• 제목/요약/키워드: Bone contact

검색결과 379건 처리시간 0.024초

Effect of implant surface microtopography by hydroxyapatite grit-blasting on adhesion, proliferation, and differentiation of osteoblast-like cell line, MG-63

  • Park, Sung-Jae;Bae, Sang-Bum;Kim, Su-Kyoung;Eom, Tae-Gwan;Song, Seung-Il
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제37권3호
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    • pp.214-224
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    • 2011
  • Objective: This study examined the potential of the in vitro osteogenesis of microtopographically modified surfaces, RBM (resorbable blasting media) surfaces, which generate hydroxyapatite grit-blasting. Methods: RBM surfaces were modified hydroxyapatite grit-blasting to produce microtopographically modified surfaces and the surface morphology, roughness or elements were examined. To investigate the potential of the in vitro osteogenesis, the osteoblastic cell adhesion, proliferation, and differentiation were examined using the human osteoblast-like cell line, MG-63 cells. Osteoblastic cell proliferation was examined as a function of time. In addition, osteoblastic cell differentiation was verified using four different methods of an ALP activity assay, a mineralization assay using alizarin red-s staining, and gene expression of osteoblastic differentiation marker using RT-PCR or ELISA. Results: Osteoblastic cell adhesion, proliferation and ALP activity was elevated on the RBM surfaces compared to the machined group. The cells exhibited a high level of gene expression of the osteoblastic differentiation makers (osteonectin, type I collagen, Runx-2, osterix). imilar data was represented in the ELISA produced similar results in that the RBM surface increased the level of osteocalcin, osteopontin, TGF-beta1 and PGE2 secretion, which was known to stimulate the osteogenesis. Moreover, alizarin red-s staining revealed significantly more mineralized nodules on the RBM surfaces than the machined discs. Conclusion: RBM surfaces modified with hydroxyapatite grit-blasting stimulate the in vitro osteogenesis of MG-63 cells and may accelerate bone formation and increase bone-implant contact.

Techniques for dental implant nanosurface modifications

  • Pachauri, Preeti;Bathala, Lakshmana Rao;Sangur, Rajashekar
    • The Journal of Advanced Prosthodontics
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    • 제6권6호
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    • pp.498-504
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    • 2014
  • PURPOSE. Dental implant has gained clinical success over last decade with the major drawback related to osseointegration as properties of metal (Titanium) are different from human bone. Currently implant procedures include endosseous type of dental implants with nanoscale surface characteristics. The objective of this review article is to summarize the role of nanotopography on titanium dental implant surfaces in order to improve osseointegration and various techniques that can generate nanoscale topographic features to titanium implants. MATERIALS AND METHODS. A systematic electronic search of English language peer reviewed dental literature was performed for articles published between December 1987 to January 2012. Search was conducted in Medline, PubMed and Google scholar supplemented by hand searching of selected journals. 101 articles were assigned to full text analysis. Articles were selected according to inclusion and exclusion criterion. All articles were screened according to inclusion standard. 39 articles were included in the analysis. RESULTS. Out of 39 studies, seven studies demonstrated that bone implant contact increases with increase in surface roughness. Five studies showed comparative evaluation of techniques producing microtopography and nanotopography. Eight studies concluded that osteoblasts preferably adhere to nano structure as compared to smooth surface. Six studies illustrated that nanotopography modify implant surface and their properties. Thirteen studies described techniques to produce nano roughness. CONCLUSION. Modification of dental osseous implants at nanoscale level produced by various techniques can alter biological responses that may improve osseointegration and dental implant procedures.

Newly Developed BioDegradable Mg Alloys and Its Biomedical Applications

  • 석현광;김유찬;;차필령;조성윤;양석조
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2012년도 춘계학술발표대회
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    • pp.55.2-55.2
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    • 2012
  • Intensive theoretical and experimental studies have been carried out at Korean Institute of Science and Technology (KIST) on controlling the bio absorbing rate of the Mg alloys with high mechanical strength through tailoring of electrochemical potential. Key technology for retarding the corrosion of the Mg alloys is to equalize the corrosion potentials of the constituent phases in the alloys, which prevented the formation of Galvanic circuit between the constituent phases resulting in remarkable reduction of corrosion rate. By thermodynamic consideration, the possible phases of a given alloy system were identified and their work functions, which are related to their corrosion potentials, were calculated by the first principle calculation. The designed alloys, of which the constituent phases have similar work function, were fabricated by clean melting and extrusion system. The newly developed Mg alloys named as KISTUI-MG showed much lower corrosion rate as well as higher strength than previously developed Mg alloys. Biocompatibility and feasibility of the Mg alloys as orthopedic implant materials were evaluated by in vitro cell viability test, in vitro degradation test of mechanical strength during bio-corrosion, in vivo implantation and continuous observation of the implant during in vivo absorbing procedures. Moreover, the cells attached on the Mg alloys was observed using cryo-FIB (focused ion beam) system without the distortion of cell morphology and its organ through the removal of drying steps essential for the preparation of normal SEM/TEM samples. Our Mg alloys showed excellent biocompatibility satisfying the regulations required for biomedical application without evident hydrogen evolution when it implanted into the muscle, inter spine disk, as well as condyle bone of rat and well contact interface with bone tissue when it was implanted into rat condyle.

