• 제목/요약/키워드: maxillofacial prosthesis

검색결과 145건 처리시간 0.022초

Full Arch Restoration through Orthognathic Surgery after Implantation on the Patients with Mandibular Prognathism and Loss of Posterior Teeth: A Case Report

  • Hwang, Kyoung-Sub;Lee, Jin-Ju;Jeon, Young-Chan;Shin, Sang-Hun;Song, Jae-Min;Lee, So-Hyoun;Huh, Jung-Bo
    • Journal of Korean Dental Science
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    • 제10권1호
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    • pp.35-44
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    • 2017
  • In case of loss of many teeth due to dental caries or periodontal disease, improvement of masticatory function and aesthetics can be obtained through implant treatment. However, if the patient does not have a normal intercondylar relationship, it is difficult to achieve an ideal occlusal relationship with only prosthetic treatment. In particular, oral reconstruction with orthodontic treatment or orthognathic surgery is necessary for patients with mandibular prognathism. However, if the posterior occlusion collapses due to severe caries or periodontal disease, orthognathic surgery may be difficult. The occlusal vertical stop is very important for the stability of the mandibular position during occlusal reconstruction through orthognathic surgery. The patient in this case had posterior occlusion collapsed due to the caries of a large number of posterior teeth, and showed mandibular prognathism and long face. We planned a full arch restoration with orthognathic surgery and extracted the hopeless teeth. To secure the vertical stop required for orthognathic surgery, the implant was placed before surgery. After the orthognathic surgery and the final prosthesis application, the results were satisfactory for the improvement of the aesthetics and the restoration of the masticatory function.

하악골 절제술 및 비골유리피판을 시행한 성장기 환자에서 임플란트를 이용한 고정성 보철 수복 증례 (Oral rehabilitation using implant supported fixed dental prostheses in a growing patient who underwent mandibulectomy and fibular free flap)

  • 이학영;김지환
    • 대한치과보철학회지
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    • 제58권3호
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    • pp.268-274
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    • 2020
  • 구강암 등의 병소로 인해 하악골의 절제를 시행한 환자는 구강악안면계의 재건을 통한 기능적, 심미적 회복이 중요하다. 하악골의 재건에 많이 사용되는 비골유리피판은 임플란트 식립을 동반한 보철적 수복에 있어 용이하다. 그러나 성장기 환자는 비골의 크기가 작고 잔여 성장이 남아있을 수 있어 임플란트를 이용한 치료 시 어려움이 존재한다. 본 증례는 골육종으로 하악골 절제술 및 비골유리피판을 이용해 하악골의 재건을 시행한 11세 여성 환자로, 임플란트 지지 고정성 보철물을 이용한 보철적 수복을 통해 기능적, 심미적 회복을 도모하였다. 임플란트의 식립 부위 및 개수, 보철물의 형태적 고려를 하였으며, 성장기인 13세에 임플란트 지지 고정성 보철 수복을 완료하였고, 추가로 1년간의 경과 관찰을 시행한 바 안정적인 결과를 얻었기에 보고하고자 한다. 그러나, 이후의 추가적인 검진을 통해 악안면계의 변화를 관찰하는 것이 필요하겠다.

골 이식술 후 Osstem Implant (US II Plus/GS II)의 다기관 임상연구 (A multicenter clinical study of installed US II Plus/GS II Osstem implants after bone graft)

  • 정광;오철중;하지원;국민석;박홍주;오희균;김수관;김영균;김우철
    • 대한치과의사협회지
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    • 제50권12호
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    • pp.743-754
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    • 2012
  • urpose : The purpose of this study was to evaluate the US II plus/GS II Osstem$^{(R)}$ implants through the study for the clinical success rate during the installation of the Osstem¢Á implants after bone graft. Materials and Methods : This study was researched in the 4 medical institutions: Chonnam National University, Chosun University, Bundang Seoul National University Hospital, and FM dental clinic from May, 2002 to September, 2009. Based on the total number of 60 patients whose treatment was the installation of the US II plus/GS II Osstem¢Á implants after bone graft, we evaluated success rate of implants. We analysis the distribution of patient's age and gender, edentulous area, bone type, fixture length and diameter, installation and loading time, donor site, bone graft material and method, antagonistic teeth, and survival and success rate. From these analyses we got the following results. Results : 1. In this study, the total number of patients who have been installed with US II plus implant was 27, and total of 52 implants were installed. The average age was 38.9, with 16 male, and 11 female patients. 2. The total number of patients who have been installed with GS II implant was 33, and total of 54 implants were installed. The average age was 49.7, with 24 male, and 9 female patients. 3. As for bone graft method, either autogenous bone or a mix of autogenous and heterogenous bone was used(88.4%) for US II plus. Chin, iliac, and Maxillary tuberosity were the donor sites for autogenous bone graft, and onlay method of bone graft was performed. 4. Allogenic bone or a mix of autogenous and heterogenous bone was used(77.8%) for GS II. Chin, ramus, and tibia were the donor sites for autogenous bone graft, and GBR method of bone graft was performed. 5. The duration from the installation of implants to setting of final prosthesis was average of 16 months and 10 months for US II plus and GS II respectively. Also, the final follow up period was average of 31 months and 28 months respectively. During this period, one GS II implant was removed from 1 patient due to failure of early osteointegration. 6. The survival rates were 100% and 98.1%, and success rates were 94.2% and 94.4% for US II plus and GS II implant respectively. Conclusion : On the evaluation of our clinical study, both US II plus and GS II Osstem¢Á implants showed the excellent clinical results after bone graft.

