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골시멘트 특성 및 스템 형상에 따른 시멘트 타입 인공관절의 생체역학적 평가
박흥석,전흥재,윤인찬,이문규,최귀원,Park, H.S.,Chun, H.J.,Youn, I.C.,Lee, M.K.,Choi, K.W. 대한의용생체공학회 2008 의공학회지 Vol.29 No.3
The total hip replacement (THR) has been used as the most effective way to restore the function of damaged hip joint. However, various factors have caused some side effects after the THR. Unfortunately, the success of the THR have been decided only by the proficiency of surgeons so far. Hence, It is necessary to find the way to minimize the side effect caused by those factors. The purpose of this study was to suggest the definite data, which can be used to design and choose the optimal hip implant. Using finite element analysis (FEA), the biomechanical condition of bone cement was evaluated. Stress patterns were analyzed in three conditions: cement mantle, procimal femur and stem-cement contact surface. Additionally, micro-motion was analyzed in the stem-cement contact surface. The 3-D femur model was reconstructed from 2-D computerized tomography (CT) images. Raw CT images were preprocessed by image processing technique (i.e. edge detection). In this study, automated edge detection system was created by MATLAB coding for effective and rapid image processing. The 3-D femur model was reconstructed based on anatomical parameters. The stem shape was designed using that parameters. The analysis of the finite element models was performed with the variation of parameters. The biomechanical influence of each parameter was analyzed and derived optimal parameters. Moreover, the results of FE A using commercial stem model (Zimmer's V erSys) were similar to the results of stem model that was used in this study. Through the study, the improved designs and optimal factors for clinical application were suggested. We expect that the results can suggest solutions to minimize various side effects.
Cement Type 맞춤형 인공고관절의 설계 변수 변화에 따른 Cement 두께 변화와 이에 대한 응력 분석
박흥석,전흥재,윤인찬,이문규,서덕찬,최귀원,Park, Heung-Seok,Chun, Heoung-Jae,Youn, In-Chan,Lee, Moon-Kyu,Seo, Duck-Chan,Choi, Kui-Won 대한의용생체공학회 2006 의공학회지 Vol.27 No.6
The choice of suitable hip implant is one of important factors in the total hip arthroplasty (THA). In clinical view point, an improper adaptation of hip implant might induce abnormal stress distribution to the bone, which can shorten the lifespan of replaced hip implant. Currently, interest in the custom-designed hip implants has increased as studies reveal the significance of geometric shape of patient's femur in modeling and designing the implants. In this study, we have developed custom-designed hip implant models with various sizes, and analyzed the stress distribution in the bone and bone cement using the Finite Element Method. It was found that minimizing the gap between implant stem and femoral cavity is crucial to minimize the stress concentration in the bone.
박흥석,Park, Heung-Seok 한국LP가스공업협회 2006 LP가스 Vol.101 No.-
에너지 위기시 가스공급 안정을 도모하기 위해 LNG와 LPG의 균형발전을 기본 축으로 LPG의 유통체계 개선, 신규수요 개발 등 LPG산업 발전정책을 지속적으로 추진해 나가고자 한다.
박준모(Jun Mo Park),김형우(Hyeong Woo Kim),박흥석(Hung Suck Park) 大韓環境工學會 2014 대한환경공학회지 Vol.36 No.12
본 연구는 국내에서 2005년부터 산업통상자원부에서 산업단지의 환경을 개선하기 위하여 추진하여 온 생태산업단지구축사업의 전략과 경제적/환경적 성과를 정량적으로 평가하고, 향후 발전방향에 대하여 고찰하였다. 우선 산업공생에 기반을 둔 생태산업단지의 개념을 소개하고, 국내 생태산업단지의 추진배경과 사업수행절차에 대하여 설명하였다. 또한 산업공생 사업의 전후의 경제적, 환경적 성과평가 방법론을 제안하고, 사업화된 과제를 대상으로 성과평가를 실시하였다. 우리나라생태산업단지 구축사업은 한국산업단지공단이 주관하여 현재 전국에 9개 지역사업단을 운영 중에 있다. 2005년부터 2013년까지 449개의 아이템을 발굴하여 296개가 선정되어 수행되었으며, 이 중 244개의 과제가 완료되었다. 완료된 과제 중 118개의 과제가 사업화되어 사업화 성공률이 약 48%로 나타났다. 사업화된 과제를 통하여 약 3,111.1억 원/년의 경제적 효과와 폐기물/부산물 828,112.6톤/년, 용수/폐수 215,517.0톤/년, 에너지 250,474.5 toe/년, 온실가스 1,107,189.1 tCO₂/년의 사용 및 배출을 저감하는 환경적 효과를 얻었다. 이상의 결과로부터 산업공생 원리를 이용하한 생태산업단지 구축사업은 산업단지의 생태효율성 향상으로 환경과 경제를 조화시킬 수 있음을 실질적으로 확인시켜주었다. 하지만, 관계 부처 간 협조와 협력의 부재 및 법과 제도적 한계, 지방자치단체의 요구 증대 및 기업체의 자금문제 등의 장애요인이 존재한다. 따라서 생태산업단지 구축사업이 지속가능한 산업단지 모델로 전국적으로 확대되고, 산업단지 경쟁력 강화와 환경관리를 위한 툴로 발전시키기 위해서는 현재의 장애요인을 해소하기 위한 범부처적, 학제적 접근이 필요함을 보여주었다. This study assesses the strategy and performance of Eco-industrial Park (EIP) initiative implemented by Korea Industrial Complex Corporation (KICOX) with the support of Ministry of Trade, Industry and Energy (MOTIE), Korea since 2005 to 2013 and recommends future directions. After the concept of EIP based on industrial symbiosis (IS) is introduced, the background and implementation procedure of the EIP initiative are described. Then, economic and environmental achievement was assessed. During the project periods (2005-2013), 449 industrial symbiosis project were explored, among which 296 projects have been implemented. Among (Of these 296 projects,) them, 244 projects have been completed in which 118 projects have been commercialized which shows 48% commercialization rate of the completed projects. Through these commercialized projects, around 311.1 billion won/year of economic benefits and reduction of waste.by-products of 828,113 tons/year, wastewater of 215,517 tons/year, reduction in energy consumption of 250,475 toe/year and GHG emission reduction of 1,107,189 tCO₂/year were achieved. This results confirmed that EIP initiative based on industrial symbiosis can enhance eco-efficiency of industrial parks and harmonize economy and environment. However, there are obstacles like absence of interagency coordination and cooperation, laws and institutional barriers, increased demand for local governments, funding for project investment. Thus, to utilize EIP initiative as a strategic tool for competiveness and environmental management of industrial parks, it needs intergovernmental collaboration and interdisciplinary approach to lower barrier in implementation.
FEM을 이용한 cement type hip implant의 stem 단면형상에 따른 응력분석
박흥석(H. S. Park),이문규(M. K. Lee),전흥재(H. J. Chun),최귀원(K. W. Choi) 한국정밀공학회 2006 한국정밀공학회 학술발표대회 논문집 Vol.2006 No.5월
The choice of suitable hip implant is one of important factors in total hip replacement (THR). In clinical view points, improper adaptation of hip implant might cause abnormal stress distribution to the bone, which can shorten the lifespan of replaced hip implant. Currently, interest in custom-designed hip implants has increased as studies reveals the importance of geometric shape of patient"s femur in modeling and designing custom hip implants. In this study, we have developed the custom-designed hip implant models with various sizes in hip implant, and the stress distribution in the bone was analyzed using Finite Elements methods. It was found that minimizing the gap between implant stem and femoral cavity is crucial to minimize stress concentration in the bone.