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Unilateral maxillary central incisor root resorption after orthodontic treatment for Angle Class II, division 1 malocclusion with significant maxillary midline deviation: A possible correlation with root proximity to the incisive canal

  • Imamura, Toshihiro;Uesugi, Shunsuke;Ono, Takashi
    • 대한치과교정학회지
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    • 제50권3호
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    • pp.216-226
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    • 2020
  • Root resorption can be caused by several factors, including contact with the cortical bone. Here we report a case involving a 21-year-old female with Angle Class II, division 1 malocclusion who exhibited significant root resorption in the maxillary right central incisor after orthodontic treatment. The patient presented with significant left-sided deviation of the maxillary incisors due to lingual dislocation of the left lateral incisor and a Class II molar relationship. Cephalometric analysis demonstrated a Class I skeletal relationship (A point-nasion-B point, 2.5°) and proclined maxillary anterior teeth (upper incisor to sella-nasion plane angle, 113.4°). The primary treatment objectives were the achievement of stable occlusion with midline agreement between the maxillary and mandibular dentitions and appropriate maxillary anterior tooth axes and molar relationship. A panoramic radiograph obtained after active treatment showed significant root resorption in the maxillary right central incisor; therefore, we performed cone-beam computed tomography, which confirmed root resorption along the cortical bone around the incisive canal. The findings from this case, where different degrees of root resorption were observed despite comparable degrees of orthodontic movement in the bilateral maxillary central incisors, suggest that the incisive canal could be an inducing factor for root resorption. However, further investigation is necessary to confirm this assumption.

상악측절치 수복을 위한 Cantilever bridge (STRESS ANALYSIS ON THE ALVEOLAR BONE OF CANTILEVER BRIDGES REPLACING MAXILLARY LATERAL INCISOR)

  • 김형수;양홍서
    • 대한치과보철학회지
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    • 제31권3호
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    • pp.303-316
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    • 1993
  • The purpose of this study was to analysis the stress distribution induced by three unit PFM bridges and various cantilever bridges replacing maxillary latersal incisor. The simplified two-dimensional photoelastic models used for this study was contructed in the folio- wing way. CR/R ratio was designed to be 1 : 1, 1 : 1.25 and 1 : 1.5. The pontics of cantilever bridge supported by maxillary canines consisted of wrap-around type, rest-extension type, and simple type. 3-unit PFM bridge was constructed with traditional method. 1kg vertical static load was applied on the center of the incisal edge of the pontic. The stress pattern was examined and recorded by photography. The results obtained were as follows ; 1. The magnitude of stress on the abutment root apex area of a traditional 3-unit bridge was the lowest. 2. The model of cantilevered pontic with a rest showed the relatively well distributed stress around the abutment tooth. The model with simple pontic generated the greatest stress concentration in the supporting structure of the abutment tooth. 3. As the height of bone level reduced, the rotational and vertical force increased around the abutment tooth. 4. The stress concentration of the 3-unit bridges occured on the root apex and stress concentration of the cantilever briage occured on the root apex and cervix area, 5. In the case of the cantilever bridge, stress concentrated distally on the root apex area of the abutment tooth and additional stress was observed mesially on the upper part of the root. Especially in the case of the simple pontic, was phenomenon was more apparent than the others. 6. Force applied to cantilevered pontic was transmitted to the adjacent central incisor through the contact surface. Stress was markedly observed on the mesial cervix area in the case of simple pontic and on the root apex area in the case of wrap-around type and rest-extension type.