Changes in the fractal dimension of peri-implant trabecular bone after loading: a retrospective study

  • Mu, Teh-Jing;Lee, Dong-Won;Park, Kwang-Ho;Moon, Ik-Sang
    • Journal of Periodontal and Implant Science
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    • 제43권5호
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    • pp.209-214
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    • 2013
  • Purpose: To assess bony trabecular changes potentially caused by loading stress around dental implants using fractal dimension analysis. Methods: Fractal dimensions were measured in 48 subjects by comparing radiographs taken immediately after prosthesis delivery with those taken 1 year after functional loading. Regions of interest were isolated, and fractal analysis was performed using the box-counting method with Image J 1.42 software. Wilcoxon signed-rank test was used to analyze the difference in fractal dimension before and after implant loading. Results: The mean fractal dimension before loading ($1.4213{\pm}0.0525$) increased significantly to $1.4329{\pm}0.0479$ at 12 months after loading (P<0.05). Conclusions: Fractal dimension analysis might be helpful in detecting changes in peri-implant alveolar trabecular bone patterns in clinical situations.

O-ring Attachment를 이용한 무치악환자의 보철수복증례 (Prosthetic rehabilitation of the edentulous patients using O-ring attachment:A clinical report)

  • 안재진;조병완;안상헌;김종필
    • 대한치과보철학회지
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    • 제36권4호
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    • pp.581-586
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    • 1998
  • 무치악환자의 Implant보철수복 방법은 식립된 Implan의 수에 따라 다양하다. 많은 수의 Implant가 식립된 경우에는 고정성 보철물로 수복이 가능하지만 시술이나 기공상의 복잡성, 고가의 치료비, 보철물과 잔존치조제사이의 빈 공간으로 인한 비심미성, 발음의 어려움과 같은 여러 가지 문제점이 존재한다. 적은 수의 Implant가 식립된 경우는 Bar Retained Overdenture를 사용하지만 역시 기공과정이 복잡하며, Bar와 잔존치조제사이의 공간으로 인한 점막지지 면적의 감소와 보수가 어려운 단점이 있다. 여기에 비해서 O-ring Attachment를 이용하면 기공과정이 쉽고, 잔존치조제와 보철물 사이에 공간이 없으므로 점막지지 면적을 많이 얻을 수 있다. 또한 Implant식립의 수도 최소화할 수 있어 경제적이며, 문제가 발생한 경우에 쉽게 대처할 수 있는 장점을 지니고 있다. 본 증례들은 Steri-Oss Implant System의 O-ring Attachment를 이용하여 무치악환자를 보철 수복한 예로서 술후 기능적, 심미적으로 만족할 만한 결과를 얻었기에 문헌고찰과 더불어 발표하는 바이다.

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IV형의 골질로 재생된 골내에 식립된 원통형 임플란트의 유한요소법적 연구 (FINITE ELEMENT ANALYSIS OF CYLINDER TYPE IMPLANT PLACED INTO REGENERATED BONE WITH TYPE IV BONE QUALITY)

