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用牙胶、三氧化矿物凝聚体和磷酸钙骨水泥增强和修复不成熟牙根的抗折性能:标准化的体外模型。

Fracture resistance and reinforcement of immature roots with gutta percha, mineral trioxide aggregate and calcium phosphate bone cement: a standardized in vitro model.

机构信息

Department of Paediatric Dentistry and Special Care, PaeCaMeD Research, Ghent, Belgium.

出版信息

Dent Traumatol. 2010 Apr;26(2):137-42. doi: 10.1111/j.1600-9657.2010.00869.x. Epub 2010 Feb 5.

Abstract

Endodontic treatment of immature teeth is often complicated because of flaring root canals and open apices for which apexification is needed. Long-term prognosis for these teeth is surprisingly low because of cervical root fractures occurring after an impact of weak forces. In this study, an experimental model was developed to determine the fracture resistance of immature teeth and to test the hypothesis that endodontic materials succeed in reinforcing them. Compact and hollow bone cylinders from bovine femurs were used as standardized samples. In order to evaluate the experimental model, fracture resistance in both groups was evaluated by determining the ultimate force to fracture (UFF) under diametral tensile stress. Analysis of variance (ANOVA) revealed a statistically significant difference between the mean values of UFF for both groups, independently of the sampling location or subject. In a following setting, the hypothesis that obturation with gutta percha (GP), mineral trioxide aggregate (MTA), or calcium phosphate bone cement (CPBC) reinforces the hollow bone samples was investigated. Obturation resulted in a significant reinforcement for all materials, but the degree of reinforcement depended on the material. The experimental model appeared to be suitable for in vitro investigation of reinforcement and fracture resistance in a standardized way.

摘要

牙髓治疗未成熟牙常常较为复杂,因为这些牙齿的根管口敞开,且根管口有喇叭口状的张开,需要进行根尖诱导成形术。由于轻微外力作用导致的颈部根折,这些牙齿的长期预后令人惊讶地较差。在这项研究中,开发了一个实验模型,以确定未成熟牙的抗折能力,并验证牙髓治疗材料是否能够成功增强其强度的假设。使用来自牛股骨的致密和中空骨圆柱体作为标准化样本。为了评估实验模型,通过在直径拉伸应力下确定最终断裂力 (UFF) 来评估两组的抗折能力。方差分析 (ANOVA) 显示,两组 UFF 的平均值之间存在统计学显著差异,而与采样位置或个体无关。在接下来的设置中,研究了使用牙胶 (GP)、三氧化矿物凝聚体 (MTA) 或磷酸钙骨水泥 (CPBC) 进行根管充填是否能增强中空骨样本的假设。所有材料的根管充填都显著增强了抗折能力,但增强程度取决于材料。该实验模型似乎适合以标准化的方式对增强和抗折能力进行体外研究。

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