Messer-Hannemann Philipp, Samadi Mariam, Böttcher Henrik, Duy Sebastian, Duy Daniela, Albrecht Niclas, Schwendicke Falk, Effenberger Susanne
DMG Dental-Material Gesellschaft mbH, 22547 Hamburg, Germany.
SD Mechatronik GmbH, 83620 Feldkirchen-Westerham, Germany.
Materials (Basel). 2022 Aug 8;15(15):5440. doi: 10.3390/ma15155440.
The aim of this study was the development of a test regime to determine the wear resistance and predict the clinical performance of conventional glass ionomer cement (GIC) restorations in Class I tooth cavities. Cavities were prepared in excised human teeth and restored using three conventional glass ionomer restorative materials: DeltaFil, Fuji IX GP and Ketac Universal. The restored teeth were mechanically and thermally stressed using a chewing simulator with a maximum number of 1,200,000 load cycles. Besides determining the number of cycles achieved, the abrasion volume after termination of the chewing simulation was calculated using µCT images. All teeth restored with DeltaFil reached 1,200,000 cycles without any restoration failure. Only 37.5% of the restorations each with Ketac Universal and Fuji IX GP were able to achieve the maximum cycle number. A significant lower abrasion volume for restorations with DeltaFil compared to Ketac Universal ( = 0.0099) and Fuji IX GP ( = 0.0005) was found. Laboratory chewing simulations are a useful tool to study basic wear mechanisms in a controlled setting with in-vivo related parameters. DeltaFil shows an improved wear resistance compared to other conventional GICs, indicating the high potential of this material for long-lasting Class I restorations.
本研究的目的是开发一种测试方案,以确定传统玻璃离子水门汀(GIC)I类洞修复体的耐磨性并预测其临床性能。在拔除的人牙上制备洞型,并用三种传统玻璃离子修复材料进行修复:DeltaFil、Fuji IX GP和Ketac Universal。使用咀嚼模拟器对修复后的牙齿进行机械和热应力加载,最大加载循环次数为120万次。除了确定达到的循环次数外,还使用μCT图像计算咀嚼模拟结束后的磨损体积。所有用DeltaFil修复的牙齿均达到120万次循环,无任何修复失败。使用Ketac Universal和Fuji IX GP修复的牙齿中,只有37.5%能够达到最大循环次数。与Ketac Universal(P = 0.0099)和Fuji IX GP(P = 0.0005)相比,DeltaFil修复体的磨损体积显著更低。实验室咀嚼模拟是一种在具有体内相关参数的受控环境中研究基本磨损机制的有用工具。与其他传统GIC相比,DeltaFil显示出更好的耐磨性,表明这种材料在持久的I类修复方面具有很高的潜力。