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各种咬合夹板材料和制造工艺的耐磨性评价。

Evaluation of wear behaviour of various occlusal splint materials and manufacturing processes.

机构信息

Faculty of Dentistry, Sir John Walsh Research Institute, University of Otago, New Zealand.

Faculty of Dentistry, Sir John Walsh Research Institute, University of Otago, New Zealand.

出版信息

J Mech Behav Biomed Mater. 2022 Feb;126:105053. doi: 10.1016/j.jmbbm.2021.105053. Epub 2022 Jan 1.

Abstract

OBJECTIVES

To investigate the volumetric and vertical loss of occlusal splints manufactured by conventional (heat-cure), subtractive (CAD/CAM) and additive (3D-printing) methods.

METHODS

Six occlusal splint materials were investigated (n = 126), using three manufacturing methods: heat-cured, CAD/CAM and 3D-printed built-in three different printing angles (0°,45°and 90°). Block-on-ring wear testing was performed with extracted human molars as the antagonist. All samples were tested with an applied force of 49N at 1 Hz and 60RPM in artificial saliva at 37 °C for six and 12 months. Scanning electron microscopy images were analysed to evaluate the wear on the tooth enamel and in the splint material. Volumetric and vertical wear loss were statistically analysed.

RESULTS

The lowest volumetric and vertical loss was observed in CAD-CAM materials (6.44 ± 1.77 mm and 48.3 ± 7.14 μm) with no statistical significance to the heat-cured material (17.22 ± 9.23 mm and 148 ± 121.1 μm) after 12 months (p < 0.172). The mean volumetric loss of 3D printed materials ranged from 0.25 ± 0.15 mm to 0.29 ± 0.1 4mm with no statistical difference, whereas, the differences in vertical loss from 131.63 ± 44.1 μm to 493 ± 79.19 μm were statistically significant (p < 0.001). The highest vertical loss was observed in the KeySplint Soft 3D printed at 90° (385.35 ± 82.37 μm), whereas FreePrint Splint 2.0 with a build angle of 0° had the highest volumetric loss (204.59 ± 25.67 mm).

CONCLUSION

CAD-CAM material had the highest wear resistance followed by heat-cured material.KeySplint Soft and FreePrint Splint 2.0 3D printed materials would be preferred for patients that do not have severe bruxing episodes. No significant wear of human enamel after six and 12 months was observed under SEM for any tested materials.

摘要

目的

研究传统(热固)、减法(CAD/CAM)和加法(3D 打印)方法制造的咬合垫的体积和垂直损失。

方法

使用三种制造方法研究了六种咬合垫材料(n=126):热固、CAD/CAM 和内置 3D 打印(在三个不同的打印角度 0°、45°和 90°)。采用提取的人磨牙作为对颌,进行块环磨损试验。所有样品均在人工唾液中以 49N 的力、1Hz 和 60RPM 的频率、37°C 的温度下测试 6 个月和 12 个月。使用扫描电子显微镜图像分析评估牙釉质和垫材料的磨损情况。对体积和垂直磨损损失进行了统计学分析。

结果

在 12 个月后,CAD/CAM 材料的体积和垂直磨损损失最低(6.44±1.77mm 和 48.3±7.14μm),与热固材料(17.22±9.23mm 和 148±121.1μm)无统计学差异(p<0.172)。3D 打印材料的平均体积损失范围为 0.25±0.15mm 至 0.29±0.14mm,无统计学差异,而垂直损失从 131.63±44.1μm 到 493±79.19μm 的差异具有统计学意义(p<0.001)。KeySplint Soft 3D 打印在 90°时观察到最高的垂直磨损(385.35±82.37μm),而 FreePrint Splint 2.0 具有 0°的构建角度,其体积损失最高(204.59±25.67mm)。

结论

CAD/CAM 材料具有最高的耐磨性,其次是热固材料。KeySplint Soft 和 FreePrint Splint 2.0 3D 打印材料将优先用于没有严重磨牙症发作的患者。在任何测试材料下,在 SEM 下均未观察到 6 个月和 12 个月后人类牙釉质的明显磨损。

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