow,et al. The mechanical environment of the chondrocyte: a biphasic finite element model of cell-matrix interactions in articular cartilage. , 2000, Journal of biomechanics.
[144] Zhongmin Jin,et al. Hemiarthroplasty of hip joint: An experimental validation using porcine acetabulum. , 2011, Journal of biomechanics.
[145] Michael A. Puso,et al. A stabilized nodally integrated tetrahedral , 2006 .
[146] Steven A Olson,et al. Joint degeneration following closed intraarticular fracture in the mouse knee: A model of posttraumatic arthritis , 2007, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[147] Manuel Doblaré,et al. Effect of the size and location of osteochondral defects in degenerative arthritis. A finite element simulation , 2007, Comput. Biol. Medicine.
[148] L Solomon,et al. Patterns of osteoarthritis of the hip. , 1976, The Journal of bone and joint surgery. British volume.
[149] Heath B. Henninger,et al. Validation of computational models in biomechanics , 2010, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[150] Karen Steger-May,et al. Radiographic Evaluation of the Hip has Limited Reliability , 2009, Clinical orthopaedics and related research.
[151] B B Seedhom,et al. The 'instantaneous' compressive modulus of human articular cartilage in joints of the lower limb. , 1999, Rheumatology.
[152] V C Mow,et al. Articular geometry of the glenohumeral joint. , 1992, Clinical orthopaedics and related research.
[153] W M Lai,et al. A mixture theory for charged-hydrated soft tissues containing multi-electrolytes: passive transport and swelling behaviors. , 1998, Journal of biomechanical engineering.
[154] M J Rudert,et al. A new sensor for measurement of dynamic contact stress in the hip. , 2014, Journal of biomechanical engineering.
[155] Hollis G Potter,et al. New techniques in articular cartilage imaging. , 2009, Clinics in sports medicine.
[156] U. Sinha,et al. Morphological Atlases of Knee Cartilage: Shape Indices to Analyze Cartilage Degradation in Osteoarthritic and Non-Osteoarthritic Population , 2007, 2007 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[157] Ramprasad Papannagari,et al. In vivo articular cartilage contact at the glenohumeral joint: preliminary report , 2008, Journal of orthopaedic science : official journal of the Japanese Orthopaedic Association.
[158] R K Korhonen,et al. Effect of superficial collagen patterns and fibrillation of femoral articular cartilage on knee joint mechanics-a 3D finite element analysis. , 2012, Journal of biomechanics.
[159] E. Chao,et al. Three-dimensional dynamic hip contact area and pressure distribution during activities of daily living. , 2006, Journal of biomechanics.
[160] Daniel J. Sucato,et al. Limited Intraobserver and Interobserver Reliability for the Common Measures of Hip Joint Congruency Used in Dysplasia , 2012, Clinical orthopaedics and related research.
[161] T D Brown,et al. In vitro contact stress distributions in the natural human hip. , 1983, Journal of biomechanics.
[162] Jennifer S Wayne,et al. Contact models of repaired articular surfaces: influence of loading conditions and the superficial tangential zone , 2011, Biomechanics and modeling in mechanobiology.
[163] G. Wang,et al. Stair-step artifacts in three-dimensional helical CT: an experimental study. , 1994, Radiology.
[164] Thomas J. R. Hughes,et al. Nonlinear finite element analysis of shells: Part I. three-dimensional shells , 1981 .
[165] B Geiger,et al. An alternative method of three-dimensional reconstruction from two-dimensional CT and MR data sets. , 1991, European journal of radiology.
[166] S. Delp,et al. A modeling framework to estimate patellofemoral joint cartilage stress in vivo. , 2005, Medicine and science in sports and exercise.
[167] A Shirazi-Adl,et al. Role of cartilage collagen fibrils networks in knee joint biomechanics under compression. , 2008, Journal of biomechanics.
[168] Gerard A Ateshian,et al. Anisotropy of fibrous tissues in relation to the distribution of tensed and buckled fibers. , 2007, Journal of biomechanical engineering.
[169] Hiroshi Tsumura,et al. A computer simulation of rotational acetabular osteotomy for dysplastic hip joint: does the optimal transposition of the acetabular fragment exist? , 2005, Journal of orthopaedic science : official journal of the Japanese Orthopaedic Association.
[170] Benjamin J. Ellis,et al. Three-dimensional finite element modeling of ligaments: technical aspects. , 2005, Medical engineering & physics.
[171] P. Savard,et al. Partial meniscectomy changes fluid pressurization in articular cartilage in human knees. , 2012, Journal of biomechanical engineering.