  • 김병옥;홍국선;김수관
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제30권4호
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    • pp.331-338
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    • 2004
  • Stress transfer to the surrounding tissues is one of the factors involved in the design of dental implants. Unfortunately, insufficient data are available for stress transfer within the regenerated bone surrounding dental implants. The purpose of this study was to investigate the concentration of stresses within the regenerated bone surrounding the implant using three-dimensional finite element stress analysis method. Stress magnitude and contours within the regenerated bone were calculated. The $3.75{\times}10-mm$ implant (3i, USA) was used for this study and was assumed to be 100% osseointegrated, and was placed in mandibular bone and restored with a cast gold crown. Using ANSYS software revision 6.0, a program was written to generate a model simulating a cylindrical block section of the mandible 20 mm in height and 10 mm in diameter. The present study used a fine grid model incorporating elements between 165,148 and 253,604 and nodal points between 31,616 and 48,877. This study was simulated loads of 200N at the central fossa (A), at the outside point of the central fossa with resin filling into screw hole (B), and at the buccal cusp (C), in a vertical and $30^{\circ}$ lateral loading, respectively. The results were as follows; 1. In case the regenerated bone (bone quality type IV) was surrounded by bone quality type I and II, stresses were increased from loading point A to C in vertical loading. And stresses according to the depth of regenerated bone were distributed along the implant evenly in loading point A, concentrated on the top of the cylindrical collar loading point B and C in vertical loading. And, In case the regenerated bone (bone quality type IV) was surrounded by bone quality type III, stresses were increase from loading point A to C in vertical loading. And stresses according to the depth of regenerated bone were distributed along the implant evenly in loading point A, B and C in vertical loading. 2. In case the regenerated bone (bone quality type IV) was surrounded by bone quality type I and II, stresses were decreased from loading point A to C in lateral loading. Stresses according to the depth of regenerated bone were concentrated on the top of the cylindrical collar in loading point A and B, distributed along the implant evenly in loading point C in lateral loading. And, In case the regenerated bone (bone quality type IV) was surrounded by bone quality type III, stresses were decreased from loading point A to C in lateral loading. And stresses according to the depth of regenerated bone were distributed along the implant evenly in loading point A, B and C in lateral loading. In summary, these data indicate that both bone quality surrounding the regenerated bone adjacent to implant fixture and load direction applied on the prosthesis could influence concentration of stress within the regenerated bone surrounding the cylindrical type implant fixture.

재생된 골에 식립한 넓은 직경의 나사형 임플란트에 대한 유한요소법적 분석 (FINITE ELEMENT ANALYSIS OF WIDE DIAMETER SCREW IMPLANT PLACED INTO REGENERATED BONE)

  • 김수관;김재덕;김종관;김병옥
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제31권3호
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    • pp.248-254
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    • 2005
  • The purpose of this study was to investigate the distribution of stress within the regenerated bone surrounding the implant using three dimensional finite element stress analysis method. Using ANSYS software revision 6.0 (IronCAD LLC, USA), a program was written to generate a model simulating a cylindrical block section of the mandible 20 mm in height and 10 mm in diameter. The $5.0{\times}11.5-mm$ screw implant (3i, USA) was used for this study, and was assumed to be 100% osseointegrated. And it was restored with gold crown with resin filling at the central fossa area. The implant was surrounded by the regenerated type IV bone, with 4 mm in width and 7 mm apical to the platform of implant in length. And the regenerated bone was surrounded by type I, type II, and type III bone, respectively. The present study used a fine grid model incorporating elements between 250,820 and 352,494 and nodal points between 47,978 and 67,471. A load of 200N was applied at the 3 points on occlusal surfaces of the restoration, the central fossa, outside point of the central fossa with resin filling into screw hole, and the functional cusp, at a 0 degree angle to the vertical axis of the implant, respectively. The results were as follows: 1. The stress distribution in the regenerated bone-implant interface was highly dependent on both the density of the native bone surrounding the regenerated bone and the loading point. 2. A load of 200N at the buccal cusp produced 5-fold increase in the stress concentration at the neck of the implant and apex of regenerated bone irrespective of surrounding bone density compared to a load of 200N at the central fossa. 3. It was found that stress was more homogeneously distributed along the side of implant when the implant was surrounded by both regenerated bone and native type III bone. In summary, these data indicate that concentration of stress on the implant-regenerated bone interface depends on both the native bone quality surrounding the regenerated bone adjacent to implant and the load direction applied on the prosthesis.

임프란트 미세나사선이 주위골 수준변화에 미치는 영향에 대한 1년간의 전향적 비교 연구 (An 1 year prospective comparative study evaluating the effect of microthread on the maintenance of marginal bone level)

