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首页> 外文期刊>Clinical oral investigations >The diffusion kinetics of a nanofilled and a midifilled resin composite immersed in distilled water, artificial saliva, and lactic acid.
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The diffusion kinetics of a nanofilled and a midifilled resin composite immersed in distilled water, artificial saliva, and lactic acid.

机译:浸在蒸馏水,人造唾液和乳酸中的纳米填充和中填充树脂复合材料的扩散动力学。

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摘要

This study investigated the diffusion kinetics of a nanofilled (Filtek Z350) and a midifill (Filtek P60) resin composite immersed in distilled water, artificial saliva and lactic acid. Resin composite specimens were desiccated, immersed in the media, weighed at suitable time intervals until they reached sorption equilibrium and were then desiccated again. Sorption and solubility (microg/mm(3)) were calculated based on ISO 4049:2000(E). The diffusion coefficient (m(2).s(-1)) was determined according to Flick's second law. The degree of conversion (DC%) was evaluated by FT-IR and the action of the media on the surfaces of the resin composite was evaluated by SEM. Z350 immersed in lactic acid presented the highest sorption (25.9 +/- 1.3). The highest solubility was presented by Z350 immersed in lactic acid (5.6 +/- 0.9), followed by P60 immersed in lactic acid (4.4 +/- 0.5). The other groups presented no significant difference among them. The diffusion coefficients of both resin composites immersed in lactic acid and that of Z350 immersed in artificial saliva were significantly higher. The lowest diffusion coefficient was presented by P60 immersed in distilled water. The DC% was not significant, (p > 0.05). The SEM analysis showed that the effect of lactic acid on the resin composites was more deleterious than those of water and artificial saliva.
机译:这项研究研究了浸入蒸馏水,人造唾液和乳酸中的纳米填充(Filtek Z350)和Midifill(Filtek P60)树脂复合材料的扩散动力学。将树脂复合材料样品干燥,浸入介质中,以合适的时间间隔称重,直到达到吸附平衡,然后再次干燥。吸附和溶解度(microg / mm(3))是根据ISO 4049:2000(E)计算的。根据Flick第二定律确定扩散系数(m(2).s(-1))。通过FT-IR评估转化率(DC%),并且通过SEM评估介质在树脂复合材料表面上的作用。浸在乳酸中的Z350表现出最高的吸附(25.9 +/- 1.3)。将Z350浸入乳酸(5.6 +/- 0.9),然后将P60浸入乳酸(4.4 +/- 0.5),则显示出最高的溶解度。其他组之间没有显着差异。浸入乳酸中的两种树脂复合材料和浸入人工唾液中的Z350的扩散系数均显着较高。通过将P60浸入蒸馏水中可得出最低的扩散系数。 DC%不显着(p> 0.05)。 SEM分析表明,乳酸对树脂复合材料的影响比水和人工唾液的有害性更大。

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