[172] Dong Zhao,et al. In vivo medial and lateral tibial loads during dynamic and high flexion activities , 2007, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[173] C. Oomens,et al. An integrated finite-element approach to mechanics, transport and biosynthesis in tissue engineering. , 2004, Journal of biomechanical engineering.
[174] J A Martin,et al. Post-traumatic osteoarthritis: the role of stress induced chondrocyte damage. , 2006, Biorheology.
[175] Juha Töyräs,et al. Prediction of biomechanical properties of articular cartilage with quantitative magnetic resonance imaging. , 2004, Journal of biomechanics.
[176] J M Huyghe,et al. A comparison between mechano-electrochemical and biphasic swelling theories for soft hydrated tissues. , 2005, Journal of biomechanical engineering.
[177] K Törrönen,et al. Ultrasound indentation of normal and spontaneously degenerated bovine articular cartilage. , 2003, Osteoarthritis and cartilage.
[178] W M Lai,et al. A triphasic theory for the swelling and deformation behaviors of articular cartilage. , 1991, Journal of biomechanical engineering.
[179] Zhongmin Jin,et al. Computational modelling of the natural hip: a review of finite element and multibody simulations , 2012, Computer methods in biomechanics and biomedical engineering.
[180] J. Suh,et al. Biphasic poroviscoelastic simulation of the unconfined compression of articular cartilage: II--Effect of variable strain rates. , 2001, Journal of biomechanical engineering.
[181] Stephen J Ferguson,et al. The effects of impingement and dysplasia on stress distributions in the hip joint during sitting and walking: A finite element analysis , 2009, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[182] David Zurakowski,et al. Intermediate to long-term results following the Bernese periacetabular osteotomy and predictors of clinical outcome. , 2009, The Journal of bone and joint surgery. American volume.
[183] J S Jurvelin,et al. Volumetric changes of articular cartilage during stress relaxation in unconfined compression. , 2000, Journal of biomechanics.
[184] F. J. Dzida,et al. Biomechanical Properties of Hip Cartilage in Experimental Animal Models , 1995, Clinical orthopaedics and related research.
[185] Mika E Mononen,et al. Implementation of subject‐specific collagen architecture of cartilage into a 2D computational model of a knee joint—data from the osteoarthritis initiative (OAI) , 2013, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[186] D Resnick,et al. Abnormalities of articular cartilage in the knee: analysis of available MR techniques. , 1993, Radiology.
[187] T Stammberger,et al. Interobserver reproducibility of quantitative cartilage measurements: comparison of B-spline snakes and manual segmentation. , 1999, Magnetic resonance imaging.
[188] P J Prendergast,et al. Mechano-regulation of stem cell differentiation and tissue regeneration in osteochondral defects. , 2005, Journal of biomechanics.
[189] R. Ganz,et al. Femoroacetabular impingement: a cause for osteoarthritis of the hip. , 2003, Clinical orthopaedics and related research.
[190] D. J. Rapperport,et al. Contact finite element stress analysis of the hip joint , 1985, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[191] M. Puso,et al. A mortar segment-to-segment contact method for large deformation solid mechanics , 2004 .
[192] Satoshi Hamai,et al. Can magnetic resonance imaging–derived bone models be used for accurate motion measurement with single‐plane three‐dimensional shape registration? , 2007, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[193] Thomas D Brown,et al. Intra-articular Contact Stress Distributions at the Ankle Throughout Stance Phase–patient-specific Finite Element Analysis as a Metric of Degeneration Propensity , 2006, Biomechanics and modeling in mechanobiology.
[194] Albert C. Chen,et al. Depth- and strain-dependent mechanical and electromechanical properties of full-thickness bovine articular cartilage in confined compression. , 2001, Journal of biomechanics.
[195] Thomas D Brown,et al. Distribution and progression of chondrocyte damage in a whole-organ model of human ankle intra-articular fracture. , 2011, The Journal of bone and joint surgery. American volume.
[196] M. Daniel,et al. Computer Determination of Contact Stress Distribution and Size of Weight Bearing Area in the Human Hip Joint , 2002, Computer methods in biomechanics and biomedical engineering.
[197] B Calvo,et al. Finite element analysis of the effect of meniscal tears and meniscectomies on human knee biomechanics. , 2005, Clinical biomechanics.
[198] Todd Johnson,et al. In vivo knee kinematics during high flexion after a posterior-substituting total knee arthroplasty , 2010, International Orthopaedics.
[199] Robert L Spilker,et al. A penetration-based finite element method for hyperelastic 3D biphasic tissues in contact. Part II: finite element simulations. , 2006, Journal of biomechanical engineering.
[200] J. Buckwalter,et al. The impact of osteoarthritis: implications for research. , 2004, Clinical orthopaedics and related research.
[201] Michael A. Puso,et al. A 3D mortar method for solid mechanics , 2004 .
