Jrab Buthaina, Rahman Saleh Abdul, Al-Jadaa Anas, Jurado Carlos A, Saeed Musab H, Afrashtehfar Kelvin I
Clinical Sciences Department, College of Dentistry, Ajman University, Ajman City P.O. Box 346, United Arab Emirates.
Center of Medical and Bio-Allied Health Sciences Research, Ajman University, Ajman City P.O. Box 346, United Arab Emirates.
Saudi Dent J. 2024 Sep;36(9):1215-1220. doi: 10.1016/j.sdentj.2024.07.002. Epub 2024 Jul 2.
This study investigated the fracture resistance and failure modes of custom-fabricated post- and core dental restorations using various CAD/CAM materials.
Seventy-five mandibular second premolars were allocated to five groups (n = 15) and prepared for standardized post and core restorations. The groups included a control group comprising cast metal and four CAD/CAM materials: Vita Enamic, Shofu HC, Trilor, and PEKK. Fracture resistance was assessed using a compressive force at a crosshead speed of 1 mm/min until failure occurred. Data were analyzed using one-way analysis of variance (ANOVA) and chi-square tests.
The metal group had the highest fracture resistance (244.41 ± 75.20 N), with a significant variance compared to that in the CAD/CAM groups (p < 0.001). No significant differences were observed among the non-metallic groups.
While several CAD/CAM materials displayed satisfactory flexural properties, cast metal posts showed superior fracture resistance in endodontically treated teeth but were mostly associated with catastrophic failure. The clinical application of CAD/CAM materials for post-core restorations presents a viable alternative to traditional metal posts, potentially reducing the risk of unfavorable fractures.
本研究调查了使用各种CAD/CAM材料定制的桩核牙修复体的抗折性和失败模式。
将75颗下颌第二前磨牙分为五组(n = 15),并准备进行标准化的桩核修复。这些组包括一个由铸造金属组成的对照组和四种CAD/CAM材料:维他易美(Vita Enamic)、松风HC(Shofu HC)、特里洛尔(Trilor)和聚醚酮酮(PEKK)。使用十字头速度为1 mm/min的压缩力评估抗折性,直至发生失败。使用单因素方差分析(ANOVA)和卡方检验分析数据。
金属组具有最高抗折性(244.41±75.20 N),与CAD/CAM组相比差异显著(p < 0.001)。在非金属组之间未观察到显著差异。
虽然几种CAD/CAM材料表现出令人满意的弯曲性能,但铸造金属桩在根管治疗后的牙齿中显示出更高的抗折性,但大多与灾难性失败相关。CAD/CAM材料用于桩核修复的临床应用是传统金属桩的可行替代方案,有可能降低不良骨折的风险。