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Biomechanical behavior of maxillary premolars with conservative and traditional endodontic cavities

机译:颌骨前牙腔的颌骨前牙孔的生物力学行为

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Objective: The objective was to evaluate the effects of the configuration of endodontic cavities with parallel or divergent walls, versus traditional endodontic cavities, on stress distribution, fracture resistance, and fracture mode of maxillary premolars by using both fracture-strength and finite element tests. Method and materials: Thirty-two maxillary first premolars were divided into four groups (n = 8), according to the type of endodontic cavities: without endodontic cavities (control); conservative; conservative with diverging walls; and traditional. After performing root canal treatment and restoration, fracture resistance was evaluated by oblique compressive load. The stress distribution was evaluated by nonlinear finite element analysis by means of micro-computed tomography, operated at 50 kV and 800 mA. The fracture resistance data were analyzed by statistical software. Results: Higher stress concentration was observed on the coronal portion of the palatal cusp and the palatal root dentin. Stress concentration on the palatal root dentin was similar for all groups. The stress level on the palatal cusp and at the proximal crests was slightly increased in the traditional endodontic cavities group compared with conservative endodontic cavities. Stress distribution in restored teeth was similar to that of intact teeth. No significant differences were observed in the fracture resistance among different endodontic cavities' design (P = .32). All groups had values similar to those of the control group (P > .05). Conclusions: Regardless of the cavity design, conservative endodontic cavities that preserve marginal ridge integrity did not affect the resistance to fracture, failure mode, or stress distribution in maxillary premolars restored with composite resin. Endodontically treated teeth displayed biomechanical behavior similar to sound teeth.
机译:目的:目的是评估牙髓间腔的构造与平行或发散壁,与传统胸腔腔,通过使用裂缝强度和有限元试验的压力分布,断裂抗性和骨折模式的应力分布,断裂抗性和断裂模式。方法和材料:根据牙髓腔的类型:没有牙髓腔(对照),将三十二个上颌第一前磨牙分为四组(n = 8);保守的;保守墙壁;和传统。在进行根管治疗和恢复后,通过倾斜压缩载荷评估断裂抗性。通过微计算机断层扫描的非线性有限元分析评估应力分布,在50kV和800 mA下操作。通过统计软件分析裂缝抗性数据。结果:在腭尖和腭根牙本质的冠状部分上观察到更高的应力浓度。所有基团的腭根牙本质上的应力浓度相似。与保守牙髓腔相比,传统的胸腔腔内腭尖和近端波峰的应力水平略有增加。恢复牙齿的应力分布类似于完整的牙齿。在不同牙髓腔设计中没有观察到骨折抗性差异(p = .32)。所有组都具有与对照组的值类似(P> .05)。结论:无论腔设计,保守牙髓腔,保留边缘脊型完整性的耐骨折,失效模式或用复合树脂恢复的上颌前磨牙中的应力分布。牙髓处理的牙齿显示出类似于声牙的生物力学行为。

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