[202] C. McGibbon,et al. Accuracy of cartilage and subchondral bone spatial thickness distribution from MRI , 2003, Journal of magnetic resonance imaging : JMRI.
[203] King H. Yang,et al. Patient-specific knee joint finite element model validation with high-accuracy kinematics from biplane dynamic Roentgen stereogrammetric analysis. , 2008, Journal of biomechanics.
[204] Richard B. Souza,et al. Local tissue properties of human osteoarthritic cartilage correlate with magnetic resonance T1rho relaxation times , 2011, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[205] R. Huiskes,et al. Development and validation of a three-dimensional finite element model of the pelvic bone. , 1995, Journal of biomechanical engineering.
[206] D. R. Veronda,et al. Mechanical characterization of skin-finite deformations. , 1970, Journal of biomechanics.
[207] Wasim Khan,et al. Tissue Engineering for the Meniscus: A Review of the Literature , 2012, The open orthopaedics journal.
[208] David R Wilson,et al. Evaluation of a computational model used to predict the patellofemoral contact pressure distribution. , 2004, Journal of biomechanics.
[209] E. Chao,et al. Normal hip joint contact pressure distribution in single-leg standing--effect of gender and anatomic parameters. , 2001, Journal of biomechanics.
[210] A. Iglič,et al. Mathematical estimation of stress distribution in normal and dysplastic human hips , 2002, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[211] P J Laz,et al. A review of probabilistic analysis in orthopaedic biomechanics , 2010, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[212] Seok Won Chung,et al. The prevalence of shoulder osteoarthritis in the elderly Korean population: association with risk factors and function. , 2011, Journal of shoulder and elbow surgery.
[213] William H. Harris,et al. The Etiology of Osteoarthritis of the Hip , 1986, Clinical orthopaedics and related research.
[214] Jeremy Suggs,et al. The Effect of Anterior Cruciate Ligament Injury on Knee Joint Function under a Simulated Muscle Load: A Three-Dimensional Computational Simulation , 2002, Annals of Biomedical Engineering.
[215] Thomas D Brown,et al. Physical validation of a patient-specific contact finite element model of the ankle. , 2007, Journal of biomechanics.
[216] J S Lewin,et al. Acetabular labral tears: evaluation with MR arthrography. , 1996, Radiology.
[217] E B Hunziker,et al. Unconfined compression of articular cartilage: nonlinear behavior and comparison with a fibril-reinforced biphasic model. , 2000, Journal of biomechanical engineering.
[218] Nicholas J Giori,et al. The low permeability of healthy meniscus and labrum limit articular cartilage consolidation and maintain fluid load support in the knee and hip. , 2012, Journal of biomechanics.
[219] G. Li,et al. Variability of a three-dimensional finite element model constructed using magnetic resonance images of a knee for joint contact stress analysis. , 2001, Journal of biomechanical engineering.
[220] Hollis G. Potter,et al. High resolution noncontrast MRI of the hip , 2010, Journal of magnetic resonance imaging : JMRI.
[221] Paul J. Rullkoetter,et al. Development of subject-specific and statistical shape models of the knee using an efficient segmentation and mesh-morphing approach , 2010, Comput. Methods Programs Biomed..
[222] T. Gill,et al. Posterolateral Structures of the Knee in Posterior Cruciate Ligament Deficiency , 2009, The American journal of sports medicine.
[223] G. Lust,et al. Origin of cartilage laminae in MRI , 1997, Journal of magnetic resonance imaging : JMRI.
[224] Marcy Wong,et al. The mechanobiology of articular cartilage development and degeneration. , 2004, Clinical orthopaedics and related research.
[225] W. Herzog,et al. Effects of inserting a pressensor film into articular joints on the actual contact mechanics. , 1998, Journal of biomechanical engineering.
[226] Stuart Crozier,et al. Automatic segmentation of the bone and extraction of the bone–cartilage interface from magnetic resonance images of the knee , 2007, Physics in medicine and biology.
[227] E. Teo,et al. Probabilistic Design Analysis of the Influence of Material Property on the Human Cervical Spine , 2004, Journal of spinal disorders & techniques.
[228] Harry E Rubash,et al. The coupled motion of the femur and patella during in vivo weightbearing knee flexion. , 2007, Journal of biomechanical engineering.
[229] R. Ganz,et al. The acetabular rim syndrome. A clinical presentation of dysplasia of the hip. , 1991, The Journal of bone and joint surgery. British volume.
[230] Jd Jan Janssen,et al. Quadriphasic mechanics of swelling incompressible porous media , 1997 .
[231] Benjamin J. Ellis,et al. Verification, validation and sensitivity studies in computational biomechanics , 2007, Computer methods in biomechanics and biomedical engineering.
