首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Micro energy-dispersive X-Ray fluoresence mapping of enamel and dental materials after chemical erosion
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Micro energy-dispersive X-Ray fluoresence mapping of enamel and dental materials after chemical erosion

机译:化学腐蚀后牙釉质和牙科材料的微能量色散X射线荧光图

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摘要

Energy-dispersive X-ray fluorescence was employed to test the hypothesis that beverage consumption or mouthwash utilization will change the chemical properties of dental materials and enamel mineral content. Bovine enamel samples (n = 45) each received two cavity preparations (n = 90), each pair filled with one of three dental materials (R: nanofilled composite resin; GIC: glass-ionomer cement; RMGIC: resin-modified GIC). Furthermore, they were treated with three different solutions (S: saliva; E: erosion/Pepsi Twist?; or EM: erosion+mouthwash/Colgate Plax?). It was found that mineral loss in enamel was greater in GICE samples than in RE > RMGICE > RMGICEM > REM > GICEM. An increased percentage of Zr was found in REM indicating organic matrix degradation. Dental materials tested (R, GIC, and RMGIC) were not able to protect adjacent enamel from acid erosion by the soft drink tested. The use of mouthwash promoted protection of enamel after erosion by the soft drink. To avoid chemical dissolution by mouthwashes, protection by resin composites with surface sealants is recommended.
机译:能量色散X射线荧光用于检验以下假设:饮料消费或漱口水利用会改变牙科材料的化学性质和牙釉质矿物质含量。牛牙釉质样品(n = 45)每个接受两个腔准备(n = 90),每对都填充三种牙科材料中的一种(R:纳米填充复合树脂; GIC:玻璃离聚物水泥; RMGIC:树脂改性的GIC)。此外,它们用三种不同的溶液处理(S:唾液; E:糜烂/百事可乐?;或EM:糜烂+漱口水/ Colgate Plax?)。发现在GICE样品中搪瓷中的矿物质损失比RE> RMGICE> RMGICEM> REM> GICEM中的矿物质损失更大。发现REM中Zr百分比增加,表明有机基质降解。被测试的牙科材料(R,GIC和RMGIC)不能通过被测试的软饮料保护相邻的牙釉质免受酸蚀。漱口水的使用可促进软饮料冲蚀后对牙釉质的保护。为避免漱口液化学溶解,建议使用带有表面密封剂的树脂复合材料进行保护。

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