• 제목/요약/키워드: Inplant

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골-임플란트 접촉 양상에 따른 골 변형 연구: 유한요소법적 연구 (Effect of bone-implant contact pattern on bone strain distribution: finite element method study)

  • 유동기;김성균;곽재영;김진흠;허성주
    • 대한치과보철학회지
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    • 제49권3호
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    • pp.214-221
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    • 2011
  • 연구 목적: 기존 대부분의 유한요소 연구에서는 100%의 골-임플란트 접촉을 가정하여 왔으나 인간사체연구(human retrieval study)에서는 골-임플란트 부착비율이 20-80%라고 보고되었다. 본 연구에서는 비선형 삼차원 유한요소법을 이용하여 실제적인 골-임플란트 접촉을 재현하기 위해 무작위 골접촉 양상을 비교연구하고자 하였다. 연구 재료 및 방법: 컴퓨터단층촬영에서 얻은 영상을 근거로 하여 제작한 골모형에 두 가지 디자인의 임플란트(MK III Br${\aa}$nemark$^{(R)}$, Inplant$^{(R)})$를 상악제2소구치에 해당하는 위치에 식립한 모형을 만들었다. 골질은 골형 2로서 Lekholm과 Zarb의 분류를 따랐다. 각 임플란트 디자인마다 두 가지(40%, 70%)의골-임플란트 접촉비율을 가정하였다. 각디자인과 골접촉율마다 5개의 모형을 제작하여 총 40 개의 모형을 만들었다. 이골-임플란트 접촉을 무작위 섞기방식(random shuffle method)으로 하였고 피질골과 해면골을 다 포함하여 골유착을 시킨 군(wholly randomized osseointegration; W)과 피질골과 해면골을 분리하여 골접촉시키기 위해서 각 0.75 mm마다 무작위 골접촉을 시킨 군(segmentally randomized osseointegration; S)을 비교연구하였다. 결과: 골-임플란트 접촉율이나 임플란트 디자인에 상관없이 W군과 S군 간 maximum von Mises strain의 평균에 있어서 유의성 있는 차이가 없었다(P=.939). 골-임플란트 접촉율이40%보다70%가 von Mises strain이 유의하게 낮았다(P=.007). 골-임플란트 접촉율이 40%일때는 Inplant$^{(R)}$과 MK III Br${\aa}$nemark$^{(R)}$의 변형율 간에는 유의성 있는 차이가 없었으나(P=.116), 골-임플란트 접촉율이 70%일때 Inplant$^{(R)}$에서는 $4886{\pm}1034\;{\mu}m/m$, MK III Br${\aa}$nemark$^{(R)}$에서는 $7134{\pm}1232\;{\mu}m/m$로서 Inplant$^{(R)}$의 von Mises strain이MK III Br${\aa}$nemark$^{(R)}$의 것보다 유의하게 낮았다(P<.0001). 결론: 골-임플란트 접촉을 가정함에 있어서 무작위 섞기방식(random shuffle method)을 이용하여 임플란트 전체에 대해서나 피질골과 해면골을 분리하여 무작위 골-임플란트 접촉을 시키든 간에 통계적으로 유의한 차이가 없어서 표본의 크기에 상관없이 둘 다 유효한 방법이라 할 수 있었다.

The change of rotational freedom following different insertion torques in three implant systems with implant driver

  • Kwon, Joo-Hyun;Han, Chong-Hyun;Kim, Sun-Jai;Chang, Jae-Seung
    • The Journal of Advanced Prosthodontics
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    • 제1권1호
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    • pp.37-40
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    • 2009
  • STATEMENT OF PROBLEM. Implant drivers are getting popular in clinical dentistry. Unlike to implant systems with external hex connection, implant drivers directly engage the implant/abutment interface. The deformation of the implant/abutment interface can be introduced while placing an implant with its implant driver in clinical situations. PURPOSE. This study evaluated the change of rotational freedom between an implant and its abutment after application of different insertion torques. MATERIAL AND METHODS. Three kinds of internal connection implants were utilized for the current study($4.5{\times}12\;mm$ Xive, $4.3{\times}11.5\;mm$ Inplant Magicgrip, $4.3{\times}12\;mm$ Implantium MF). An EstheticBase, a 2-piece top, a Dual abutment was used for its corresponding implant system. The rotational freedom between an implant and its abutment were measured before and after applying 45, 100 Ncm insertion torque. Repeated measures ANOVA was used for statistical analysis. RESULTS. Under 45 Ncm insertion torque, the rotational freedom between an implant and its abutment was significantly increased in Xive(P = .003). However, no significant change was noted in Inplant Magicgrip and Implantium MF. Under 100 Ncm torque, both in Xive(P = .0005) and Implatium MF(P = .03) resulted in significantly increased rotational freedom between the implant and its abutment. DISCUSSION. The design of the implant/implant driver interface effectively prevented the deformation of implant/abutment interface. Little change was noted in the rotational freedom between an implant and its abutment, even though the insertion torque was far beyond clinical application. CONCLUSIONS. The implant/abutment joint of internally connecting implants were quite stable under insertion torque in clinical situation.

