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首页> 外文期刊>Journal of oral rehabilitation >Dimensional stability and dehydration of a thermoplastic polycarbonate-based and two PMMA-based denture resins.
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Dimensional stability and dehydration of a thermoplastic polycarbonate-based and two PMMA-based denture resins.

机译:热塑性聚碳酸酯基和两种PMMA基假牙树脂的尺寸稳定性和脱水性。

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This study compared the dimensional stability and dehydration of a thermoplastic polycarbonate denture base resin with two conventional polymethyl methacrylate denture base resins. Maxillary complete dentures were fabricated from the three denture materials and the accuracy of fit along the posterior palatal border of the cast used in processing was measured. Measurements were conducted at five palatal locations immediately after processing and at 7 and 30 days during immersion in water (23 degrees C) and at 7 and 30 days during dehydration (23 degrees C, 65-75% relative humidity). Percentage mass loss during dehydration was determined with an electronic balance. The thermoplastic material was separately compared with each of the conventional resins using a modified Welch two-sample t-test, with a Bonferroni correction for P values. For mean palatal dimensional change, the thermoplastic resin was generally not statistically different from the conventional resins after processing and during immersion (P> or = 0.06), but was generally less than the conventional resins during dehydration (P < or = 0.02). For mean percentage mass loss, the thermoplastic resin consistently showed much smaller, statistically significant values compared with the conventional resins (P < 0.001). It was concluded that the thermoplastic resin should show dimensional changes in service comparable with the conventional resins, but less dimensional change caused by dehydration.
机译:这项研究将热塑性聚碳酸酯义齿基托树脂与两种传统的聚甲基丙烯酸甲酯义齿基托树脂的尺寸稳定性和脱水性能进行了比较。用三种义齿材料制成上颌全口义齿,并测量沿加工所用铸件的后pa边界的贴合精度。在加工后立即在五个pa位置以及在浸入水(23摄氏度)的第7天和30天以及在脱水期间(23摄氏度,相对湿度65-75%)在第7天和30天进行测量。用电子天平确定脱水过程中的质量损失百分比。使用改进的Welch两样本t检验,将热塑性材料与每种常规树脂分别进行比较,并采用Bonferroni校正P值。对于平均pa尺寸变化,热塑性树脂在加工后和浸入过程中通常与常规树脂没有统计学差异(P>或= 0.06),但在脱水过程中通常小于常规树脂(P <或= 0.02)。对于平均质量损失百分比,与常规树脂相比,热塑性树脂始终显示出更小的统计上显着的值(P <0.001)。结论是,热塑性树脂在使用中应表现出尺寸变化,可与常规树脂相比,但由脱水引起的尺寸变化较小。

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