American Society of Biomechanics Clinical Biomechanics Award 2015: MRI assessments of cartilage mechanics, morphology and composition following reconstruction of the anterior cruciate ligament.
暂无分享,去创建一个
[1] Michael F. Vignos,et al. Influence of Ligament Properties on Tibiofemoral Mechanics in Walking , 2015, The Journal of Knee Surgery.
[2] W. Block,et al. Articular Cartilage of the Human Knee Joint: In Vivo Multicomponent T2 Analysis at 3.0 T. , 2015, Radiology.
[3] Darryl G. Thelen,et al. Prediction and Validation of Load-Dependent Behavior of the Tibiofemoral and Patellofemoral Joints During Movement , 2015, Annals of Biomedical Engineering.
[4] S. Tashman,et al. Altered Tibiofemoral Kinematics in the Affected Knee and Compensatory Changes in the Contralateral Knee After Anterior Cruciate Ligament Reconstruction , 2014, The American journal of sports medicine.
[5] Yasin Y Dhaher,et al. A model of articular cruciate ligament reconstructive surgery: a validation construct and computational insights. , 2014, Journal of biomechanics.
[6] Richard Kijowski,et al. Rapid multicomponent T2 analysis of the articular cartilage of the human knee joint at 3.0T , 2014, Journal of magnetic resonance imaging : JMRI.
[7] B S Borotikar,et al. In vivo patellofemoral contact mechanics during active extension using a novel dynamic MRI-based methodology. , 2013, Osteoarthritis and cartilage.
[8] Kevin M. Johnson,et al. Measurement of tibiofemoral kinematics using highly accelerated 3D radial sampling , 2013, Magnetic resonance in medicine.
[9] Farshid Guilak,et al. Diurnal variations in articular cartilage thickness and strain in the human knee. , 2013, Journal of biomechanics.
[10] Freddie H. Fu,et al. Can Joint Contact Dynamics Be Restored by Anterior Cruciate Ligament Reconstruction? , 2013, Clinical orthopaedics and related research.
[11] Ali Hosseini,et al. Tibiofemoral cartilage contact biomechanics in patients after reconstruction of a ruptured anterior cruciate ligament , 2012, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[12] Xiaojuan Li,et al. Abnormal tibiofemoral kinematics following ACL reconstruction are associated with early cartilage matrix degeneration measured by MRI T1rho. , 2012, The Knee.
[13] 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.
[14] J. Svensson,et al. Longitudinal assessment of femoral knee cartilage quality using contrast enhanced MRI (dGEMRIC) in patients with anterior cruciate ligament injury--comparison with asymptomatic volunteers. , 2011, Osteoarthritis and cartilage.
[15] Charles E Spritzer,et al. The effect of femoral tunnel placement on ACL graft orientation and length during in vivo knee flexion. , 2011, Journal of biomechanics.
[16] R. Frobell,et al. Change in cartilage thickness, posttraumatic bone marrow lesions, and joint fluid volumes after acute ACL disruption: a two-year prospective MRI study of sixty-one subjects. , 2011, The Journal of bone and joint surgery. American volume.
[17] Sharmila Majumdar,et al. Cartilage in anterior cruciate ligament-reconstructed knees: MR imaging T1{rho} and T2--initial experience with 1-year follow-up. , 2011, Radiology.
[18] Musa Citak,et al. Effect of Tibial Tunnel Position on Stability of the Knee After Anterior Cruciate Ligament Reconstruction , 2011, The American journal of sports medicine.
[19] H. Roos,et al. Differences in the radiological characteristics between post‐traumatic and non‐traumatic knee osteoarthritis , 2010, Scandinavian journal of medicine & science in sports.
[20] Thomas P Andriacchi,et al. Differences in tibial rotation during walking in ACL reconstructed and healthy contralateral knees. , 2010, Journal of biomechanics.
[21] Joseph J Crisco,et al. Automatic determination of anatomical coordinate systems for three-dimensional bone models of the isolated human knee. , 2010, Journal of biomechanics.
[22] L. White,et al. Quantitative MR imaging evaluation of the cartilage thickness and subchondral bone area in patients with ACL-reconstructions 7 years after surgery. , 2009, Osteoarthritis and cartilage.
[23] Sharmila Majumdar,et al. Magnetic resonance imaging of 3-dimensional in vivo tibiofemoral kinematics in anterior cruciate ligament-reconstructed knees. , 2009, Arthroscopy : the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association.
[24] Sharmila Majumdar,et al. Spatial distribution and relationship of T1ρ and T2 relaxation times in knee cartilage with osteoarthritis , 2009, Magnetic Resonance in Medicine.
[25] K. Fishbein,et al. Multicomponent T2 relaxation analysis in cartilage , 2009, Magnetic resonance in medicine.
[26] M. Englund,et al. Patellofemoral osteoarthritis 15 years after anterior cruciate ligament injury--a prospective cohort study. , 2009, Osteoarthritis and cartilage.
[27] T. Andriacchi,et al. Gait mechanics influence healthy cartilage morphology and osteoarthritis of the knee. , 2009, The Journal of bone and joint surgery. American volume.
