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Effect of post-restoration on stresses in premolars with endodontic-periodontal lesion: an FEA study

机译:修复后对牙髓牙牙周病变前磨牙应力的影响:FEA 研究

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Aim: This finite elemental stress analysis (FEA) study was aimed to test the effect of fiber and metal posts on stress distribution in premolar teeth with endodontic-periodontal (EP) lesion. Methodology: Three FEA models representing different EP lesions (primary endodontic disease (PED), PED with periodontal involvement and true-combined) were created. Tooth-model without EP lesion was used as control. The root-canals were assumed as root-filled, restored using glass-fiber or metal posts, resin composite build-up, and ceramic crown. A 300 N load was applied from the palatal surface of the crown with a 135 degrees angle. The SolidWorks/Cosmosworks structural analysis program was used for FEA analysis. Results were presented by considering von Mises criteria. Results: Maximum stress values for PED, PED with periodontal-involvement and true-combined lesions were 2.26, 1.25, 0.74 MPa for glass-fiber post; 2.08, 1.51, 1.18 MPa for metal post, respectively. If there is PED, fiber-post gave an advantage to the tooth at core structure and coronal third of the root. Metal post kept the stress inside its body however caused small, high stress concentrated areas at cervical. When there is PED with periodontal-involvement, metal post forwarded less stress toward the apical while fiber-post saved the coronal structure. In true-combined lesion model, metal post kept the stresses within its body and forwarded less stress toward the remaining root structure and periodontium. Conclusion: EP lesions have an effect on stress distribution therefore the post material selection should be done based on the severity of the lesion. Metal posts might be preferrable since it forwards less stress toward the surrounding periodontal tissues during wound healing.
机译:目的:这项有限元素应力分析 (FEA) 研究旨在测试纤维和金属柱对牙髓牙周 (EP) 病变的前磨牙应力分布的影响。方法:创建了三个代表不同 EP 病变(原发性牙髓病 (PED)、牙周受累的 PED 和真实联合)的 FEA 模型。采用无EP病变的牙齿模型作为对照。根管被假定为根部填充,使用玻璃纤维或金属柱、树脂复合材料堆积和陶瓷冠进行修复。从牙冠的腭面以 135 度角施加 300 N 的载荷。SolidWorks/Cosmosworks 结构分析程序用于有限元分析。通过考虑 von Mises 标准来呈现结果。结果:玻璃纤维柱对PED、PED伴牙周受累和真实合并病变的最大应力值分别为2.26、1.25、0.74 MPa;金属柱分别为2.08、1.51、1.18 MPa。如果有PED,纤维柱在核心结构和牙根冠状三分之一处为牙齿提供了优势。金属柱将压力保持在体内,但在颈椎处造成小而高的压力集中区域。当有牙周受累的PED时,金属柱向顶端的应力较小,而纤维柱则保留了冠状结构。在真实联合病变模型中,金属柱将应力保持在其体内,并将较小的应力转发到剩余的牙根结构和牙周组织。结论:EP病变对应力分布有影响,应根据病变的严重程度进行后料选择。金属柱可能更可取,因为它在伤口愈合过程中向周围牙周组织传递的压力较小。

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