• Title/Summary/Keyword: Biomechanical evaluation

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허혈성 승모판막 폐쇄부전의 생체역학적 특성 분석: 비대칭적 유두근 변위와 판륜 확장의 영향 (Evaluation of the Biomechanical Characteristics of Ischemic Mitral Regurgitation: Effects of Asymmetric Papillary Muscle Displacement and Annular Dilation)

  • 홍우재;김형건
    • 한국가시화정보학회지
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    • 제16권2호
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    • pp.31-37
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    • 2018
  • Ischemic mitral regurgitation (IMR) is the primary mitral valve (MV) pathology in the aftermath of myocardial infarction as a consequence of regional left ventricular (LV) remodeling. We investigated the effect of asymmetric papillary muscle (PM) displacement and annular dilation on IMR development. Virtual MV modeling was performed to create a normal human MV. Asymmetric PM displacement, asymmetric annular dilation, and the combination of these two pathologic characteristics were modeled. Dynamic finite element evaluation of MV function was performed across the complete cardiac cycle for the normal and three different IMR MV models. While the normal MV demonstrated complete leaflet coaptation, each pathologic MV model clearly revealed deteriorated leaflet coaptation and abnormal stress distributions. The pathologic MV model having both asymmetric PM displacement and annular dilation showed the worst leaflet malcoaptation. Simulation-based biomechanical evaluation of post-ischemic LV remodeling provides an excellent tool to better understand the pathophysiologic mechanism of IMR development.

요추부 극돌기간 고정기구의 생체역학적 해석 (Biomechanical Analysis of Lumbar Interspinous Process Fixators)

  • 허순;박정홍;이성재;손권
    • 한국정밀공학회지
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    • 제23권3호
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    • pp.195-202
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    • 2006
  • The degenerative lumbar spinal stenosis (DLSS) is a disease inducing low back pain, leg pain, convulsion. numbness, and neurogenic claudication from compression of nerve root. Intervertebra fixation was reported to increase the degeneration of neighbor lesion after treatment. Recently, a new surgical technique of inserting a fixator between interspinous processes has been introduced. The purpose of this study is to design the interspinous process fixator with flexibility to complement the trouble of using fixator in DLSS. This study evaluated the existing fixator through the mechanical test and modified it using the finite element analysis (FEA). The evaluation was based on the displacement, stiffness and von-Mises stress obtained from the mechanical test and calculated from the FEA in the biomechanical loading condition. Effects of variation in length and thickness were investigated to design an optimal fixator. Three prototypes were manufactured using FEA results. Mechanical tests under the biomechanical loading condition were performed to select the best one from these three. The selected fixator increased flexiblity by 32.9%.

Biomechanical evaluation of a bioactive artificial anterior cruciate ligament

  • Guerard, Sandra;Manassero, Mathieu;Viateau, Veronique;Migonney, Veronique;Skalli, Wafa;Mitton, David
    • Advances in biomechanics and applications
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    • 제1권4호
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    • pp.239-252
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    • 2014
  • This study aimed to assess the biomechanical performance of a new generation of artificial ligament, which can be considered "bioactive" and "biointegrated," implanted in sheep. Thirty sheep were implanted: 15 sheep received the artificial ligament grafted with a bioactive polymer (grafted) and 15 received the artificial ligament without a bioactive polymer (non-grafted). The animals were sacrificed 3 or 12 months after implantation. The knee kinematics, namely flexion-extension, anterior drawer, and varus-valgus tests, were evaluated using a fully characterized custom-made device. Afterward, the specimens were tested under uniaxial tension until failure. The flexion-extension showed significant differences between (grafted or non-grafted) artificial and native ligaments 3 months after implantation. This difference became non-significant 12 months postoperatively. The anterior tibial drawer was significantly increased 3 months after implantation and remained significantly different only for non-grafted ligament 12 months after implantation. Twelve months after implantation, the differences between grafted and non-grafted ligament biomechanical properties were significant in terms of stiffness. In terms of load to failure, grafted ligaments seem to have had slightly better performance than non-grafted ligaments 12 months postoperatively. Overall these results suggest that grafted artificial ligaments have slightly better biomechanical characteristics than non-grafted artificial ligaments 12 months after implantation in sheep.

