Kasem Ammar T, Abo-Madina Manal, Tribst João Paulo M, Al-Zordk Walid
Fixed Prosthodontics Department, Faculty of Dentistry, Mansoura University, Mansoura, Egypt.
Fixed Prosthodontics Department, Faculty of Dentistry, Delta University for Science and Technology, Mansoura, Egypt.
J Prosthodont Res. 2023 Oct 13;67(4):595-602. doi: 10.2186/jpr.JPR_D_22_00226. Epub 2023 Feb 11.
To evaluate the influence of retainer design and ceramic materials on the durability of minimally invasive cantilever resin-bonded fixed dental prostheses (RBFDPs) after artificial aging.
One hundred caries-free human mandibular molars were prepared as abutments for all-ceramic cantilevered fixed dental prostheses using the following retainer designs: One wing (OW), Two wings (TW), Inlay ring (IR), Lingual coverage (LC), and Occlusal coverage (OC). Two ceramic materials were used: monolithic high translucent zirconia(z) and zirconia-reinforced lithium disilicate (ZLS) (n=10). All restorations were adhesively bonded with resin cement. The thermocycling of the specimens were performed between 5°C and 55°C for 10,000 cycles and then exposed to 240.000 cycles of dynamic loading on a chewing simulator. All surviving specimens were loaded onto the pontic until failure using a universal testing machine.
The mean failure load ranged from 124.00 to 627.00 N for the zirconia groups and from 133.30 to 230.00 N for the ZLS groups. Regarding the materials, a significantly higher failure load was recorded in the zirconia groups than in the ZLS groups (P<0.001), except for OW (P=0.748). Regarding the retainer designs, a significant different failure load was recorded between the different designs except for IR and LC in the zirconia groups, IR and OC, OW and TW, and TW and LC in the ZLS groups (P<0.001).
Zirconia IR, LC, and OC can be used as cantilever RBFDP in the premolar region. The fracture resistance of the ZLS design was below the normal bite force and should not be recommended as the first option.
评估固位体设计和陶瓷材料对人工老化后微创悬臂式树脂粘结固定义齿(RBFDPs)耐久性的影响。
选取100颗无龋的人类下颌磨牙作为全瓷悬臂式固定义齿的基牙,采用以下固位体设计:单翼(OW)、双翼(TW)、嵌体环(IR)、舌侧覆盖(LC)和咬合面覆盖(OC)。使用两种陶瓷材料:整体式高透氧化锆(z)和氧化锆增强二硅酸锂(ZLS)(n = 10)。所有修复体均用树脂粘结剂粘结。对标本进行5℃至55℃的热循环10000次,然后在咀嚼模拟器上进行240000次动态加载。所有存活的标本使用万能试验机加载到桥体上直至破坏。
氧化锆组的平均破坏载荷为124.00至627.00N,ZLS组为133.30至230.00N。关于材料,除OW外(P = 0.748),氧化锆组的破坏载荷显著高于ZLS组(P < 0.001)。关于固位体设计,除氧化锆组的IR和LC、ZLS组的IR和OC、OW和TW以及TW和LC外,不同设计之间的破坏载荷有显著差异(P < 0.001)。
氧化锆IR、LC和OC可用于前磨牙区的悬臂式RBFDP。ZLS设计的抗折性低于正常咬合力,不应作为首选推荐。