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돼지의 경골에 식립된 지르코니아 임플란트의 골유착에 관한 연구 (Osseointegration of zirconia implant in the tibia of pigs)

  • 김이경;조인호
    • 대한치과보철학회지
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    • 제51권3호
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    • pp.190-198
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    • 2013
  • 연구 목적: 최근 지르코니아 임플란트가 크게 향상된 물리적 성질, 자연치와 유사한 색조, 뛰어난 생체 적합성으로 주목 받고 있다. 이에 본 연구에서는 국내에서 시판되고 있는 상용 타이타늄 임플란트와 개발 단계인 지르코니아 임플란트의 골유착을 비교 연구하였다. 연구 재료 및 방법: 상용 타이타늄 임플란트(T 군)와 기계 절삭된 나사형 지르코니아 임플란트(Z 군), 기계 절삭 후 알루미나 샌드 블라스팅으로 표면 처리된 나사형 지르코니아 임플란트(ZS 군)의 표면 거칠기를 측정한 후 6마리 돼지의 좌, 우측 하지 경골에 식립하여 1주, 4주, 12주에 각각 희생하여 Periotest values (PTVs) 측정, 조직학적 측정 및 조직 계측학적 측정, 주사 전자 현미경 관찰을 시행하였다. 평균 표면 거칠기와 PTVs, 조직계측학적 측정 결과는 일원분산분석을 통해 통계 처리되었다(${\alpha}=.05$). 결과:각 군 임플란트의 표면 거칠기를 측정한 결과 T 군이 Z 군, ZS 군에 비해 더 유의하게 높은 평균 표면 거칠기 값을 보였다. PTVs는 측정 시기 모두에서 T 군이 상대적으로 낮은 값을 보였으나 각 군에 따라, 시기에 따라 모두 통계적으로 유의하지는 않았다. 식립 1주차 골접촉율 측정 결과 Z 군이 T 군, ZS 군에 비해 유의성 있게 높았고, 골면적율은 T 군, Z 군이 ZS 군에 비해 유의성 있게 높았다. 식립 4주차 골접촉율 측정에서 T 군이 Z 군, ZS 군에 비해 유의성 있게 높았고, 골면적율은 군간 유의한 차가 없었다. 식립 12주차 골접촉율은 T 군, ZS 군, Z 군 순으로 낮아졌고 모든 군간 통계적으로 유의한 차이가 존재하였다. 골면적율은 T 군, ZS 군이 Z 군에 비해 유의성 있게 높았다. 결론: 이상의 결과는 지르코니아 임플란트의 골유착이 타이타늄 임플란트에 비해 부족하며, 상용화를 위해서는 지르코니아 임플란트의 표면 변형에 관한 연구가 더 필요함을 시사한다.

Ti-49.5Ni (at%)합금의 다공성 구조가 뼈 세포 흡착에 미치는 영향 (Effect of Pore Structures of a Ti-49.5Ni (at%) Alloy on Bone Cell Adhesion)

  • 임연민;최정일;강동우;남태현
    • 한국재료학회지
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    • 제22권2호
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    • pp.66-70
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    • 2012
  • Ti-Ni alloys are widely used in numerous biomedical applications (e.g., orthodontics, cardiovascular science, orthopaedics) due to their distinctive thermomechanical and mechanical properties, such as the shape memory effect, superelasticity and low elastic modulus. In order to increase the biocompatibility of Ti-Ni alloys, many surface modification techniques, such as the sol-gel technique, plasma immersion ion implantation (PIII), laser surface melting, plasma spraying, and chemical vapor deposition, have been employed. In this study, a Ti-49.5Ni (at%) alloy was electrochemically etched in 1M $H_2SO_4$+ X (1.5, 2.0, 2.5) wt% HF electrolytes to modify the surface morphology. The morphology, element distribution, crystal structure, roughness and energy of the surface were investigated by scanning electron microscopy (SEM), energy-dispersive Xray spectrometry (EDS), X-ray diffractometry (XRD), atomic force microscopy (AFM) and contact angle analysis. Micro-sized pores were formed on the Ti-49.5Ni (at%) alloy surface by electrochemical etching with 1M $H_2SO_4$+ X (1.5, 2.0, 2.5) wt% HF. The volume fractions of the pores were increased by increasing the concentration of the HF electrolytes. Depending on the HF concentration, different pore sizes, heights, surface roughness levels, and surface energy levels were obtained. To investigate the osteoblast adhesion of the electrochemically etched Ti-49.5Ni (at%) alloy, a MTT test was performed. The degree of osteoblast adhesion was increased at a high concentration of HF-treated surface structures.

