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      Fluoride penetration from three orthodontic adhesives = an experimental study

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      https://www.riss.kr/link?id=A99685446

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      다국어 초록 (Multilingual Abstract)

      Objective: To examine the prophylactic potential of 3 orthodontic bonding adhesives: Fuji Ortho SC, Illuminate, and Resilience. Methods: Thirty-six Wistar Wag rats were randomly divided into 4 groups consisting of 9 rats each. One of the groups received no treatment and was used as a control. In the other groups, individual bands coated with one of the 3 adhesives were cemented to the lower incisors. Enamel samples were obtained after 6 and 12 weeks and analyzed using scanning electron microscopy in combination with energy dispersive spectrometry. Results: Six weeks after band cementation, no fluoride was found in the enamel of the lower incisors. After 12 weeks, there was no fluoride in the enamel of teeth coated with the Resilience composite. However, in the case of the Illuminate composite and the resin-modified glass ionomer Fuji Ortho SC cement, the depth of fluoride penetration reached 2 μm and 4.8 -
      5.7 μm, respectively. Conclusions: Fluoride ions from orthodontic adhesives can be incorporated into the surface layer of the enamel. Orthodontists may apply orthodontic adhesives, such as the Fuji Ortho SC, to reduce the occurrence of caries during orthodontic treatment with fixed appliances.
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      Objective: To examine the prophylactic potential of 3 orthodontic bonding adhesives: Fuji Ortho SC, Illuminate, and Resilience. Methods: Thirty-six Wistar Wag rats were randomly divided into 4 groups consisting of 9 rats each. One of the groups receiv...

      Objective: To examine the prophylactic potential of 3 orthodontic bonding adhesives: Fuji Ortho SC, Illuminate, and Resilience. Methods: Thirty-six Wistar Wag rats were randomly divided into 4 groups consisting of 9 rats each. One of the groups received no treatment and was used as a control. In the other groups, individual bands coated with one of the 3 adhesives were cemented to the lower incisors. Enamel samples were obtained after 6 and 12 weeks and analyzed using scanning electron microscopy in combination with energy dispersive spectrometry. Results: Six weeks after band cementation, no fluoride was found in the enamel of the lower incisors. After 12 weeks, there was no fluoride in the enamel of teeth coated with the Resilience composite. However, in the case of the Illuminate composite and the resin-modified glass ionomer Fuji Ortho SC cement, the depth of fluoride penetration reached 2 μm and 4.8 -
      5.7 μm, respectively. Conclusions: Fluoride ions from orthodontic adhesives can be incorporated into the surface layer of the enamel. Orthodontists may apply orthodontic adhesives, such as the Fuji Ortho SC, to reduce the occurrence of caries during orthodontic treatment with fixed appliances.

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      목차 (Table of Contents)

      • INTRODUCTION
      • MATERIALS AND METHODS
      • RESULTS
      • DISCUSSION
      • CONCLUSION
      • INTRODUCTION
      • MATERIALS AND METHODS
      • RESULTS
      • DISCUSSION
      • CONCLUSION
      • REFERENCES
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      참고문헌 (Reference)

      1 Mitchell DL, "The first direct bonding in orthodontia, revisited" 101 : 187-189, 1992

      2 Arneberg P, "Selection of Streptococcus mutans and lactobacilli in an intraoral human caries model" 63 : 1197-1200, 1984

      3 Forsberg CM, "Salivary clearance of sugar before and after insertion of fixed orthodontic appliances" 102 : 527-530, 1992

      4 Rosenbloom RG, "Salivary Streptococcus mutans levels in patients before, during, and after orthodontic treatment" 100 : 35-37, 1991

      5 ten Cate JM, "Review on fluoride, with special emphasis on calcium fluoride mechanisms in caries prevention" 105 : 461-465, 1997