[232] Jean-Daniel Boissonnat,et al. Shape reconstruction from planar cross sections , 1988, Comput. Vis. Graph. Image Process..
[233] Gerard A Ateshian,et al. Modeling the matrix of articular cartilage using a continuous fiber angular distribution predicts many observed phenomena. , 2009, Journal of biomechanical engineering.
[234] Benjamin J Ellis,et al. Cartilage thickness: factors influencing multidetector CT measurements in a phantom study. , 2008, Radiology.
[235] S. Woo,et al. Measurements of nonhomogeneous, directional mechanical properties of articular cartilage in tension. , 1976, Journal of biomechanics.
[236] Richard Hotchkiss,et al. Induction of Chondrocyte Apoptosis Following Impact Load , 2003, Journal of orthopaedic trauma.
[237] J. Suh,et al. Finite element formulation of biphasic poroviscoelastic model for articular cartilage. , 1998, Journal of biomechanical engineering.
[238] C. Helmick,et al. The Impact of Osteoarthritis in the United States: A Population-Health Perspective , 2012, The American journal of nursing.
[239] Horst Bischof,et al. A phenomenological approach toward patient-specific computational modeling of articular cartilage including collagen fiber tracking. , 2009, Journal of biomechanical engineering.
[240] A Meghdari,et al. The effects of trochlear groove geometry on patellofemoral joint stability-a computer model study , 2008, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[241] Robert L Sah,et al. A nonlinear constituent based viscoelastic model for articular cartilage and analysis of tissue remodeling due to altered glycosaminoglycan-collagen interactions. , 2009, Journal of biomechanical engineering.
[242] J. C. Simo,et al. Quasi-incompressible finite elasticity in principal stretches. Continuum basis and numerical algorithms , 1991 .
[243] S. Stulberg,et al. Acetabular dysplasia in the adult. , 1983, Clinical orthopaedics and related research.
[244] A Oloyede,et al. A biomechanical investigation of unconstrained shear failure of the osteochondral region under impact loading. , 1995, Clinical biomechanics.
[245] D. Carter,et al. Pressure and Shear Differentially Alter Human Articular Chondrocyte Metabolism: A Review , 2004, Clinical orthopaedics and related research.
[246] Walter Herzog,et al. Model-based estimation of muscle forces exerted during movements. , 2007, Clinical biomechanics.
[247] Benjamin J. Ellis,et al. Finite element prediction of cartilage contact stresses in normal human hips , 2012, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[248] 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.
[249] Thomas D Brown,et al. A finite element exploration of cartilage stress near an articular incongruity during unstable motion. , 2007, Journal of biomechanics.
[250] Lorin P Maletsky,et al. Verification of predicted specimen-specific natural and implanted patellofemoral kinematics during simulated deep knee bend. , 2009, Journal of biomechanics.
[251] V C Mow,et al. Finite deformation biphasic material properties of bovine articular cartilage from confined compression experiments. , 1997, Journal of biomechanics.
[252] Thomas D Brown,et al. Cartilage thickness in cadaveric ankles: measurement with double-contrast multi-detector row CT arthrography versus MR imaging. , 2004, Radiology.
[253] R. Haut,et al. An investigation of biphasic failure criteria for impact-induced fissuring of articular cartilage. , 1998, Journal of biomechanical engineering.
[254] Mitsuo Ochi,et al. Patient Selection Criteria for Periacetabular Osteotomy or Rotational Acetabular Osteotomy , 2012, Clinical orthopaedics and related research.
[255] Cheng-Kung Cheng,et al. The influence of mechanical properties of subchondral plate, femoral head and neck on dynamic stress distribution of the articular cartilage. , 2005, Medical engineering & physics.
[256] Y Nakagawa,et al. Epidemiologic study of glenohumeral osteoarthritis with plain radiography. , 1999, Journal of shoulder and elbow surgery.
[257] Gerhard A Holzapfel,et al. A hyperelastic biphasic fibre-reinforced model of articular cartilage considering distributed collagen fibre orientations: continuum basis, computational aspects and applications , 2013, Computer methods in biomechanics and biomedical engineering.
[258] Toshiaki Hisada,et al. Finite element contact analysis of the hip joint , 2006, Medical and Biological Engineering and Computing.
[259] D. Burris,et al. Fluid load support during localized indentation of cartilage with a spherical probe. , 2012, Journal of biomechanics.
[260] Gerard A Ateshian,et al. Experimental verification of the roles of intrinsic matrix viscoelasticity and tension-compression nonlinearity in the biphasic response of cartilage. , 2003, Journal of biomechanical engineering.
