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      골유도재생술과 동시에 식립한 임플란트의 변연골 흡수량에 대한 후향적 고찰 = Retrospective Clinical Study on Marginal Bone Loss of Implants with Guided Bone Regeneration

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      https://www.riss.kr/link?id=A105693584

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      Purpose: The purpose of this study was to evaluate marginal bone loss of the alveolar crest on implants with or without guided bone regeneration and variables that have influenced. Methods: The clinical evaluation were performed for survival rate and marginal bone loss of 161 endosseous implants installed with guided bone regeneration (GBR) in 83 patients from September 2009 to October 2010 in relation to sex and age of patients, position of implant, implant system, length and diameter of implant. Study group (n=42) implant with GBR procedure, control group (n=41) implant without GBR technique. Simultaneous GBR approach using resorbable membranes combined with autogenous bone graft or freeze-dried bone allograft or combination. Radiographic examinations were conducted at healing abutment connection and latest visit. Marginal bone level was measured. Results: Mean marginal bone loss was 0.73 mm in study group, 0.63 mm in control group. Implants in maxillary anterior area (1.21 mm) were statistically significant in study group (P<0.05), maxillary posterior area (0.81 mm) in control group (P<0.05). Mean marginal bone loss 1.47 mm for implants with diameter 3.4 mm, 0.83 mm for implants of control group with diameter 4.0 mm (P<0.05). Some graft materials showed an increased marginal bone loss but no statistically significant influence of sex, implant type or length. Conclusion: According to these findings, this study demonstrated the amount of marginal bone loss around implant has maintained a relative stable during follow-up periods. We conclude that implants with GBR had similar survival rate and crestal bone level compared with implants in native bone.
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      Purpose: The purpose of this study was to evaluate marginal bone loss of the alveolar crest on implants with or without guided bone regeneration and variables that have influenced. Methods: The clinical evaluation were performed for survival rate and ...

      Purpose: The purpose of this study was to evaluate marginal bone loss of the alveolar crest on implants with or without guided bone regeneration and variables that have influenced. Methods: The clinical evaluation were performed for survival rate and marginal bone loss of 161 endosseous implants installed with guided bone regeneration (GBR) in 83 patients from September 2009 to October 2010 in relation to sex and age of patients, position of implant, implant system, length and diameter of implant. Study group (n=42) implant with GBR procedure, control group (n=41) implant without GBR technique. Simultaneous GBR approach using resorbable membranes combined with autogenous bone graft or freeze-dried bone allograft or combination. Radiographic examinations were conducted at healing abutment connection and latest visit. Marginal bone level was measured. Results: Mean marginal bone loss was 0.73 mm in study group, 0.63 mm in control group. Implants in maxillary anterior area (1.21 mm) were statistically significant in study group (P<0.05), maxillary posterior area (0.81 mm) in control group (P<0.05). Mean marginal bone loss 1.47 mm for implants with diameter 3.4 mm, 0.83 mm for implants of control group with diameter 4.0 mm (P<0.05). Some graft materials showed an increased marginal bone loss but no statistically significant influence of sex, implant type or length. Conclusion: According to these findings, this study demonstrated the amount of marginal bone loss around implant has maintained a relative stable during follow-up periods. We conclude that implants with GBR had similar survival rate and crestal bone level compared with implants in native bone.

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      참고문헌 (Reference)

      1 Jensen OT, "Vertical guided bone-graft augmentation in a new canine mandibular model" 10 : 335-344, 1995

      2 Wyatt CC, "Treatment outcomes of patients with implant- supported fixed partial prostheses" 13 : 204-211, 1998

      3 Dahlin C, "Treatment of fenestration and dehiscence bone defects around oral implants using the guided tissue regeneration technique: a prospective multicenter study" 10 : 312-318, 1995

      4 Simion M, "Treatment of dehiscences and fenestrations around dental implants using resorbable and nonresorbable membranes associated with bone autografts: a comparative clinical study" 12 : 159-167, 1997

      5 Buser D, "Tissue integration of one-stage ITI implants: 3-year results of a longitudinal study with Hollow-Cylinder and Hollow-Screw implants" 6 : 405-412, 1991

      6 Zarb GA, "The longitudinal clinical effectiveness of osseointegrated dental implants: the Toronto study. Part III: problems and complications encountered" 64 : 185-194, 1990

      7 Hockers T, "The combined use of bioresorbable membranes and xenografts or autografts in the treatment of bone defects around implants. A study in beagle dogs" 10 : 487-498, 1999

      8 Becktor JP, "Survival analysis of endosseous implants in grafted and nongrafted edentulous maxillae" 19 : 107-115, 2004

      9 Kassolis JD, "Supracrestal bone regeneration: a pilot study" 19 : 131-139, 1999

      10 Jovanovic SA, "Supracrestal bone formation around dental implants: an experimental dog study" 10 : 23-31, 1995

      1 Jensen OT, "Vertical guided bone-graft augmentation in a new canine mandibular model" 10 : 335-344, 1995

      2 Wyatt CC, "Treatment outcomes of patients with implant- supported fixed partial prostheses" 13 : 204-211, 1998

      3 Dahlin C, "Treatment of fenestration and dehiscence bone defects around oral implants using the guided tissue regeneration technique: a prospective multicenter study" 10 : 312-318, 1995

      4 Simion M, "Treatment of dehiscences and fenestrations around dental implants using resorbable and nonresorbable membranes associated with bone autografts: a comparative clinical study" 12 : 159-167, 1997

      5 Buser D, "Tissue integration of one-stage ITI implants: 3-year results of a longitudinal study with Hollow-Cylinder and Hollow-Screw implants" 6 : 405-412, 1991

