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首页> 外文期刊>Journal of Biomechanics >Mechanical behaviour of endodontic restorations with multiple prefabricated posts: A finite-element approach.
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Mechanical behaviour of endodontic restorations with multiple prefabricated posts: A finite-element approach.

机译:具有多个预制桩的牙髓修复体的力学行为:一种有限元方法。

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This paper investigates some mechanical aspects of a new endodontic restoration technique, based on the idea that the root cavity can be more efficiently filled if multiple prefabricated composite posts (PCP) are employed. Multi-post technique increases bearing capacity and durability of endodontically treated teeth, as shown by numerical simulations performed through three-dimensional elastic finite-element static analyses of a lower premolar, constrained by a non-linearly elastic spring system representing the periodontal ligament, under several parafunctional loads. The influence of PCPs' number, material and dimensions is investigated by comparison of the resulting stress fields with those obtained in cases of traditional restorations (cast metal post and cemented single-PCP) and natural tooth, highlighting the advantages of the proposed technique when standard restorative materials are considered. A risk-analysis of root-fracture and interface-failure shows that cast gold-alloy post produces high stress concentrations at post-dentin interface, whereas multi-post solution leads to a behaviour closer to the natural tooth's, exhibiting some advantages with respect to single-PCP restorations. As a matter of fact, whenever PCPs' overall cross-section area increases, multi-post solution induces a significant reduction of stress levels into the residual dentin (and therefore the root-fracture-risk decreases) as well as of the expected polymerization shrinkage effects. Moreover, interfacial stress values in multi-post restorations can be higher than the single-PCP ones when carbon-fibre posts are considered. Nevertheless, the interfacial adhesive/cohesive failure-risk is certainly acceptable if glass-fibre posts are employed.
机译:本文研究了一种新的牙髓修复技术的一些机械方面,其基本思想是,如果使用多个预制的复合桩(PCP),可以更有效地填充牙根腔。多桩技术提高了牙髓治疗牙齿的承载能力和耐用性,如通过对下前磨牙的三维弹性有限元静态分析进行的数值模拟所显示的那样,该模拟由表示牙周膜的非线性弹性弹簧系统约束,几个超功能性负载。通过将产生的应力场与传统修复体(铸造金属桩和硬质合金单PCP)和天然牙的应力场进行比较,研究了PCP的数量,材料和尺寸的影响,突出了标准时建议的技术的优势考虑使用修复材料。根部断裂和界面断裂的风险分析表明,铸造金合金柱在牙本质后界面处产生高应力集中,而多柱解决方案导致其行为更接近天然牙齿,相对于天然牙具有一些优势单PCP修复体。事实上,每当五氯苯酚的总截面积增加时,多柱溶液都会使残余牙本质中的应力水平显着降低(因此,降低根部断裂风险)以及预期的聚合收缩效果。此外,考虑碳纤维桩时,多桩修复体中的界面应力值可能高于单PCP应力。但是,如果使用玻璃纤维桩,则界面粘合/内聚破坏的风险肯定可以接受。

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