[261] Pradeep Suri,et al. Epidemiology of Osteoarthritis and Associated Comorbidities , 2012, PM & R : the journal of injury, function, and rehabilitation.
[262] P. Savard,et al. Creep behavior of the intact and meniscectomy knee joints. , 2011, Journal of the mechanical behavior of biomedical materials.
[263] Yang Xia,et al. Relaxation anisotropy in cartilage by NMR microscopy (μMRI) at 14‐μm resolution , 1998 .
[264] Siegfried Trattnig,et al. Magnetic resonance imaging of the hip at 3 Tesla: clinical value in femoroacetabular impingement of the hip and current concepts. , 2008, Seminars in musculoskeletal radiology.
[265] Thomas D Brown,et al. Implementation of discrete element analysis for subject-specific, population-wide investigations of habitual contact stress exposure. , 2010, Journal of applied biomechanics.
[266] R Huiskes,et al. Analytical stereophotogrammetric determination of three-dimensional knee-joint geometry. , 1985, Journal of biomechanics.
[267] Scott Tashman,et al. Kinematics of the ACL‐deficient canine knee during gait: Serial changes over two years , 2004, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[268] A. Troelsen,et al. Surgical advances in periacetabular osteotomy for treatment of hip dysplasia in adults , 2009, Acta orthopaedica. Supplementum.
[269] Jeffrey T. Bingham,et al. In vivo cartilage contact deformation in the healthy human tibiofemoral joint. , 2008, Rheumatology.
[270] Marna Ericson,et al. Cell death after cartilage impact occurs around matrix cracks , 2003, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[271] Saikat Pal,et al. A viscoelastic constitutive model can accurately represent entire creep indentation tests of human patella cartilage. , 2013, Journal of applied biomechanics.
[272] R. Hughes,et al. Development and Validation of a Finite Element Model of the Superior Glenoid Labrum , 2010, Annals of Biomedical Engineering.
[273] Juha Töyräs,et al. Fibril reinforced poroelastic model predicts specifically mechanical behavior of normal, proteoglycan depleted and collagen degraded articular cartilage. , 2003, Journal of biomechanics.
[274] S. Gabriel,et al. Estimates of the prevalence of arthritis and other rheumatic conditions in the United States. Part II. , 2008, Arthritis and rheumatism.
[275] T D Brown,et al. Elevated tibiofemoral articular contact stress predicts risk for bone marrow lesions and cartilage damage at 30 months. , 2012, Osteoarthritis and cartilage.
[276] Gerard A Ateshian,et al. The role of interstitial fluid pressurization in articular cartilage lubrication. , 2009, Journal of biomechanics.
[277] R. Ganz,et al. Hip morphology influences the pattern of damage to the acetabular cartilage: femoroacetabular impingement as a cause of early osteoarthritis of the hip. , 2005, The Journal of bone and joint surgery. British volume.
[278] Kenji Yamada,et al. Joint congruency in abduction before surgery as an indication for rotational acetabular osteotomy in early hip osteoarthritis , 2010, International Orthopaedics.
[279] G. R. Johnson,et al. Large-deformation triangular and tetrahedral element formulations for unstructured meshes , 2000 .
[280] T M Quinn,et al. Biomechanical characterization and in vitro mechanical injury of elderly human femoral head cartilage: comparison to adult bovine humeral head cartilage. , 2006, Osteoarthritis and cartilage.
[281] Hans-Peter Meinzer,et al. Statistical shape models for 3D medical image segmentation: A review , 2009, Medical Image Anal..
[282] Paul J. Rullkoetter,et al. Finite element-based probabilistic analysis tool for orthopaedic applications , 2007, Comput. Methods Programs Biomed..
[283] E. Chao,et al. A comparison of different methods in predicting static pressure distribution in articulating joints. , 1997, Journal of biomechanics.
[284] Y. Xia,et al. Resolution 'scaling law' in MRI of articular cartilage. , 2007, Osteoarthritis and cartilage.
[285] K. Muir,et al. Mild acetabular dysplasia and risk of osteoarthritis of the hip: a case–control study , 2010, Annals of the rheumatic diseases.
[286] Scott Tashman,et al. In vivo measurement of 3-D skeletal kinematics from sequences of biplane radiographs: Application to knee kinematics , 2001, IEEE Transactions on Medical Imaging.
[287] M G Pandy,et al. A parameter optimization approach for the optimal control of large-scale musculoskeletal systems. , 1992, Journal of biomechanical engineering.
[288] 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.
[289] Michael P Recht,et al. MRI of articular cartilage: revisiting current status and future directions. , 2005, AJR. American journal of roentgenology.
[290] Joanne M. Jordan,et al. Epidemiology of osteoarthritis. , 2008, Rheumatic diseases clinics of North America.
