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$XiVE^{(R)}$ 임플랜트 시스템에서 고정체보다 작은 직경의 지대주 장착이 경부 피질골 응력에 미치는 효과에 대한 유한요소해석적 연구
유원재,이규복,Yu Won-Jae,Lee Kyu-Bok 대한치과보철학회 2005 대한치과보철학회지 Vol.43 No.1
Statement of problem. Higher stresses at the cervical bone around dental implants have been seen as a primary cause of the bone resorption at the site. Purpose : To determine the possibility of stress reduction by assembly of different abutment and implant in diameters. Material and methods. Abutments of several different diameters assembled on the top of XiVE$^{(R)}$ implants were axisymmetrically modeled for a series of finite element analyses. Abutments of 3.4, 3.8, 4.5, and 5.5 mm diameters were assumed to be sit on implants of the same or bigger diameters. All the abutments with an exception of 3.4mm dia, are technically possible to be assembled on bigger implants. Main consideration was given to the stresses at the cervical cortical bone induced by loads of parallel to the implant axis. Results and conclusions. 1. Higher stresses were observed at the cervical area of all the models of the same diameters of abutment and future. The peak stresses, which were shown to be a function of the fixture diameter, were from 1-1.85MPa. 2. Difference in the diameters of the abutments and the implants actually reduced the cervical bone stresses. 3. Downsizing of the abutment by one step resulted in 0.1MPa (5%) reduction of the stresses. In light of the relatively lower bone stress, however, this amount of stress reduction was decided to be biomechanically insignificant.
유한요소 모사해석을 통한 임플란트 나사산 형상이 치밀골의 식립응력에 미치는 영향 분석
유원재,하석준,조진현,Yu, Won-Jae,Ha, Seok-Joon,Cho, Jin-Hyun 대한치과보철학회 2014 대한치과보철학회지 Vol.52 No.4
목적: 임플란트가 식립되는 동적과정을 유한요소해석으로 모사하여, 임플란트 나사형상 차이가 변연골의 식립 응력발생에 미치는 영향을 조사하고자 한다. 재료 및 방법: 코어직경 3.5 mm, 매식부 길이 10 mm인 Straumann 임플란트 몸체 외형에 서로 다른 4종의 나사산이 부여된 가상의 임플란트 모델 4개를 CAD 프로그램을 이용하여 각각 제작하였다. 4종 나사산은 buttress 형, v-자 형, reverse buttress 형, square 형이며, 나사산의 높이와 피치는 0.3 mm와 1.0 mm로 모두 동일하다. 각 임플란트가 3.8 mm pilot hole을 갖는, 1.2 mm 두께 치밀골에 식립되는 과정을 $DEFORM^{TM}$ 3D (ver. 6, SFTC, Columbus, OH, USA) 프로그램을 사용하여 모사/해석하였으며, 식립이 진행되는 과정에 인접골에 생성/누적되는 응력(식립응력)을 비교 분석하였다. 결과: 임플란트 식립 초기, 그 하단부가 pilot hole 내로 진입하며 나사산이 골벽을 압박/변형시키는 단계에서 식립 토오크와 응력이 급격히 발생하였으며 그 이후에 토오크와 응력이 모두 감소하는 변화를 보였다. 식립 응력은 임플란트 나사산 형상에 따라 현저한 차이가 있었으며, v-자형 나사산 경우가 가장 낮았고, square 형의 경우가 가장 높았다. 나사산 차이가 인접골 응력에 미치는 영향은 나사산 첨부 보다는 기저부에 인접한 위치에서 더 현저하였다. 결론: 임플란트 식립응력을 낮추어 골융합에 유리한 환경을 조성하는데는 나사산 첨부가 상대적으로 날카로운 v-자형 나사산이 유리하다. Purpose: The aim of this study was to investigate the effect of implant thread profile on the marginal bone stresses which develop during implant insertion. Materials and methods: Four experimental implants were created by placing four different thread systems on the body ($4.1mm{\times}10mm$) of the ITI standard implant. The thread types studied in this study included the buttress, v-shape, reverse buttress, and square shape threads. In order to examine the insertion stress generation, 3D dynamic finite element analysis was performed which simulated the insertion process of implants into a 1.2 mm thick cortical bone plate (containing 3.5 mm pilot hole) using a PC-based DEFORM 3D (ver 6.1, SFTC, Columbus, OH, USA) program. Results: Insertion stresses higher than human cortical bone developed around the implants. The level of insertion stresses was much different depending on the thread. Stress level was lowest near the v-shape thread, and highest near the square shaped thread. Difference in the interfacial bone stress level was more noticeable near the valley than the tip of the threads. Conclusion: Among the four threads, the v-shape thread was turned out to minimize the insertion stress level and thereby create better conditions for implant osseointegration.
GNU Radio 및 USRP 기반 무선 시각 동기 정확도 평가
유원재(Won Jae Yoo),최광호(Kwang Ho Choi),임준후(JoonHoo Lim),김라우(La Woo Kim),이유담(Yu Dam Lee),이형근(Hyung Keun Lee) 대한전자공학회 2017 대한전자공학회 학술대회 Vol.2017 No.6
Time synchronization is purposed to make the different time realizations of many objects as same as possible. As an initial study on time synchronization, this paper proposes a time synchronization method utilizing SDR(Software Defined Radio). For the purpose, reference pulses are generated and transmitted by an USRP(Universal Software Radio Peripheral) based on GNU Radio. The other USRPs are synchronized to the reference pulses received. To evaluate the accuracy of time synchronization, sampled data and synchronized time of each USRP are compared.