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Polymerization of resin composite restorative materials: exposure reciprocity

机译:树脂复合修复材料的聚合:曝光互易

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Objective. To examine whether there is reciprocity between irradiation time and irradiance with regard to the mechanical properties of filled, resin composite restorative materials (RCs). Methods. Four visible light-cured RCs, all of shade A3, were used: Heliomolar Radiopaque (HR) and Tetric Ceram (TC) (Ivoclar, Schaan, Liechtenstein), Filtek Z250 (FZ) (3M, St Paul, MN, USA) and Prodigy condensable (PR) (Kerr, Orange, CA, USA). Bar specimens (1.0 x 1.5 x 16.0 mm~3) were cured at irradiances (I) ranging from 25-1500 mW/cm~2 and irradiation times (t) of 1―3000 s. Six specimens at 250 combinations of t and I were prepared and stored in artificial saliva of pH 6, at 37 ℃ for 7 d before performing three-point bend tests for flexural strength (F), flexural modulus (E) and total energy to failure (W). Contour plots of property value vs. t and I on log scales were prepared. Results. The contour plots showed three regions: unset at low I·t, a plateau corresponding to more or less full property development, and connecting ramp. The boundary between the plateau and the ramp suggests the minimum acceptable exposure. No practical lower limit to irradiance was detected, but there may be no benefit from increasing I beyond about 1000 mW/cm~2. The slopes of the contours in the log-log plots provided a test of the hypothesis of reciprocity. These slopes were ~ ― 1.5 for HR, TC and PR; and ~ ― 1 for FZ, compared with the expected value of ― 1. The general hypothesis therefore fails. The existence of localized maxima in property values is further evidence of that failure, even for FZ. Significance. Dentists may use any lamp, including LED sources, and attain satisfactory results providing irradiation time is long enough. Manufacturers ought to supply a graph indicating the minimum acceptable exposure for each product for specified curing lamps. Calculations based on total energy delivered to guide irradiation protocols are invalid and do not recognize product behavior.
机译:目的。为了检查填充树脂复合修复材料(RCs)的机械性能,辐照时间和辐照度之间是否存在可逆性。方法。使用四个可见光固化的RC,所有阴影均为A3,分别为:Heliomolar不透射线(HR)和Tetric Ceram(TC)(Ivoclar,Schaan,列支敦士登),Filtek Z250(FZ)(3M,美国明尼苏达州圣保罗)和Prodigy可压缩(PR)(美国加利福尼亚州奥兰治的克尔)。棒状样品(1.0 x 1.5 x 16.0 mm〜3)在25-1500 mW / cm〜2的辐照度(I)和1〜3000 s的辐照时间(t)下固化。制备了六个以t和I的250种组合组成的试样,并在pH值为6的人造唾液中于37℃下保存7 d,然后进行三点弯曲试验,以进行抗弯强度(F),弯曲模量(E)和破坏总能量(W)。绘制了属性值与t和I的对数刻度等高线图。结果。等高线图显示了三个区域:在低I·t时未设置的区域,对应于或多或少完整属性发展的平稳期以及连接坡道。高原和斜坡之间的边界表明可接受的最小暴露量。没有检测到实际的辐照下限,但是将I增加到超过1000 mW / cm〜2可能没有任何好处。在对数-对数图中,轮廓的斜率提供了对互惠性假设的检验。 HR,TC和PR的斜率约为〜1.5; FZ为〜― 1,而预期值为―1。因此,一般假设失败了。即使对于FZ,属性值中局部最大值的存在也是该失败的进一步证据。意义。牙医可以使用任何灯,包括LED光源,只要照射时间足够长,就可以获得满意的效果。制造商应提供一张图表,说明指定固化灯每种产品的最小可接受暴露量。基于为指导辐照方案输送的总能量而进行的计算无效,并且无法识别产品行为。

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