[291] A Rohlmann,et al. Hip Joint Forces During Load Carrying , 1997, Clinical orthopaedics and related research.
[292] Gerhard A. Holzapfel,et al. Nonlinear Solid Mechanics: A Continuum Approach for Engineering Science , 2000 .
[293] 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.
[294] Gerard A Ateshian,et al. Finite element implementation of mechanochemical phenomena in neutral deformable porous media under finite deformation. , 2011, Journal of biomechanical engineering.
[295] R. Taylor. The Finite Element Method, the Basis , 2000 .
[296] Christopher J. Roy,et al. A comprehensive framework for verification, validation, and uncertainty quantification in scientific computing , 2011 .
[297] Patrik Rogalla,et al. Real time visualization of femoroacetabular impingement and subluxation using 320‐slice computed tomography , 2013, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[298] J H Keyak,et al. Individuals with patellofemoral pain exhibit greater patellofemoral joint stress: a finite element analysis study. , 2011, Osteoarthritis and cartilage.
[299] Edward R. Valstar,et al. Soft-tissue artefact assessment during step-up using fluoroscopy and skin-mounted markers. , 2008, Journal of biomechanics.
[300] V C Mow,et al. The role of flow-independent viscoelasticity in the biphasic tensile and compressive responses of articular cartilage. , 2001, Journal of biomechanical engineering.
[301] M G Pandy,et al. Static and dynamic optimization solutions for gait are practically equivalent. , 2001, Journal of biomechanics.
[302] Benjamin J. Ellis,et al. Effects of Idealized Joint Geometry on Finite Element Predictions of Cartilage Contact Stresses in the Hip , 2022 .
[303] Kenton R Kaufman,et al. Experimental validation of a tibiofemoral model for analyzing joint force distribution. , 2009, Journal of biomechanics.
[304] Paul J Rullkoetter,et al. Efficient probabilistic representation of tibiofemoral soft tissue constraint , 2009, Computer methods in biomechanics and biomedical engineering.
[305] David Zurakowski,et al. Radiographic and patient factors associated with pre-radiographic osteoarthritis in hip dysplasia. , 2009, The Journal of bone and joint surgery. American volume.
[306] W Herzog,et al. The role of viscoelasticity of collagen fibers in articular cartilage: theory and numerical formulation. , 2004, Biorheology.
[307] Mark S. Shephard,et al. Automatic three‐dimensional mesh generation by the finite octree technique , 1984 .
[308] Gerard A Ateshian,et al. Finite element algorithm for frictionless contact of porous permeable media under finite deformation and sliding. , 2010, Journal of biomechanical engineering.
[309] S Tashman,et al. In vivo serial joint space measurements during dynamic loading in a canine model of osteoarthritis. , 2005, Osteoarthritis and cartilage.
[310] A. M. Ahmed,et al. In-vitro measurement of static pressure distribution in synovial joints--Part I: Tibial surface of the knee. , 1983, Journal of biomechanical engineering.
[311] A Rohlmann,et al. Measurement of shoulder joint loads during wheelchair propulsion measured in vivo. , 2011, Clinical biomechanics.
[312] R. Haut,et al. Impact-induced fissuring of articular cartilage: an investigation of failure criteria. , 1998, Journal of biomechanical engineering.
[313] R. B. Thompson,et al. MR spectroscopy measurement of the diffusion of dimethyl sulfoxide in articular cartilage and comparison to theoretical predictions. , 2012, Osteoarthritis and cartilage.
[314] G. Bentley,et al. Horizontal splitting in patellar articular cartilage. , 1978, Arthritis and rheumatism.
[315] Jeremy Suggs,et al. The effect of graft stiffness on knee joint biomechanics after ACL reconstruction--a 3D computational simulation. , 2003, Clinical biomechanics.
[316] P. Atkinson,et al. Subfracture insult to the human cadaver patellofemoral joint produces occult injury , 1995, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[317] A. Cole,et al. Comparison of biomechanical and biochemical properties of cartilage from human knee and ankle pairs , 2000, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[318] M S Laasanen,et al. Estimation of mechanical properties of articular cartilage with MRI - dGEMRIC, T2 and T1 imaging in different species with variable stages of maturation. , 2007, Osteoarthritis and cartilage.
[319] V. G. Kouznetsova,et al. Multi-scale computational homogenization: Trends and challenges , 2010, J. Comput. Appl. Math..
[320] M D Chard,et al. Shoulder disorders in the elderly (a hospital study). , 1987, Annals of the rheumatic diseases.
[321] R Krauspe,et al. T2* mapping of hip joint cartilage in various histological grades of degeneration. , 2012, Osteoarthritis and cartilage.
