首页> 外文期刊>The Journal of Prosthetic Dentistry >Influence of restorative technique on the biomechanical behavior of endodontically treated maxillary premolars. Part II: strain measurement and stress distribution.
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Influence of restorative technique on the biomechanical behavior of endodontically treated maxillary premolars. Part II: strain measurement and stress distribution.

机译:修复技术对牙髓治疗的上颌前磨牙的生物力学行为的影响。第二部分:应变测量和应力分布。

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STATEMENT OF PROBLEM: Unresolved controversy exists concerning the preferred cavity design and restorative technique used to restore endodontically treated maxillary premolars to minimize strain and improve stress distribution under occlusal load. PURPOSE: The purpose of this study was to analyze the influence of cavity design and restorative material on strain measurement and stress distribution in maxillary premolars under occlusal loading conditions, and correlate these influences with the failure modes analyzed in Part I. MATERIAL AND METHODS: For the strain gauge test, 21 additional specimens were prepared as described in Part 1 of this study (n=3). Two strain gauges were fixed on the buccal (B) and palatal (P) cusps of each specimen with cyanoacrylate adhesive. The specimens were submitted to continuous axial compression loading at a speed of 0.5 mm/min, using a 6-mm sphere, to a maximum limit of 150 N in a universal testing machine. Total strain values were obtained by combining the B and P cuspstrain values. These values were submitted to 2-way ANOVA and the Dunnet test (alpha=.05). For finite element analyses, 7 numerical 2-D models were generated: MODd, direct mesio-occlusal-distal preparation; MODi, indirect mesio-occlusal-distal preparation; AM, MODd restored with amalgam; CR, MODd restored with composite resin; LPR, MODi restored with laboratory-processed composite resin; and LGC, MODi restored with leucite-reinforced glass ceramic; each corresponding to 1 of the experimental groups tested in Part I of this study. The models were analyzed with finite element software, using the von Mises criteria for stress distribution analysis. RESULTS: With the strain gauge test, MODd, MODi, and AM groups showed significantly higher strain values than the CR, LPR, and LGC. Finite element analyses revealed that tooth structure removal and the type of restorative material altered the stress distribution pattern. The MODd, MODi, AM, and LPR models showed higher stress concentration within the tooth structure. CONCLUSIONS: The specimens with adhesive restorations were shown to behave in a manner similar to the biomechanical behavior of healthy teeth, while the behavior of those restored with amalgam restorations was more like that observed for teeth with nonrestored cavity preparations. These results directly correlate with the fracture mode results obtained in Part I of this study.
机译:问题陈述:关于用于修复经牙髓治疗的上颌前磨牙以减小应变并改善咬合负荷下应力分布的首选腔体设计和修复技术的争议尚未解决。目的:本研究的目的是分析咬合负荷条件下腔设计和修复材料对上颌前磨牙的应变测量和应力分布的影响,并将这些影响与第一部分中分析的破坏模式相关联。材料与方法:在应变仪测试中,按照本研究的第1部分(n = 3)中的描述,另外准备了21个样品。用氰基丙烯酸酯粘合剂将两个应变仪固定在每个标本的颊(B)和pa(P)尖上。在6毫米的球体上,样品以0.5毫米/分钟的速度承受连续的轴向压缩载荷,在通用试验机中最大极限为150N。通过组合B和P cuscustrain值获得总应变值。将这些值提交给2-way ANOVA和Dunnet检验(alpha = .05)。对于有限元分析,生成了7个二维2-D模型:MODd,直接近-远-远-远准备; MODi,间接近中颌远端准备; AM,MODd用汞合金恢复; CR,MODd用复合树脂恢复; LPR,MODi用实验室加工的复合树脂恢复; LGC,MODi用白云石增强玻璃陶瓷修复;每个对应于本研究第一部分中测试的实验组中的1个。使用von Mises准则进行应力分布分析,并使用有限元软件对模型进行了分析。结果:通过应变片测试,MODd,MODi和AM组显示出比CR,LPR和LGC高得多的应变值。有限元分析表明,去除牙齿结构和修复材料的类型改变了应力分布模式。 MODd,MODi,AM和LPR模型显示了牙齿结构内较高的应力集中。结论:具有粘合修复体的标本表现出与健康牙齿的生物力学行为相似的行为,而采用汞合金修复体修复的标本的行为更类似于未经修复腔体准备的牙齿所观察到的。这些结果与本研究第一部分获得的断裂模式结果直接相关。

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