  • 신동환;조규성;박광호;문익상
    • Journal of Periodontal and Implant Science
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    • 제33권3호
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    • pp.349-358
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    • 2003
  • The success of dental implant therapy relies mainly upon the presence and maintenance of bone adjacent to implant. An 1-year prospective study was performed, upon the patients who were diagnosed as having chronic adult periodontitis, and had been treated with dental implant. The purpose of this study was to measure the radiographic bone level changes proximal to Astra Tech Single Tooth Implants (ATST, Astra Tech AB, $M{\"{o}}lndal$, Sweden) with microthread and Astra Tech TiOblast Implant (ATTB) without microthread supporting fixed partial prosthesis. Measurements were used to determine mean marginal bone loss during the first year of loading, 17 subjects with its partial prosthesis supported by 37 implants were followed up for an 1-year period. The marginal bone loss of implants was positively correlated with the retention factor, microthread($Microthread^{TM}$) in crestal area of ATST. The results were as follows. 1. The mean marginal bone loss of ATST was 0.226${\pm}$0.395mm, while ATTB was 0.440${\pm}$0.360mm. There was a statistically significant difference between ATST and ATTB (p<0.05). 2. The mean bone loss of the upper jaw fixtures was 0.269${\pm}$0.265mm for ATST and 0.529${\pm}$0.417mm for ATTB . There was a statistically significant difference between ATST and ATTB (p<0.05). In the lower jaw the corresponding figures were 0.167${\pm}$0.231mm and 0.313${\pm}$0.214mm, respectively. There was no significant difference between ATST and ATTB (p>0.05). 3. The mean bone loss of ATST was lower than that of ATTB at all sites according to bone quality. There was a statistically significant difference between ATST and ATTB at bone quality type III(p <0.05). In conclusion, the mean bone loss of ATST was smaller than that of ATTB . Therefore, the retention factor of crestal area, microthread ($Microthread^{TM}$) was effective to maintenance of marginal bone level around fixture.

Monolithic zirconia framework으로 제작된 fixed detachable prostheses를 이용한 심미적인 임플란트 전악 수복 증례 (Esthetic Full Zirconia Fixed Detachable Implant-Retained Restorations Manufactured from Monolithic Zirconia : Clinical Report)

  • 홍준태;최유성;한세진;조인호
    • 구강회복응용과학지
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    • 제28권3호
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    • pp.253-268
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    • 2012
  • 수직적, 수평적 골흡수가 심한 환자에서 임플란트를 이용한 전악수복의 경우 경조직과 연조직 이식을 통해서 임플란트를 원하는 위치에 식립할 수도 있지만, 치은과 치아의 기능과 심미를 회복할 수 있는 fixed detachable prostheses를 대체 술식으로 사용할 수도 있다. 이러한 증례에서 다양한 재료가 수복물의 제작에 사용 가능하지만, metal/acrylic 보철물에서는 레진치아의 파절 및 탈락이 일어날 수 있고, metal/ceramic 혹은 zirconia/ceramic 보철물에서는 도재의 chipping이나 파절과 같은 문제가 발생할 수 있다. 이에 최근에 심미적이면서도 기능적인 보철수복을 위해 zirconia에 도재를 축성하지 않고 임상적으로 적용가능한 monolithic zirconia framework이 출시되어 사용되고 있다. 본 임상 증례는 심미적인 요구도가 높은 완전 무치악 환자에서 임플란트를 식립하고 chipping이나 파절의 위험을 감소시키기 위해 monolithic zirconia framework을 이용해 만들어진 complete fixed detachable 보철물을 이용한 수복에 대해 보고하고자 한다. 이번 증례에서 보철물은 심미적, 기능적으로 만족스러웠으며, 2년 간의 정기검사에서 임상적인 합병증은 보고되지 않았다.

임프란트 나사형태와 치조골 흡수에 따른 응력분산의 3차원 유한요소법적 분석 (THE THREE DIMENSIONAL FINITE ELEMENT ANALYSIS OF THE STRESS DISTRIBUTION ACCORDING TO THE THREAD DESIGNS AND THE MARGINAL BONE LOSS OF THE IMPLANTS)

  • 김일규;손충렬;장금수;조현영;백민규;박승훈
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제30권1호
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    • pp.60-71
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    • 2008
  • The objective of this study is to evaluate the stress distribution according to the thread design and the marginal bone loss of a single unit dental implant under the axial and offset-axial loading by three dimensional finite element analysis. The implants used had the diameter of 5mm and 4mm with 13mm in length and prosthesis with a conical type which is 6mm in height and 12mm in diameter. The thread designs were triangular, square and buttress. In the three dimensional finite element model with $15\times15\times20mm$ hexahedron and 2mm cortical thickness, implants were placed with crown to root ratio 7:12, 10:9, 13:6 and 16:3. And additionally the axial force of 100N were applied into 0mm, 2mm and 4mm away from the center of the implants. The results were as follows 1. The maximum von-Mises stress in cortical bone was concentrated to cervical area of implant, and in cancellous bone, apical portion. 2. Comparing the von-Mises stresses in cortical bone of 2mm and 4mm offset loading with central axial loading, it were increased to 3 and 5 times in diameter 4mm implant, and 2 and 4 times, in diameter 5mm implant. 3. The square threads were more effective than the triangular and butress as the longer diameter, the offset loading, and the worse crown to root ratio. 4. The von-Mises stresses were relatively stable until crown to root ratio 13:6, but it was suddenly increased at 16:3. From the results of this study, minimum requirement of crown to root ratio of implant is 2:1, and in the respect of crown to root ratio, diameter and offset loading, square threads are more effective than triangular and buttress threads.