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      불소방출성 콤포짓트 레진계 수복재의 특성 = PROPERTIES OF FLUORIDE-RELEASING RESIN COMPOSITE RESTORATIVE MATERIALS

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      https://www.riss.kr/link?id=A76517259

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      국문 초록 (Abstract)

      본 연구에서는 구강 환경과 유사한 조건에서 불소방출성을 보이는 콤포짓트 레진계 수복재의 내구성과 불소방출성을 조사하기 위해 4종의 콤포머와 1종의 불소방출성 콤포짓트 레진을 실험재료로 선택하고 5℃와 55℃ 수중에서의 열순환 처리 후의 인장강도, 열순환 처리 후 칫솔에 대한 작용력 1.5N으로 100,000회 칫솔질을 시행하였을 때의 표면조도 및 불소치약 칫솔질 후 37℃ 수중에서의 불소이온 용출 양상을 조사한 결과 다음과 같은 결론을 얻었다.
      1. 인장강도는 TC(Tetric^(ⓡ) Ceram)군에서 32.3 MPa, CF(Compoglass F)군에서 16.8 MPa이고, TC군과 DF(Dyract^(ⓡ) flow)군 및 CF군에서 유의한 차이를 보였다(P<0.05).
      2. 칫솔질 마모시험 후의 표면조도 Ra는 TC군에서 0.287, FT(F2000)군에서 1.516이고, FT군과 나머지 시험군 사이에 유의한 차이를 보였다(P<0.05).
      3. 칫솔질 마모시험 후의 표면에서는 필러의 돌출과 탈락 양상이 관찰되었다.
      4. 불소치약 Perio Alpine Herb로 칫솔질 한 후 콤포머는 초기에 높은 용출을 보인 후 시간이 경과하면서 용출량이 감소하는 양상을 보였지만, 불소방출성 콤포짓트 레진의 TC군에서는 초기단계부터 낮으면서도 지속적인 용출을 보였다.
      5. 불소치약 Perio Alpine Herb로 칫솔질 한 후 1시간이 경과하였을 때의 불소이온 용출량은 CF군에서 2.064μg/cm², TC군에서 0.1119μg/cm²이고, CF군의 용출량이 나머지 시험군에 비해 유의하게 높은 값을 보였다(P<0.05).
      번역하기

      본 연구에서는 구강 환경과 유사한 조건에서 불소방출성을 보이는 콤포짓트 레진계 수복재의 내구성과 불소방출성을 조사하기 위해 4종의 콤포머와 1종의 불소방출성 콤포짓트 레진을 실험...

      본 연구에서는 구강 환경과 유사한 조건에서 불소방출성을 보이는 콤포짓트 레진계 수복재의 내구성과 불소방출성을 조사하기 위해 4종의 콤포머와 1종의 불소방출성 콤포짓트 레진을 실험재료로 선택하고 5℃와 55℃ 수중에서의 열순환 처리 후의 인장강도, 열순환 처리 후 칫솔에 대한 작용력 1.5N으로 100,000회 칫솔질을 시행하였을 때의 표면조도 및 불소치약 칫솔질 후 37℃ 수중에서의 불소이온 용출 양상을 조사한 결과 다음과 같은 결론을 얻었다.
      1. 인장강도는 TC(Tetric^(ⓡ) Ceram)군에서 32.3 MPa, CF(Compoglass F)군에서 16.8 MPa이고, TC군과 DF(Dyract^(ⓡ) flow)군 및 CF군에서 유의한 차이를 보였다(P<0.05).
      2. 칫솔질 마모시험 후의 표면조도 Ra는 TC군에서 0.287, FT(F2000)군에서 1.516이고, FT군과 나머지 시험군 사이에 유의한 차이를 보였다(P<0.05).
      3. 칫솔질 마모시험 후의 표면에서는 필러의 돌출과 탈락 양상이 관찰되었다.
      4. 불소치약 Perio Alpine Herb로 칫솔질 한 후 콤포머는 초기에 높은 용출을 보인 후 시간이 경과하면서 용출량이 감소하는 양상을 보였지만, 불소방출성 콤포짓트 레진의 TC군에서는 초기단계부터 낮으면서도 지속적인 용출을 보였다.
      5. 불소치약 Perio Alpine Herb로 칫솔질 한 후 1시간이 경과하였을 때의 불소이온 용출량은 CF군에서 2.064μg/cm², TC군에서 0.1119μg/cm²이고, CF군의 용출량이 나머지 시험군에 비해 유의하게 높은 값을 보였다(P<0.05).