[322] E. Teo,et al. Material Sensitivity Study on Lumbar Motion Segment (L2-L3) Under Sagittal Plane Loadings Using Probabilistic Method , 2005, Journal of spinal disorders & techniques.
[323] A Shirazi-Adl,et al. Nonlinear analysis of cartilage in unconfined ramp compression using a fibril reinforced poroelastic model. , 1999, Clinical biomechanics.
[324] A Rohlmann,et al. An instrumented implant for in vivo measurement of contact forces and contact moments in the shoulder joint. , 2009, Medical engineering & physics.
[325] R. Haut,et al. Analysis of acute mechanical insult in an animal model of post-traumatic osteoarthrosis. , 1998, Journal of biomechanical engineering.
[326] Ali Guermazi,et al. Factors associated with meniscal extrusion in knees with or at risk for osteoarthritis: the Multicenter Osteoarthritis study. , 2012, Radiology.
[327] Farshid Guilak,et al. The dynamic mechanical environment of the chondrocyte: a biphasic finite element model of cell-matrix interactions under cyclic compressive loading. , 2008, Journal of biomechanical engineering.
[328] Marco Senteler,et al. An integrated model of active glenohumeral stability. , 2012, Journal of biomechanics.
[329] A Shirazi-Adl,et al. A fibril reinforced nonhomogeneous poroelastic model for articular cartilage: inhomogeneous response in unconfined compression. , 2000, Journal of biomechanics.
[330] Itai Cohen,et al. Mapping the depth dependence of shear properties in articular cartilage. , 2007, Journal of biomechanics.
[331] David Zurakowski,et al. Intermediate to long-term results following the bernese periacetabular osteotomy and predictors of clinical outcome: surgical technique. , 2010, The Journal of bone and joint surgery. American volume.
[332] K. Klaue,et al. The acetabular rim syndrome , 1991 .
[333] Monika Kopacz,et al. Experimental verification of the role of interstitial fluid pressurization in cartilage lubrication , 2004, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[334] Robert L. Taylor,et al. A mixed-enhanced formulation tetrahedral finite elements , 2000 .
[335] R. Haut,et al. An analytical model to study blunt impact response of the rabbit P-F joint. , 1995, Journal of biomechanical engineering.
[336] James A. Martin,et al. Post‐traumatic osteoarthritis: Improved understanding and opportunities for early intervention , 2011, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[337] Kevin Deluzio,et al. Accuracy of single-plane fluoroscopy in determining relative position and orientation of total knee replacement components. , 2011, Journal of biomechanics.
[338] Guoan Li,et al. Comments on "validation of a non-invasive fluoroscopic imaging technique for the measurement of dynamic knee joint motion". , 2008 .
[339] L. P. Li,et al. A human knee joint model considering fluid pressure and fiber orientation in cartilages and menisci. , 2011, Medical engineering & physics.
[340] Christopher L Peters,et al. Correlation between radiographic measures of acetabular morphology with 3D femoral head coverage in patients with acetabular retroversion , 2012, Acta orthopaedica.
[341] W. Kalender,et al. Accuracy limits for the determination of cortical width and density: the influence of object size and CT imaging parameters. , 1999, Physics in medicine and biology.
[342] R K Korhonen,et al. Mechanical characterization of articular cartilage by combining magnetic resonance imaging and finite-element analysis—a potential functional imaging technique , 2008, Physics in medicine and biology.
[343] V C Mow,et al. Altered mechanics of cartilage with osteoarthritis: human osteoarthritis and an experimental model of joint degeneration. , 1999, Osteoarthritis and cartilage.
[344] Michael A. Puso,et al. A highly efficient enhanced assumed strain physically stabilized hexahedral element , 2000 .
[345] Andrew E. Anderson,et al. An Enhanced Discrete Element Model for Predicting Hip Contact Stresses , 2012 .
[346] Hamid Nayeb-Hashemi,et al. The Combined Effect of Frontal Plane Tibiofemoral Knee Angle and Meniscectomy on the Cartilage Contact Stresses and Strains , 2009, Annals of Biomedical Engineering.
[347] Hwan Seok Yong,et al. 64-Slice Coronary Computed Tomography Angiography Using Low Tube Voltage of 80 KV in Subjects with Normal Body Mass Indices: Comparative Study Using 120 KV , 2012, Acta radiologica.
[348] Scott C. Sibole,et al. Chondrocyte Deformations as a Function of Tibiofemoral Joint Loading Predicted by a Generalized High-Throughput Pipeline of Multi-Scale Simulations , 2012, PloS one.