      6 Zarb GA, "The longitudinal clinical effectiveness of osseointegrated dental implants: the Toronto study. Part III: problems and complications encountered" 64 : 185-194, 1990

      7 Hockers T, "The combined use of bioresorbable membranes and xenografts or autografts in the treatment of bone defects around implants. A study in beagle dogs" 10 : 487-498, 1999

      8 Becktor JP, "Survival analysis of endosseous implants in grafted and nongrafted edentulous maxillae" 19 : 107-115, 2004

      9 Kassolis JD, "Supracrestal bone regeneration: a pilot study" 19 : 131-139, 1999

      10 Jovanovic SA, "Supracrestal bone formation around dental implants: an experimental dog study" 10 : 23-31, 1995

      11 Fugazzotto PA, "Success and failure rates of osseointegrated implants in function in regenerated bone for 72 to 133 months" 20 : 77-83, 2005

      12 Iasella JM, "Ridge preservation with freeze-dried bone allograft and a collagen membrane compared to extraction alone for implant site development: a clinical and histologic study in humans" 74 : 990-999, 2003

      13 Peñarrocha M, "Radiologic study of marginal bone loss around 108 dental implants and its relationship to smoking, implant location, and morphology" 19 : 861-867, 2004

      14 Hollender L, "Radiographic evaluation of osseointegrated implants of the jaws. Experimental study of the influence of radiographic techniques on the measurement of the relation between the implant and bone" 9 : 91-95, 1980

      15 Graziani F, "Maxillary sinus augmentation with platelet-rich plasma and fibrinogen cryoprecipitate: a tomographic pilot study" 14 : 63-69, 2005

      16 Lekholm U, "Marginal tissue reactions at osseointegrated titanium fixtures. (II) A cross-sectional retrospective study" 15 : 53-61, 1986

      17 Buser D, "Long-term stability of osseointegrated implants in bone regenerated with the membrane technique. 5-year results of a prospective study with 12 implants" 7 : 175-183, 1996

      18 Zitzmann NU, "Long-term results of implants treated with guided bone regeneration: a 5-year prospective study" 16 : 355-366, 2001

      19 Adell R, "Long-term follow-up study of osseointegrated implants in the treatment of totally edentulous jaws" 5 : 347-359, 1990

      20 Buser D, "Localized ridge augmentation using guided bone regeneration. II. Surgical procedure in the mandible" 15 : 10-29, 1995

      21 Buser D, "Localized ridge augmentation using guided bone regeneration. 1. Surgical procedure in the maxilla" 13 : 29-45, 1993

      22 Buser D, "Lateral ridge augmentation using autografts and barrier membranes: a clinical study with 40 partially edentulous patients" 54 : 420-432, 1996

      23 Branemark PI., "Introduction to osseointegration, In Tissue-integrated prosthese. Osseointegration in clinical dentistry" Quintessence Publishing Co, Inc 1985

      24 Hertel RC, "Influence of the dimensions of implant superstructure on peri-implant bone loss" 6 : 18-24, 1993

      25 Tada S, "Influence of implant design and bone quality on stress/strain distribution in bone around implants: a 3-dimensional finite element analysis" 18 : 357-368, 2003

      26 Nevins M, "Implants in regenerated bone: long-term survival" 18 : 34-45, 1998

      27 Becker W, "Guided tissue regeneration for implants placed into extraction sockets and for implant dehiscences: surgical techniques and case report" 10 : 376-391, 1990

      28 Simion M, "Guided bone regeneration using resorbable and nonresorbable membranes: a comparative histologic study in humans" 11 : 735-742, 1996

      29 Dahlin C, "Generation of new bone around titanium implants using a membrane technique: an experimental study in rabbits" 4 : 19-25, 1989

      30 Gotfredsen K, "Evaluation of guided bone generation around implants placed into fresh extraction sockets: an experimental study in dogs" 51 : 879-884, 1993

      31 Palmer RM, "Effect of loading on bone regenerated at implant dehiscence sites in humans" 9 : 283-291, 1998

      32 Friberg B, "Early failures in 4,641 consecutively placed Brånemark dental implants: a study from stage 1 surgery to the connection of completed prostheses" 6 : 142-146, 1991

      33 Petrie CS, "Comparative evaluation of implant designs: influence of diameter, length, and taper on strains in the alveolar crest. A three-dimensional finite-element analysis" 16 : 486-494, 2005

      34 Friberg B, "Clinical outcome of Brånemark System implants of various diameters: a retrospective study" 17 : 671-677, 2002

      35 Nyman S, "Bone regeneration adjacent to titanium dental implants using guided tissue regeneration: a report of two cases" 5 : 9-14, 1990

      36 Esposito M, "Biological factors contributing to failures of osseointegrated oral implants. (I). Success criteria and epidemiology" 106 : 527-551, 1998

      37 Molander B, "Agreement between panoramic and intra-oral radiography in the assessment of marginal bone height" 20 : 155-160, 1991

      38 Hämmerle CH, "A systematic review of the survival of implants in bone sites augmented with barrier membranes (guided bone regeneration) in partially edentulous patients" 29 (29): 226-231, 2002

      39 Adell R, "A 15-year study of osseointegrated implants in the treatment of the edentulous jaw" 10 : 387-416, 1981

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      연월일 이력구분 이력상세 등재구분
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      2014-03-20 학술지명변경 한글명 : 대한악안면성형재건외과학회지 -> Maxillofacial Plastic Reconstructive Surgery
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.23 0.23 0.18
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.12 0.09 0.443 0.1
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