Literature DB >> 27787809

Computational model-based probabilistic analysis of in vivo material properties for ligament stiffness using the laxity test and computed tomography.

Kyoung-Tak Kang1, Sung-Hwan Kim2, Juhyun Son1, Young Han Lee3, Heoung-Jae Chun4.   

Abstract

The objective of this paper was to evaluate in vivo material properties in order to address technical aspects of computational modeling of ligaments in the tibiofemoral joint using a probabilistic method. The laxity test was applied to the anterior-posterior drawer under 30° and 90° of flexion with a series of stress radiographs, a Telos device, and computed tomography. Ligament stiffness was investigated using sensitivity analysis based on the Monte-Carlo method with a subject-specific finite element model generated from in vivo computed tomography and magnetic resonance imaging data, subjected to laxity test conditions. The material properties of ligament stiffness and initial ligament strain in a subject-specific finite element model were optimized to minimize the differences between the movements of the tibia and femur in the finite element model and the computed tomography images in the laxity test. The posterior cruciate ligament was the most significant factor in flexion and posterior drawer, while the anterior cruciate ligament primarily was the most significant factor for the anterior drawer. The optimized material properties model predictions in simulation and the laxity test were more accurate than predictions based on the initial material properties in subject-specific computed tomography measurement. Thus, this study establishes a standard for future designs in allograft, xenograft, and artificial ligaments for anterior cruciate ligament and posterior cruciate ligament injuries.

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Year:  2016        PMID: 27787809     DOI: 10.1007/s10856-016-5797-z

Source DB:  PubMed          Journal:  J Mater Sci Mater Med        ISSN: 0957-4530            Impact factor:   3.896


  41 in total

1.  Probabilistic Approach for Determining the Material Properties of Meniscal Attachments In Vivo Using Magnetic Resonance Imaging and a Finite Element Model.

Authors:  Kyoung-Tak Kang; Sung-Hwan Kim; Juhyun Son; Young Han Lee; Heoung-Jae Chun
Journal:  J Comput Biol       Date:  2015-09-24       Impact factor: 1.479

2.  Finite element-based probabilistic analysis tool for orthopaedic applications.

Authors:  Sarah K Easley; Saikat Pal; Paul R Tomaszewski; Anthony J Petrella; Paul J Rullkoetter; Peter J Laz
Journal:  Comput Methods Programs Biomed       Date:  2006-11-07       Impact factor: 5.428

3.  Accuracy of stress radiography techniques in grading isolated and combined posterior knee injuries: a cadaveric study.

Authors:  Guido Garavaglia; Anne Lubbeke; Victor Dubois-Ferrière; Domizio Suva; Daniel Fritschy; Jacques Menetrey
Journal:  Am J Sports Med       Date:  2007-09-20       Impact factor: 6.202

4.  The anatomy of the medial part of the knee.

Authors:  Robert F LaPrade; Anders Hauge Engebretsen; Thuan V Ly; Steinar Johansen; Fred A Wentorf; Lars Engebretsen
Journal:  J Bone Joint Surg Am       Date:  2007-09       Impact factor: 5.284

Review 5.  Current concepts in instrumented knee-laxity testing.

Authors:  Luke Pugh; Randy Mascarenhas; Shalinder Arneja; Patrick Y K Chin; Jordan M Leith
Journal:  Am J Sports Med       Date:  2008-10-21       Impact factor: 6.202

6.  Stress radiographical measurement of the anteroposterior, medial and lateral stability of the knee joint.

Authors:  K Jacobsen
Journal:  Acta Orthop Scand       Date:  1976-06

7.  Posterior instability of the knee near extension. A clinical and stress radiographic analysis of acute injuries of the posterior cruciate ligament.

Authors:  H U Stäubli; R P Jakob
Journal:  J Bone Joint Surg Br       Date:  1990-03

8.  The effect of connective tissue material uncertainties on knee joint mechanics under isolated loading conditions.

Authors:  Yasin Y Dhaher; Tae-Hyun Kwon; Megan Barry
Journal:  J Biomech       Date:  2010-12-01       Impact factor: 2.712

9.  Validation of a three-dimensional model of the knee.

Authors:  L Blankevoort; R Huiskes
Journal:  J Biomech       Date:  1996-07       Impact factor: 2.712

10.  The effect of anterior cruciate ligament injury on knee joint function under a simulated muscle load: a three-dimensional computational simulation.