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      다국어 초록 (Multilingual Abstract)

      The objectives of this study were to examine the properties of fluoride-releasing resin composite restorative materials. Four commercially available compomer materials (Compoglass F: CF, Dyract^(ⓡ) AP: DA. Dyract^(ⓡ) flow:DF, F2000: FT) and one fluoride-releasing composite resin (Tetric^(ⓡ) Ceram: TC) were selected as experimental materials. Rectangular-shaped tensile test specimens were fabricated in a teflon mold giving 5 mm in gauge length and 2 mm in thickness. Disk-shaped specimens were fabricated in the split teflon mold with diameter of 15mm and thickness of 1 mm. After curing for an hour, specimens were immersed in deionized water at 37℃±1℃ for 30 days. All specimens were thermocycled for 10,000 cycles with 15 seconds of dwelling time in each 5℃ and 55℃ water baths. Toothbrush abrasion test was conducted under a load of 1.5 N and the abraded surfaces were examined with surface roughness tester (SV-3000, Mitutoyo Co, Japan) and SEM (JSM-5800, JEOL, Japan). Fluoride recharging was done by toothbrushing for 3 min. using a fluoride toothpaste (Perio Alpine Herb, LG Household & Health Care, Korea).
      The results obtained were summarized as follows;
      1. The highest tensile strength value of 32.3 MPa was observed in TC group and the lowest value of 16.8 MPa was observed in CF group. The tensile strength of TC group was significantly higher than those of CF and DF groups (P<0.05).
      2. The lowest Ra value of 0.287 was observed in TC group and the highest value of 1.516 was observed in FT group. The Ra value of FT group was significantly higher than other groups (P<0.05).
      3. The abraded surfaces revealed the increase of surface roughness due to the protrusion and missing of filler particles.
      4. The release of fluoride of compomers after tooth brushing by Perio Alpine Herb was initially large and then followed by small and continuously. But it remains small and constant in fluoride-releasing composite resin of TC.
      5. The highest value of fluoride release after toothbrushing by Perio Alpine Herb was 2.064 μg/cm² in CF group and the lowest value was 0.119μg/cm² in TC group. The amount of fluoride release of CF group was significantly higher than other groups (P<0.05).
      번역하기

      The objectives of this study were to examine the properties of fluoride-releasing resin composite restorative materials. Four commercially available compomer materials (Compoglass F: CF, Dyract^(ⓡ) AP: DA. Dyract^(ⓡ) flow:DF, F2000: FT) and one fl...

      The objectives of this study were to examine the properties of fluoride-releasing resin composite restorative materials. Four commercially available compomer materials (Compoglass F: CF, Dyract^(ⓡ) AP: DA. Dyract^(ⓡ) flow:DF, F2000: FT) and one fluoride-releasing composite resin (Tetric^(ⓡ) Ceram: TC) were selected as experimental materials. Rectangular-shaped tensile test specimens were fabricated in a teflon mold giving 5 mm in gauge length and 2 mm in thickness. Disk-shaped specimens were fabricated in the split teflon mold with diameter of 15mm and thickness of 1 mm. After curing for an hour, specimens were immersed in deionized water at 37℃±1℃ for 30 days. All specimens were thermocycled for 10,000 cycles with 15 seconds of dwelling time in each 5℃ and 55℃ water baths. Toothbrush abrasion test was conducted under a load of 1.5 N and the abraded surfaces were examined with surface roughness tester (SV-3000, Mitutoyo Co, Japan) and SEM (JSM-5800, JEOL, Japan). Fluoride recharging was done by toothbrushing for 3 min. using a fluoride toothpaste (Perio Alpine Herb, LG Household & Health Care, Korea).
      The results obtained were summarized as follows;
      1. The highest tensile strength value of 32.3 MPa was observed in TC group and the lowest value of 16.8 MPa was observed in CF group. The tensile strength of TC group was significantly higher than those of CF and DF groups (P<0.05).
      2. The lowest Ra value of 0.287 was observed in TC group and the highest value of 1.516 was observed in FT group. The Ra value of FT group was significantly higher than other groups (P<0.05).
      3. The abraded surfaces revealed the increase of surface roughness due to the protrusion and missing of filler particles.
      4. The release of fluoride of compomers after tooth brushing by Perio Alpine Herb was initially large and then followed by small and continuously. But it remains small and constant in fluoride-releasing composite resin of TC.
      5. The highest value of fluoride release after toothbrushing by Perio Alpine Herb was 2.064 μg/cm² in CF group and the lowest value was 0.119μg/cm² in TC group. The amount of fluoride release of CF group was significantly higher than other groups (P<0.05).

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      참고문헌 (Reference)

      1 박용규, "유동성 레진 수복술에서 접착제 중합 여부에 따른 미세누출과 전단결합강도에 관한 연구" 대한소아치과학회 34 (34): 398-407, 2007

      2 Gladys S, "omparative physico-mechanical characterization of new hybrid restorative materials with conventional glass-ionomer and resin composite restorative materials" 76 : 883-894, 1997

      3 Rothwell M, "The uptake and release of fluoride by ion-leaching cements after exposure to toothpaste" 26 : 591-597, 1998

      4 Toumba KJ, "The prevention of dental caries using fluoride slow-releasing glass devices in children" 30 : 306-307, 1996

      5 Mair LH, "The effect of thermal cycling on the fracture toughness of seven composite restorative materials" 5 : 23-26, 1989

