In vivo evaluation of the subject-specific finite element model for knee joint cartilage contact area
In this paper, we present a new validation method for subject-specific finite element (FE) modeling of the knee joint based on in vivo computed tomography (CT) and magnetic resonance imaging (MRI) data. Previously, several FE models have been developed for estimating the mechanical response of joint...
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Published in | International journal of precision engineering and manufacturing Vol. 16; no. 6; pp. 1171 - 1177 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Seoul
Korean Society for Precision Engineering
01.06.2015
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Subjects | |
Online Access | Get full text |
ISSN | 2234-7593 1229-8557 2005-4602 2005-4602 |
DOI | 10.1007/s12541-015-0151-9 |
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Abstract | In this paper, we present a new validation method for subject-specific finite element (FE) modeling of the knee joint based on in vivo computed tomography (CT) and magnetic resonance imaging (MRI) data. Previously, several FE models have been developed for estimating the mechanical response of joint structures, where direct or indirect in vivo measurement is difficult or impossible. More recently, studies using MRI have provided clear visualization of the motion and deformation of the articular cartilage within the tibiofemoral (TF) joint space. Two methods have been introduced to validate in vivo subject-specific models: alignment of supine MRI with X-ray images and weight-bearing MRI. The size of the contact area between the femur and tibia was determined by computing the area of femoral cartilage that intersected the tibial cartilage. The result showed good agreement between non-weight bearing image aligned with X-ray and weight-bearing MRI images. This study may help to better define the relative importance of modeling validations for the development of subject-specific models. |
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AbstractList | In this paper, we present a new validation method for subject-specific finite element (FE) modeling of the knee joint based on in vivo computed tomography (CT) and magnetic resonance imaging (MRI) data. Previously, several FE models have been developed for estimating the mechanical response of joint structures, where direct or indirect in vivo measurement is difficult or impossible. More recently, studies using MRI have provided clear visualization of the motion and deformation of the articular cartilage within the tibiofemoral (TF) joint space. Two methods have been introduced to validate in vivo subject-specific models: alignment of supine MRI with X-ray images and weight-bearing MRI. The size of the contact area between the femur and tibia was determined by computing the area of femoral cartilage that intersected the tibial cartilage. The result showed good agreement between non-weight bearing image aligned with X-ray and weight-bearing MRI images. This study may help to better define the relative importance of modeling validations for the development of subject-specific models. |
Author | Kang, Kyoung-Tak Son, Juhyun Kim, Sung-Hwan Chun, Heoung-Jae Lee, Young Han |
Author_xml | – sequence: 1 givenname: Kyoung-Tak surname: Kang fullname: Kang, Kyoung-Tak organization: Department of Mechanical Engineering, Yonsei University – sequence: 2 givenname: Sung-Hwan surname: Kim fullname: Kim, Sung-Hwan organization: Department of Orthopedic Surgery, Arthroscopy and Joint Research Institute, Yonsei University College of Medicine – sequence: 3 givenname: Juhyun surname: Son fullname: Son, Juhyun organization: Department of Mechanical Engineering, Yonsei University – sequence: 4 givenname: Young Han surname: Lee fullname: Lee, Young Han organization: Department of Radiology, Research Institute of Radiological Science, Medical Convergence Research Institute, and Severance Biomedical Science Institute, Yonsei University College of Medicine – sequence: 5 givenname: Heoung-Jae surname: Chun fullname: Chun, Heoung-Jae email: hjchun@yonsei.ac.kr organization: Department of Mechanical Engineering, Yonsei University |
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Keywords | Subject-specific knee model Weight-bearing MRI Finite element analysis In vivo validation |
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Snippet | In this paper, we present a new validation method for subject-specific finite element (FE) modeling of the knee joint based on in vivo computed tomography (CT)... |
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Title | In vivo evaluation of the subject-specific finite element model for knee joint cartilage contact area |
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