임플란트 보철물과 인접치 사이의 식편압입에 관한 임상적 연구 (Clinical study on the food impaction between implant prostheses and adjacent teeth)

  • 신동욱;이진한;김세연;동진근
    • 대한치과보철학회지
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    • 제52권1호
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    • pp.27-33
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    • 2014
  • 연구 목적: 본 연구는 임플란트 보철물과 인접치 사이의 식편압입을 호소하는 환자를 대상으로 각종 임상 자료를 분석하여 식편압입의 임상적 발현 양상을 알아보고자 하였다. 연구 재료 및 방법: 식편압입을 주소로 내원한 보철물 장착이 완료된 임플란트 환자 51명을 대상으로 설문조사와 구강검사를 시행하고 방사선 사진과 모형을 채득하여 식편압입과 관련이 있는 요소를 분석한 결과 다음과 같은 결과를 얻었다. 결과: 1. 식편압입은 하악(39.2%)보다 상악(60.7%)에서 많이 나타났다. 2. 식편압입은 자연치아가 임플란트 보철물의 원심 부위(13.7%)에 있는 경우보다 근심 부위(86.2%)에 있는 경우에 많이 나타났다. 3. 식편압입이 나타난 임플란트 보철물과 그 인접치 사이의 접촉점은 긴밀하지 않은 경우(94.2%)가 대부분이었다. 결론: 임플란트 보철물과 인접치 사이에 식편압입이 일어나지 않기 위해서는 임플란트 보철물과 인접치아가 적절한 긴밀도를 가지고 있어야 하겠다.

Effects of cementless fixation of implant prosthesis: A finite element study

  • Lee, Hyeonjong;Park, Soyeon;Kwon, Kung-Rock;Noh, Gunwoo
    • The Journal of Advanced Prosthodontics
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    • 제11권6호
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    • pp.341-349
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    • 2019
  • PURPOSE. A novel retentive type of implant prosthesis that does not require the use of cement or screw holes has been introduced; however, there are few reports examining the biomechanical aspects of this novel implant. This study aimed to evaluate the biomechanical features of cementless fixation (CLF) implant prostheses. MATERIALS AND METHODS. The test groups of three variations of CLF implant prostheses and a control group of conventional cement-retained (CR) prosthesis were designed three-dimensionally for finite element analysis. The test groups were divided according to the abutment shape and the relining strategy on the inner surface of the implant crown as follows; resin-air hole-full (RAF), resin-air hole (RA), and resin-no air hole (RNA). The von Mises stress and principal stress were used to evaluate the stress values and distributions of the implant components. Contact open values were calculated to analyze the gap formation of the contact surfaces at the abutment-resin and abutment-implant interfaces. The micro-strain values were evaluated for the surrounding bone. RESULTS. Values reflecting the maximum stress on the abutment were as follows (in MPa): RAF, 25.6; RA, 23.4; RNA, 20.0; and CR, 15.8. The value of gap formation was measured from 0.88 to 1.19 ㎛ at the abutment-resin interface and 24.4 to 24.7 ㎛ at the abutment-implant interface. The strain distribution was similar in all cases. CONCLUSION. CLF had no disadvantages in terms of the biomechanical features compared with conventional CR implant prosthesis and could be successfully applied for implant prosthesis.

유합된 하악 영구 중절치와 측절치의 치료에 관한 증례보고 (TREATMENT OF FUSED PERMANENT MANDIBULAR LATERAL AND CENTRAL INCISORS: REPORTS OF CASES)

  • 한정재;김대업;이광희
    • 대한소아치과학회지
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    • 제24권4호
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    • pp.795-804
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    • 1997
  • Developmental dental morphological anomalies are fusion, gemination, twinning, concrescence and etc. They may cause many problems in conservative, periodontal and esthetic aspects. Fusion is a condition where two separate tooth buds unite at some stage in their development to form a bifid crown. If tooth contact occurs early, at least before the start of calcification, the two teeth may be completely unites to form a single large tooth. If tooth contact occurs after the time when a portion of the tooth crown has completed its formation, there may be union of the roots only. In fusion the dentin is always confluent. Fusion teeth is more common in the deciduous than in the permanent dentition. Fused teeth are relatively rare, and are mostly mandibular anterior teeth. Fusion of normal and supernumerary teeth or between normal teeth may occurs. The exact etiology factor of fusion is unknown, but genetic and environmental factors seems to be related. A variety of complications and subsequent treatments have been suggested on this teeth. Periodontal conditions may arise due to a groove formed at the line of fusion of the two teeth. Crowding or Protrusion with potential for malocclusion or delayed eruption of adjacent teeth. Fusion teeth appear in the anterior region, they usually cause esthetic problems. Treatments vary depending on the problem, the location, and the extent of fusion. Treatment of fused teeth has been reported from endodontic, orthodontic, periodontic, surgical and multidisciplinary. This report presents the esthetic improvements by separation of two clinical crowns. Bone reduction or endodontic treatments are not required.

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