경골 내 변형률 및 응력 분포 특성 분석을 통한 새로이 개발된 재치환용 인공슬관절의 생체역학적 안정성 평가: 유한요소해석 (Evaluation of Biomechanical Stability of Newly Developed Revision Total Knee Arthroplasty through Strain and Stress Distribution Analysis within the Tibia: Finite Element Analysis)

  • 한바울;장영웅;유의식;김정성;김한성;임도형
    • 대한의용생체공학회:의공학회지
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    • 제34권1호
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    • pp.14-23
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    • 2013
  • In this study, biomechanical stability of the newly developed revision total knee arthroplasty (rTKA) was evaluated through strain and stress distribution analysis within the implanted proximal tibia using a three-dimensional finite element (FE) analysis. 2000N of compressive load (about 3 times body weight) was applied to the condyle surface on spacer, sharing by the medial (60%) and lateral (40%) condyles simulating a stance phase before toe-off. The results showed that PVMS within the revision total knee arthroplasty and the proximal tibia were less than yield strength considering safe factor 4.0 (rTKA: less than 10%, Cortical bone: less than 70%, Cancellous bone: less than 70%). The materials composed of them and the strain and stress distributions within the proximal tibia were generally well matched with those of a traditional revision total knee arthoplasty (Scorpio TS revision system, Stryker Corp., Michigan, USA) without the critical damage strain and stress, which may reduce the capacity for bone remodeling, leading to bone degeneration. This study may be useful to design parameter improvement of the revision total knee arthoplasty in biomechanical stability point of view beyond structural stability of revision total knee arthoplasty itself.

척추성형술 시술에서 PMMA주입에 대한 흉추의 생체역학적 평가 (Biomechanical Evaluation of PMMA Injection in Vertebroplasty)

  • 이준형;채수원;이태수;서중근;박정율;김상돈;이관행
    • 대한의용생체공학회:의공학회지
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    • 제25권1호
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    • pp.27-32
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    • 2004
  • 본 논문에서는 골다공증성 척추압박골절에 대한 척추성형술시 골강화제인 PMMA 주입방법을 제안하였다. 척추성형술의 정량적 분석을 위해서는 유한요소해석을 사용하였으며 1m간격의 척추체 CT를 바탕으로 보다 정교한 척추체 모델을 제시함으로써, 단순화된 척추의 기하학적 형상과 간단한 재료 물성치를 사용하는 기존의 연구의 한계를 극복하고자 하였다. 본 연구 결과를 토대로 추체내 망상골에 주입되는 PMMA의 주입형태, 주입위치를 정량적으로 평가하여 이상적인 수술방법을 제시하였다. PMMA의 구입위치는 망상골의 앞쪽-위쪽에 많은 양이 집중하여 주입되었을 때, 가장 효율적으로 추체를 보완해 주는 것으로 나타났다.

자동차 조립 작업에서의 직업성 요추부염좌의 위험도에 대한평가 (An Evaluation of Automobile Assembly Jobs for Low Back Injury)

  • 박동현;허국강
    • 한국산업보건학회지
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    • 제10권2호
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    • pp.40-52
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    • 2000
  • The aim of this study was to evaluate the prevailing ergonomic conditions regarding low back injury in an assembly factory, In this study, analytic biomechanical model and NIOSH guidelines were applied to evaluate risk levels of low back injury for automobile assembly jobs. Total of 246 workers were analysed. There were 10 jobs with greater back compressive forces than 350kg at L5/S1. Also there were 44 jobs over Action Limit in terms of 1981 NIOSH guidelines. This could in part be explained by the ergonomic conditions of the companys analysed as not hazardous, with a relatively low duration of 'combined' extreme work posture. However, more ergonomic intervention could be done based on those results.

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성인 대퇴골두 제 1압박 골소주군의 미세구조와 생역학적 특성의 상관관계 및 유한요소해석법의 유용성 평가 (Evaluation of the Usefulness of Finite Element Analysis and Statistical Correlation of Micro-structural and Biomechanical Property of the Primary Compressive Trabecular System In Adult Femur)

  • 백명현;원예연;최문권;윤태봉
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 추계학술대회 논문집
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    • pp.555-556
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    • 2006
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