      6 Li J, "Strength and setting behavior of resin-modified glass ionomer cements" 53 : 311-317, 1995

      7 Yap AU, "Short-term fluoride release from various aesthetic restorative materials" 27 : 259-265, 2002

      8 Diaz-Arnold AM, "Short-term Fluoride release/uptake of glass ionomer restoratives" 11 : 96-101, 1995

      9 Jordan RE, "Restoration of fractured and hypoplastic incisors by the acid etch resin technique : a three-year report" 95 : 795-803, 1977

      10 McLean JW, "Proposed nomenclature for glass-ionomer dental cements and related materials(guest editorial)" 25 : 587-589, 1994

      1 박용규, "유동성 레진 수복술에서 접착제 중합 여부에 따른 미세누출과 전단결합강도에 관한 연구" 대한소아치과학회 34 (34): 398-407, 2007

      2 Gladys S, "omparative physico-mechanical characterization of new hybrid restorative materials with conventional glass-ionomer and resin composite restorative materials" 76 : 883-894, 1997

      3 Rothwell M, "The uptake and release of fluoride by ion-leaching cements after exposure to toothpaste" 26 : 591-597, 1998

      4 Toumba KJ, "The prevention of dental caries using fluoride slow-releasing glass devices in children" 30 : 306-307, 1996

      5 Mair LH, "The effect of thermal cycling on the fracture toughness of seven composite restorative materials" 5 : 23-26, 1989

      6 Li J, "Strength and setting behavior of resin-modified glass ionomer cements" 53 : 311-317, 1995

      7 Yap AU, "Short-term fluoride release from various aesthetic restorative materials" 27 : 259-265, 2002

      8 Diaz-Arnold AM, "Short-term Fluoride release/uptake of glass ionomer restoratives" 11 : 96-101, 1995

      9 Jordan RE, "Restoration of fractured and hypoplastic incisors by the acid etch resin technique : a three-year report" 95 : 795-803, 1977

      10 McLean JW, "Proposed nomenclature for glass-ionomer dental cements and related materials(guest editorial)" 25 : 587-589, 1994

      11 Berry LL, "Prophylaxis abrasives affect surface roughness of composites and hybrid ionomers(Abstract No 948)" 73 : 220-, 1994

      12 Attin T, "Properties of resin-modified glass- ionomer restorative materials and two polyacid-modified resin composite materials" 27 : 203-209, 1996

      13 Mathis RS, "Properties of a glassionomer/ resin-composite hybrid material" 5 : 355-358, 1989

      14 Truong VT, "Prediction of in vivo wear in posterior composite resins : a fracture mechanics approach" 4 : 318-327, 1988

      15 Uno S, "Long-term mechanical characteristics of resin-modified glass ionomer restorative materials" 12 : 64-69, 1996

      16 Pearson GJ, "Long-term flexural strength of glass ionomer cements" 12 : 658-660, 1991

      17 Bourke AM, "Light-activated glass polyalkenoate (ionomer) cements : the setting reaction" 20 : 115-120, 1992

      18 Roulet JF, "Influence of oral fluid on composite resin and glass-inomer cement" 52 : 182-189, 1984

      19 Momoi Y, "In vitro toothbrush- dentifrice abrasion of resin-modified glass ionomers" 13 : 82-88, 1997

      20 Indrani DJ, "Fracture toughness of water-aged resin composite restorative materials" 11 : 201-207, 1995

      21 Forsten L, "Fluoride release and uptake by glassionomer and related materials and its clinical effect" 19 : 503-508, 1998

      22 Tay WM, "Fluoride ion diffusion from polyalkenoate (glass-ionomer) cements" 9 : 454-456, 1988

      23 Shaw AJ, "Fluoride Release from glass- ionomer and compomer restorative materials:6-month data" 26 : 355-359, 1998

      24 Momoi Y, "Flexural properties of resin-modified "hybrid" glass-ionomers in comparison with conventional acid-base glassionomers" 14 : 109-119, 1995

      25 Stanford WB, "Effects of finishing on color and gloss of composites with different fillers(Abstr No 451)" 62 : 219-, 1983

      26 Wilson AD, "Developments in glass-ionomer cements" 2 : 438-446, 1989

      27 S¨oderholm KJ, "Degradation of glass filler in experimental composites" 60 : 1867-1875, 1981

      28 Tosaki S, "Current and future trends for light cured systems, Glass-Ionomers. The next generation" 35-46, 1994

      29 Xu X, "Compressive strength, fluoride release and recharge of fluoride-releasing materials" 24 : 2451-2461, 2003

      30 Kuramochi KI, "Characteristics of fluoride-releasing restorative materials after fluoride recharging" 22 : 485-495, 2003

      31 이봉규, "C-factor와 충전법이 복합레진의 중합 수축에 의한 치질에서의 수축 응력에 미치는 영향" 대한소아치과학회 33 (33): 233-243, 2006

      32 Hsu HM, "A continuous flow system for assessing fluoride release/uptake of fluoride-containing restorative materials" 20 : 740-749, 2004

      33 Grobler SR, "A comparison of fluoride release from various dental materials" 26 : 259-265, 1998

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      2018-01-01 평가 등재학술지 선정 (계속평가) KCI등재
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      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      2001-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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