[28] Derek K. Jones,et al. Gleaning multicomponent T1 and T2 information from steady‐state imaging data , 2008, Magnetic resonance in medicine.
[29] Xiaojuan Li,et al. In Vivo T1&rgr; Quantitative Assessment of Knee Cartilage After Anterior Cruciate Ligament Injury Using 3 Tesla Magnetic Resonance Imaging , 2008, Investigative radiology.
[30] N. Sernert,et al. Osteoarthritic changes after anterior cruciate ligament reconstruction using bone-patellar tendon-bone or hamstring tendon autografts: a retrospective, 7-year radiographic and clinical follow-up study. , 2008, Arthroscopy : the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association.
[31] G. Jay,et al. Decreased lubricin concentrations and markers of joint inflammation in the synovial fluid of patients with anterior cruciate ligament injury. , 2008, Arthritis and rheumatism.
[32] S. Majumdar,et al. The feasibility of characterizing the spatial distribution of cartilage T(2) using texture analysis. , 2008, Osteoarthritis and cartilage.
[33] M. Kuster,et al. Function, osteoarthritis and activity after ACL-rupture: 11 years follow-up results of conservative versus reconstructive treatment , 2008, Knee Surgery, Sports Traumatology, Arthroscopy.
[34] Thomas P Andriacchi,et al. Knee kinematics, cartilage morphology, and osteoarthritis after ACL injury. , 2008, Medicine and science in sports and exercise.
[35] Jeffrey H Walton,et al. Displacement encoding for the measurement of cartilage deformation , 2008, Magnetic resonance in medicine.
[36] Braden C Fleming,et al. Effects of Initial Graft Tension on the Tibiofemoral Compressive Forces and Joint Position after Anterior Cruciate Ligament Reconstruction , 2007, The American journal of sports medicine.
[37] L. Good,et al. Long‐term results after primary repair or non‐surgical treatment of anterior cruciate ligament rupture: a randomized study with a 15‐year follow‐up , 2006, Scandinavian journal of medicine & science in sports.
[38] Annegret Mündermann,et al. The role of ambulatory mechanics in the initiation and progression of knee osteoarthritis , 2006, Current opinion in rheumatology.
[39] B Calvo,et al. Influence of the tunnel angle in ACL reconstructions on the biomechanics of the knee joint. , 2006, Clinical biomechanics.
[40] J. B. Kneeland,et al. T1ρ relaxation mapping in human osteoarthritis (OA) cartilage: Comparison of T1ρ with T2 , 2006 .
[41] Ravinder R Regatte,et al. T1rho relaxation mapping in human osteoarthritis (OA) cartilage: comparison of T1rho with T2. , 2006, Journal of magnetic resonance imaging : JMRI.
[42] P. Marks,et al. Inflammatory cytokine profiles associated with chondral damage in the anterior cruciate ligament-deficient knee. , 2005, Arthroscopy : the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association.
[43] F. Guilak,et al. Physical regulation of cartilage metabolism , 2005 .
[44] F. Nyquist,et al. Cartilage glycosaminoglycan loss in the acute phase after an anterior cruciate ligament injury: delayed gadolinium-enhanced magnetic resonance imaging of cartilage and synovial fluid analysis. , 2005, Arthritis and rheumatism.
[45] Scott Tashman,et al. Abnormal Rotational Knee Motion during Running after Anterior Cruciate Ligament Reconstruction , 2004, The American journal of sports medicine.
[46] J. Urban,et al. Adaptation of articular chondrocytes to changes in osmolality. , 2003, Biorheology.
[47] Takashi Ushida,et al. Hydrostatic fluid pressure enhances matrix synthesis and accumulation by bovine chondrocytes in three‐dimensional culture , 2002, Journal of cellular physiology.
[48] R. Reddy,et al. T(1rho) relaxation can assess longitudinal proteoglycan loss from articular cartilage in vitro. , 2002, Osteoarthritis and cartilage.
[49] T J Mosher,et al. Human articular cartilage: influence of aging and early symptomatic degeneration on the spatial variation of T2--preliminary findings at 3 T. , 2000, Radiology.
[50] A. Grodzinsky,et al. A molecular model of proteoglycan-associated electrostatic forces in cartilage mechanics. , 1995, Journal of biomechanical engineering.
[51] A. Poole,et al. Studies of the articular cartilage proteoglycan aggrecan in health and osteoarthritis. Evidence for molecular heterogeneity and extensive molecular changes in disease. , 1992, The Journal of clinical investigation.
[52] L. Lohmander,et al. The structure of aggrecan fragments in human synovial fluid. Evidence for the involvement in osteoarthritis of a novel proteinase which cleaves the Glu 373-Ala 374 bond of the interglobular domain. , 1992, The Journal of clinical investigation.
[53] M J Askew,et al. The effects of graft tensioning on the laxity and kinematics of the anterior cruciate ligament reconstructed knee. , 1991, Arthroscopy : the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association.
[54] E S Grood,et al. A joint coordinate system for the clinical description of three-dimensional motions: application to the knee. , 1983, Journal of biomechanical engineering.
[55] M. J. D. Powell,et al. An efficient method for finding the minimum of a function of several variables without calculating derivatives , 1964, Comput. J..