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Fluoride Release and Recharge Ability of A Novel Fluoride Release Composite Resin

机译:一种新型氟化物释放复合材料树脂的氟化物释放和再充电能力

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Objective: To evaluate the fluoride release rates and fluoride recharge capability of a experimental resin composite, a compomer, a giomer and a resin-modified glass ionomer cement. Methods: Ten disc specimens of each material were prepare and polished with abrasive paper, followed by clearing with oil-free compressed air jet. The specimens were placed in a plastic vessel containing 5ml deionized water immediately after fabrication. Each specimen was removed and put to a new a vessel containing deionized water each day, and the sample solution was test for fluoride concentration each day using a compound fluoride ion selective electrode and a conductivity meter. All specimens were removed from container after 28 days and were "recharged" by immersing in a fluoride foam solution for four minutes. Then fluoride release from these recharged samples was measured daily for 7 days. Recharge was repeated three times. Result: Fuji II LC demonstrated the highest fluoride release ( p <0.01), followed by experimental resin and Compoglass. Both Beautiful and Charisma presented the lowest fluoride release ( p <0.01) during the first two weeks. All materials except Charisma demonstrated a sharp decline of fluoride release, followed by a comparatively stable stage of fluoride release for about twenty days. All materials presented fluoride release increase substantially one day after recharge but declines rapidly almost to the baseline level after 2 days except for Fuji II LC that showed a continual fluoride release for 5 days. Conclusion: The experimental composite resin has a capability of fluoride release and recharge that are comparable to compomers.
机译:目的:评价实验树脂复合材料,传感器,胶质器和树脂改性玻璃离聚物水泥的氟化物释放速率和氟化物补给能力。方法:用磨料纸制备和抛光每种材料的十个椎间盘标本,然后用无油压缩空气射流清零。制造后立即将样品置于含有5ml去离子水的塑料容器中。将每个样品除去并用每天含有去离子水的新血管,并使用化合物离子选择电极和电导率计试验氟化物浓度。在28天后将所有样品除去,并通过浸入氟化物泡沫溶液中进行4分钟,“再充电”。然后每天测量来自这些再充电样品的氟化物释放7天。充电重复三次。结果:富士II LC展示了最高的氟化物释放(P <0.01),然后是实验树脂和铜糖。美丽和魅力均在前两周内呈现最低的氟化物释放(P <0.01)。除魅力外的所有材料表现出氟化物释放的急剧下降,其次是氟化物释放的相对稳定的阶段约20天。所有材料均为氟化物释放在补充后一天增加,但在2天后几乎迅速下降,除了富士II LC,含有连续氟化物释放5天。结论:实验性复合树脂具有氟化物释放能力和与传感器相当的充电能力。

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