Department of Prosthodontics, Regensburg University Medical Center, Regensburg, Germany.
Int J Prosthodont. 2011 Sep-Oct;24(5):465-8.
The influence of resilient support of abutment teeth on the fracture resistance of all-ceramic three-unit fixed partial dentures (FPDs) was tested in this study.
Three groups (n = 8) of glass-infiltrated, alumina-based, all-ceramic FPDs that were adhesively bonded to human molar teeth were investigated. In control group A, teeth that were rigidly inserted in polymethyl methacrylate (PMMA) resin were used for thermocycling and mechanical loading (TCML), as well as for fracture testing. In group B, TCML was conducted on teeth that had their roots covered with a polyether layer. After TCML, the polyether layer was removed entirely, and the teeth were rigidly fixed in PMMA for fracture testing. In group C, teeth roots remained covered with a polyether layer during TCML as well as during fracture testing. Using a resilient attachment, tooth mobility was determined in axial, buccal, and oral directions.
Mean tooth mobility was 76 ± 4 Μm in the axial direction, 278 ± 41 Μm in the buccal direction, and 128 ± 17 Μm in the oral direction. Group C showed the lowest mean fracture strength (polyether during both TCML and fracture testing) of 523 N. For group B (polyether during TCML but not during fracture testing), a fracture strength of 676 N was found, and for control group A (rigidly embedded teeth), it was 919 N.
These results confirmed the influence of resilient attachments on the aging process and fracture strength testing of FPDs. Fracture resistance was significantly reduced when this particular interface was used in both TCML and fracture testing.
本研究旨在测试基托牙弹性支持对全瓷三单位固定局部义齿(FPD)抗折性能的影响。
研究了三组(每组 8 个)黏接于人磨牙的玻璃渗透氧化铝基全瓷 FPD。在对照组 A 中,刚性插入聚甲基丙烯酸甲酯(PMMA)树脂中的牙齿用于热循环和机械加载(TCML)以及断裂测试。在组 B 中,对根部用聚醚层覆盖的牙齿进行 TCML。TCML 后,完全去除聚醚层,然后将牙齿刚性固定在 PMMA 中进行断裂测试。在组 C 中,牙齿根部在 TCML 和断裂测试期间均用聚醚层覆盖。使用弹性附着体,确定了轴向、颊向和舌向的牙齿动度。
轴向平均牙齿动度为 76 ± 4 Μm,颊向为 278 ± 41 Μm,舌向为 128 ± 17 Μm。组 C 的平均断裂强度(TCML 和断裂测试期间均使用聚醚)最低,为 523 N。对于组 B(TCML 期间使用聚醚,但断裂测试期间不使用),发现断裂强度为 676 N,对于对照组 A(刚性嵌入的牙齿),断裂强度为 919 N。
这些结果证实了弹性附着体对 FPD 老化过程和断裂强度测试的影响。当在 TCML 和断裂测试中均使用该特定界面时,抗折强度显著降低。