[349] F. J. Dzida,et al. Comparative study of the intrinsic mechanical properties of the human acetabular and femoral head cartilage , 1991, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[350] T. Brown,et al. Baseline articular contact stress levels predict incident symptomatic knee osteoarthritis development in the MOST cohort , 2009, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[351] Robert L Spilker,et al. A penetration-based finite element method for hyperelastic 3D biphasic tissues in contact: Part 1--Derivation of contact boundary conditions. , 2006, Journal of biomechanical engineering.
[352] A F Mak,et al. The apparent viscoelastic behavior of articular cartilage--the contributions from the intrinsic matrix viscoelasticity and interstitial fluid flows. , 1986, Journal of biomechanical engineering.
[353] V C Mow,et al. The nonlinear characteristics of soft gels and hydrated connective tissues in ultrafiltration. , 1990, Journal of biomechanics.
[354] H. Wilke,et al. Geometry strongly influences the response of numerical models of the lumbar spine--a probabilistic finite element analysis. , 2012, Journal of biomechanics.
[355] J. Weiss,et al. Subject‐specific finite element analysis of the human medial collateral ligament during valgus knee loading , 2003, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[356] Thomas D Brown,et al. New methods for assessing cartilage contact stress after articular fracture. , 2004, Clinical orthopaedics and related research.
[357] Thomas P Andriacchi,et al. Rotational Changes at the Knee after ACL Injury Cause Cartilage Thinning , 2006, Clinical orthopaedics and related research.
[358] R A Brand,et al. Mathematical modelling of stress in the hip during gait. , 1999, Journal of biomechanics.
[359] C. Czerny,et al. Lesions of the acetabular labrum: accuracy of MR imaging and MR arthrography in detection and staging. , 1996, Radiology.
[360] R. Huiskes,et al. Mechanical and textural properties of pelvic trabecular bone. , 1993, Journal of biomechanics.
[361] D. Burstein,et al. Diffusion of small solutes in cartilage as measured by nuclear magnetic resonance (NMR) spectroscopy and imaging , 1993, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[362] W M Lai,et al. Effects of nonlinear strain-dependent permeability and rate of compression on the stress behavior of articular cartilage. , 1981, Journal of biomechanical engineering.
[363] Steven A Olson,et al. The Development of Posttraumatic Arthritis After Articular Fracture , 2006, Journal of orthopaedic trauma.
[364] Gerard A Ateshian,et al. Modeling of neutral solute transport in a dynamically loaded porous permeable gel: implications for articular cartilage biosynthesis and tissue engineering. , 2003, Journal of biomechanical engineering.
[365] V. Mow,et al. Biomechanics of articular cartilage and determination of material properties. , 2008, Medicine and science in sports and exercise.
[366] Jiang Yao,et al. Sensitivity of tibio-menisco-femoral joint contact behavior to variations in knee kinematics. , 2008, Journal of biomechanics.
[367] A Shirazi-Adl,et al. Biomechanics of the knee joint in flexion under various quadriceps forces. , 2005, The Knee.
[368] Jason P. Halloran,et al. Multiscale Mechanics of Articular Cartilage: Potentials and Challenges of Coupling Musculoskeletal, Joint, and Microscale Computational Models , 2012, Annals of Biomedical Engineering.
[369] I. Kiviranta,et al. Alterations in structure and properties of collagen network of osteoarthritic and repaired cartilage modify knee joint stresses , 2011, Biomechanics and modeling in mechanobiology.
[370] E. Genda,et al. A computer simulation study of normal and abnormal hip joint contact pressure , 2004, Archives of Orthopaedic and Trauma Surgery.
[371] Farshid Guilak,et al. An axisymmetric boundary element model for determination of articular cartilage pericellular matrix properties in situ via inverse analysis of chondron deformation. , 2010, Journal of biomechanical engineering.
[372] R. Brand,et al. Joint contact stress: a reasonable surrogate for biological processes? , 2005, The Iowa orthopaedic journal.
[373] T. Brown,et al. Patient‐specific finite element analysis of chronic contact stress exposure after intraarticular fracture of the tibial plafond , 2008, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[374] David W Holdsworth,et al. Subchondral cysts create increased intra-osseous stress in early knee OA: A finite element analysis using simulated lesions. , 2011, Bone.
[375] S L Woo,et al. A validated three-dimensional computational model of a human knee joint. , 1999, Journal of biomechanical engineering.
[376] 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.
[377] Scott Tashman,et al. Validation of a new model-based tracking technique for measuring three-dimensional, in vivo glenohumeral joint kinematics. , 2006, Journal of biomechanical engineering.
[378] Michael S. Eldred,et al. DAKOTA : a multilevel parallel object-oriented framework for design optimization, parameter estimation, uncertainty quantification, and sensitivity analysis. Version 5.0, user's reference manual. , 2010 .