      6 Bastin GF, "Quantitative electron probe microanalysis of nitrogen" 13 : 325-342, 1991

      7 Rawls HR, "Preventive dental materials: sustained delivery of fluoride and other therapeutic agents" 5 : 50-55, 1991

      8 Ogaard B, "Orthodontic appliances and enamel demineralization. Part 1. Lesion de velop ment" 94 : 68-73, 1988

      9 Arneberg P, "Intra-oral variations in total plaque fluoride related to plaque pH. A study in orthodontic patients" 31 : 451-456, 1997

      10 Gorelick L, "Incidence of white spot formation after bonding and banding" 81 : 93-98, 1982

      1 Mitchell DL, "The first direct bonding in orthodontia, revisited" 101 : 187-189, 1992

      2 Arneberg P, "Selection of Streptococcus mutans and lactobacilli in an intraoral human caries model" 63 : 1197-1200, 1984

      3 Forsberg CM, "Salivary clearance of sugar before and after insertion of fixed orthodontic appliances" 102 : 527-530, 1992

      4 Rosenbloom RG, "Salivary Streptococcus mutans levels in patients before, during, and after orthodontic treatment" 100 : 35-37, 1991

      5 ten Cate JM, "Review on fluoride, with special emphasis on calcium fluoride mechanisms in caries prevention" 105 : 461-465, 1997

      6 Bastin GF, "Quantitative electron probe microanalysis of nitrogen" 13 : 325-342, 1991

      7 Rawls HR, "Preventive dental materials: sustained delivery of fluoride and other therapeutic agents" 5 : 50-55, 1991

      8 Ogaard B, "Orthodontic appliances and enamel demineralization. Part 1. Lesion de velop ment" 94 : 68-73, 1988

      9 Arneberg P, "Intra-oral variations in total plaque fluoride related to plaque pH. A study in orthodontic patients" 31 : 451-456, 1997

      10 Gorelick L, "Incidence of white spot formation after bonding and banding" 81 : 93-98, 1982

      11 Wagner L, "Fluoride releasing dental filling materials in treatment of caries of deciduous teeth" Med Tour Press Int 2001

      12 Chin MY, "Fluoride release and cariostatic potential of orthodontic adhesives with and without daily fluoride rinsing" 136 : 547-553, 2009

      13 Fejerskov O, "Fluoride in dentistry" Munksgaard 1996

      14 Newman GV, "First direct bonding in orthodontia" 101 : 190-191, 1992

      15 Othman HF, "Evaluation of antimicrobial properties of orthodontic composite resins combined with benzalkonium chloride" 122 : 288-294, 2002

      16 Sehgal V, "Evaluation of antimicrobial and physical properties of orthodontic composite resin modified by addition of antimicrobial agents-an invitro study" 131 : 525-529, 2007

      17 Mizrahi E, "Enamel demineralization following orthodontic treatment" 82 : 62-67, 1982

      18 Chin MY, "Early biofilm formation and the effects of antimicrobial agents on orthodontic bonding mate rials in a parallel plate flow chamber" 28 : 1-7, 2006

      19 Mitchell L, "Decalcification during orthodontic treat ment with fixed appliances--an overview" 19 : 199-205, 1992

      20 Morganstein SI, "Clinical results: implications for prevention and treatment in general dental practice" 44 (44): 297-299, 1994

      21 Ogaard B, "CaF(2) formation: cariostatic properties and factors of enhancing the effect" 35 (35): 40-44, 2001

      22 Al-Musallam TA, "Antimicrobial properties of an orthodontic adhesive combined with cetylpyridinium chloride" 129 : 245-251, 2006

      23 Rezk-Lega F, "An in vivo study on the merits of two glass ionomers for the ce mentation of orthodontic bands" 99 : 162-167, 1991

      24 McComb D, "Adhesive luting cements-classes, criteria, and usage" 17 : 759-762, 1996

      25 Cueto HI, "A little bit of history: the first direct bonding in orthodontia" 98 : 276-277, 1990

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2003-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2002-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2000-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.13 0.47 0.83
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.67 0.55 0.311 0.24
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