Authors:  Guoan Li; Jeremy Suggs; Thomas Gill
Journal:  Ann Biomed Eng       Date:  2002-05       Impact factor: 3.934

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  13 in total

1.  Anatomy-mimetic design preserves natural kinematics of knee joint in patient-specific mobile-bearing unicompartmental knee arthroplasty.

Authors:  Yong-Gon Koh; Jin-Ah Lee; Hwa-Yong Lee; Heoung-Jae Chun; Hyo-Jeong Kim; Kyoung-Tak Kang
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2019-05-23       Impact factor: 4.342

2.  Evaluation of anterior cruciate ligament surgical reconstruction through finite element analysis.

Authors:  Konstantinos Risvas; Dimitar Stanev; Lefteris Benos; Konstantinos Filip; Dimitrios Tsaopoulos; Konstantinos Moustakas
Journal:  Sci Rep       Date:  2022-05-16       Impact factor: 4.996

3.  Preservation of kinematics with posterior cruciate-, bicruciate- and patient-specific bicruciate-retaining prostheses in total knee arthroplasty by using computational simulation with normal knee model.

Authors:  Y-G Koh; J Son; S-K Kwon; H-J Kim; O-R Kwon; K-T Kang
Journal:  Bone Joint Res       Date:  2017-09       Impact factor: 5.853

4.  Effect of Post-Cam Design for Normal Knee Joint Kinematic, Ligament, and Quadriceps Force in Patient-Specific Posterior-Stabilized Total Knee Arthroplasty by Using Finite Element Analysis.

Authors:  Yong-Gon Koh; Juhyun Son; Oh-Ryong Kwon; Sae Kwang Kwon; Kyoung-Tak Kang
Journal:  Biomed Res Int       Date:  2018-09-19       Impact factor: 3.411

5.  Biomechanical influence of lateral meniscal allograft transplantation on knee joint mechanics during the gait cycle.

Authors:  Yong-Gon Koh; Jin-Ah Lee; Yong-Sang Kim; Kyoung-Tak Kang
Journal:  J Orthop Surg Res       Date:  2019-09-05       Impact factor: 2.359

6.  Biomechanical Effect of UHMWPE and CFR-PEEK Insert on Tibial Component in Unicompartmental Knee Replacement in Different Varus and Valgus Alignments.

Authors:  Yong-Gon Koh; Hyoung-Taek Hong; Kyoung-Tak Kang
Journal:  Materials (Basel)       Date:  2019-10-14       Impact factor: 3.623

7.  Effect of sagittal femoral component alignment on biomechanics after mobile-bearing total knee arthroplasty.

Authors:  Yong-Gon Koh; Jin-Ah Lee; Hwa-Yong Lee; Dong-Suk Suh; Hyo-Jeong Kim; Kyoung-Tak Kang
Journal:  J Orthop Surg Res       Date:  2019-11-28       Impact factor: 2.359

8.  Biomechanical Effects of Posterior Condylar Offset and Posterior Tibial Slope on Quadriceps Force and Joint Contact Forces in Posterior-Stabilized Total Knee Arthroplasty.

Authors:  Kyoung-Tak Kang; Yong-Gon Koh; Juhyun Son; Oh-Ryong Kwon; Jun-Sang Lee; Sae Kwang Kwon
Journal:  Biomed Res Int       Date:  2017-11-19       Impact factor: 3.411

9.  A computational simulation study to determine the biomechanical influence of posterior condylar offset and tibial slope in cruciate retaining total knee arthroplasty.

Authors:  K-T Kang; Y-G Koh; J Son; O-R Kwon; J-S Lee; S K Kwon
Journal:  Bone Joint Res       Date:  2018-01       Impact factor: 5.853

10.  Comparison of Kinematics in Cruciate Retaining and Posterior Stabilized for Fixed and Rotating Platform Mobile-Bearing Total Knee Arthroplasty with respect to Different Posterior Tibial Slope.

Authors:  Kyoung-Tak Kang; Yong-Gon Koh; Juhyun Son; Oh-Ryong Kwon; Jun-Sang Lee; Sae Kwang Kwon
Journal:  Biomed Res Int       Date:  2018-06-11       Impact factor: 3.411

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