다양한 마이크로쓰레드(Micro thread)의 개수를 가지는 임플란트의 상부구조물 형상과 하중조건에 따른 3차원 유한요소해석을 이용한 하악골의 응력분포에 관한 연구 (Three-dimensional Stress Analysis of Implant Systems with Micro Threads in the Maxillary Bone)

  • 신하식;한종현;이수홍;전흥재
    • 한국정밀공학회지
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    • 제22권3호
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    • pp.179-186
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    • 2005
  • A comparative study of stress distributions in the maxillary bone with three different types of abutment was conducted. Finite element analysis was adopted to determine stress generated in the bone with the different implant systems with micro threads (Onebody type implant, Internal type implant, and External type implant). It was found that the types of abutments and the number of micro threads have significant influence on the stress distribution in the maxillary bone. They were due to the difference in the load transfer mechanism and the size of contact area between abutment and fixture. Also the maximum effective stress in the maxillary bone was increased with increasing inclination angle of load. It was concluded that the maximum effective stress in the bone was the lowest by the internal implant among the maximum effective stresses by other two types of implants and by appropriate number of micro threads, and that the specific number of micro thread was existed to decrease the maximum effective stress in the maxillary bone due to different implant systems and loading conditions.

임프란트의 상부구조물 형상과 하중조건에 따른 3차원 유한요소해석을 이용한 하악골의 응력분포에 관한 연구 (THREE-DIMENSIONAL STRESS ANALYSIS OF IMPLANT SYSTEMS IN THE MANDIBULAR BONE WITH VARIOUS ABUTMENT TYPES AND LOADING CONDITIONS)

  • 신하식;전흥재;한종현;이수홍
    • 대한치과보철학회지
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    • 제41권5호
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    • pp.617-625
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    • 2003
  • Statement of problem : There are many studies focused on the effect of shape of futures on stress distribution in the mandibular bone. However, there are no studies focused on the effect of the abutment types on stress distribution in mandibular bone. Purpose : The purpose of this study is to investigate the effect of three different abutment types on the stress distributions in the mandibular bone due to various loads by performing finite element analysis. Material and method : Three different implant systems produced by Warantec (Seoul, Korea), were modeled to study the effect of abutment types on the stress distribution in the mandibular bone. The three implant systems are classified into oneplant (Oneplant, OP-TH-S11.5). internal implant (Inplant, IO-S11.5) and external implant (Hexplant, EH-S11.5). All abutments were made of titanium grade ELI. and all fixtures were made of titanium grade IV. The mandibular bone used in this study is constituted of compact and spongeous bone assumed to be homogeneous, isotropic and linearly elastic. A comparative study of stress distributions in the mandibular bone with three different types of abutment was conducted. Results : It was found that the types of abutments have significant influence on the stress distribution in the mandibular bone. It was due to difference in the load transfer mechanism and the size of contact area between abutment and fixture. Also the maximum effective stress in the mandibular bone was increased with the increase of inclination angle of load. Conclusion : It was concluded that the maximum effective stress in the bone by the internal implant was the lowest among the maximum effective stresses by other two types.

하악 부분 무치악 환자의 골유착성 임플랜트 주위 연조직에 관한 연구 (The study of the peri-inplant soft tissue around osseointegrated implants in partial edentulous patients)

  • 정근식;임성빈;정진형
    • Journal of Periodontal and Implant Science
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    • 제27권3호
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    • pp.561-573
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    • 1997
  • The keratinized mucosa around the implant is an important key in health of soft tissue and hard tissue. The purpose of this study is showed that the keratinized mucosa is associated with the keratinized mucosa index, plaque index, gingival index, probing depth. which is investigated to observing the peri-implant mucosa of mandibular partial edentulous patuent using periodontal parameter by previously published paper. It was estimated 6 site with regard to 80 fixture for 28 person, and the average age is 46.8. Each estimation is the order of less trauma, that is, plaque index, keratinized mucosa index, gingival index and probing depth. In this study, statstically analyzed treatment is used for Spss V 7.0 for Windows(Spss Inc, USA). The Kruskal Walis Test is used to compare the amount of the keratinized mucosa is into the $0{\sim}3$ index, with plaque index, gingival index and probing depth. Mann-whitney Test is used to interpreate the relation of plaque index and probing depth, which is showed significant difference. The Result are as follows 1. The kertinized mucosa index 3 amounts to 47.7%, which is much higher than the other indices and the index order is followed 3, 1, 2 and O. 2. The plaque index 1 amounts to 61.7%, which is much higher than the other indices and the index order is followed 1, 2, 3 and O. The plaque index 0 is significant to each of index(P<0.05). The plaque index is decrease as the keratinized mucosa index is increased. 3. The probing depth for 2mm, 1mm, 3mm is 48.9%, 23.5%, 16.8% respectively, which is most occupied. The probing depth 2mm and 3mm for the keratinized mucosa index is significant(P<0.05). The probing index is decreased as the keratinized mucosa index is increased. 4. The gingival index 0 amounts to 58.0%, which is much higher than the other indices and the index order is followed 0, 1, 2 and 3.

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