Int J Oral Maxillofac Implants. 2023 Mar-Apr;38(2):328-333. doi: 10.11607/jomi.9693.
To evaluate the effect of chewing simulation and thermocyclic aging on the fracture resistance of CAD/CAM monolithic zirconia crowns supported by titanium and Ti-base abutments. Two implant abutment groups-titanium (Ti) and titanium base (Ti-base; Medentika)-were used. A total of 40 mandibular first molar CAD/CAM monolithic zirconia crowns (Vita YZ T) were fabricated, then cemented onto the abutments with Panavia V5. Each abutment group was divided into two subgroups (n = 10). The Ti and Ti-base groups were subjected to a single load until fracture, and the Ti/CT and Ti-base/CT groups (CT: chewing simulation and thermocyclic aging) underwent chewing simulation (1.2 × 10 cycles × 50 N load, 1.4 Hz) and thermocylic aging (3,911 cycles/5°C to 55°C). The fracture resistances of the crowns were tested with a universal testing machine (1 mm/minute). Shapiro-Wilk and one-way ANOVA test were used for statistical analysis ( = .05). The survival rates after chewing simulation and thermocyclic aging were 100% for both CT groups. The fracture resistance values (mean ± SD) of the groups were as follows: Ti = 1,718.18 ± 331.06 N, Ti-base = 1,713.53 ± 233.24 N, Ti/CT = 1,664.82 ± 188.62 N, and Ti-base/CT = 1,551.28 ± 344.79 N. According to one-way ANOVA test results, there was no statistically significant difference between the four groups ( = .526). CAD/CAM monolithic zirconia crowns supported by Ti-base or titanium abutments were found to have sufficient fracture resistance in the treatment of an absent single posterior tooth. However, more in vitro and clinical studies are required to evaluate the long-term performance of Ti-base abutments and CAD/CAM zirconia crowns.
评估咀嚼模拟和热循环老化对钛和钛基种植体支持的 CAD/CAM 整体氧化锆冠的抗断裂能力的影响。使用了两种种植体基台组-钛(Ti)和钛基(Ti 基;Medentika)。共制作了 40 个下颌第一磨牙 CAD/CAM 整体氧化锆冠(Vita YZ T),然后用 Panavia V5 将其粘接到基台上。每个基台组分为两个亚组(n = 10)。Ti 和 Ti 基组承受单次负载直至断裂,Ti/CT 和 Ti 基/CT 组(CT:咀嚼模拟和热循环老化)进行咀嚼模拟(1.2×10 次循环×50 N 负载,1.4 Hz)和热循环老化(3911 次循环/5°C 至 55°C)。使用万能试验机(1 毫米/分钟)测试冠的抗断裂能力。使用 Shapiro-Wilk 和单因素方差分析进行统计分析( =.05)。CT 组在咀嚼模拟和热循环老化后的存活率均为 100%。各组的抗断裂能力值(平均值±标准差)如下:Ti = 1718.18±331.06 N,Ti 基 = 1713.53±233.24 N,Ti/CT = 1664.82±188.62 N,Ti 基/CT = 1551.28±344.79 N。根据单因素方差分析检验结果,四组间无统计学差异( =.526)。钛基或钛基种植体支持的 CAD/CAM 整体氧化锆冠在治疗单个缺失后牙时具有足够的抗断裂能力。然而,需要更多的体外和临床研究来评估 Ti 基基台和 CAD/CAM 氧化锆冠的长期性能。