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首页> 外文期刊>The Journal of Advanced Prosthodontics >Load response of the natural tooth and dental implant: A comparative biomechanics study
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Load response of the natural tooth and dental implant: A comparative biomechanics study

机译:天然牙和种植牙的负荷响应:生物力学比较研究

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PURPOSE While dental implants have displayed high success rates, poor mechanical fixation is a common complication, and their biomechanical response to occlusal loading remains poorly understood. This study aimed to develop and validate a computational model of a natural first premolar and a dental implant with matching crown morphology, and quantify their mechanical response to loading at the occlusal surface. MATERIALS AND METHODS A finite-element model of the stomatognathic system comprising the mandible, first premolar and periodontal ligament (PDL) was developed based on a natural human tooth, and a model of a dental implant of identical occlusal geometry was also created. Occlusal loading was simulated using point forces applied at seven landmarks on each crown. Model predictions were validated using strain gauge measurements acquired during loading of matched physical models of the tooth and implant assemblies. RESULTS For the natural tooth, the maximum vonMises stress (6.4 MPa) and maximal principal strains at the mandible (1.8 mε, ?1.7 mε) were lower than those observed at the prosthetic tooth (12.5 MPa, 3.2 mε, and ?4.4 mε, respectively). As occlusal load was applied more bucally relative to the tooth central axis, stress and strain magnitudes increased. CONCLUSION Occlusal loading of the natural tooth results in lower stress-strain magnitudes in the underlying alveolar bone than those associated with a dental implant of matched occlusal anatomy. The PDL may function to mitigate axial and bending stress intensities resulting from off-centered occlusal loads. The findings may be useful in dental implant design, restoration material selection, and surgical planning.
机译:目的尽管种植牙成功率很高,但机械固定不良是常见的并发症,对咬合负荷的生物力学反应仍知之甚少。这项研究旨在开发和验证具有匹配的牙冠形态的天然第一前磨牙和牙科植入物的计算模型,并量化其对牙合面负荷的机械响应。材料和方法基于自然人牙,开发了包括下颌骨,第一前磨牙和牙周韧带(PDL)的口腔颌骨系统的有限元模型,还创建了具有相同咬合几何形状的牙科植入物模型。使用在每个表冠上的七个界标上施加的点力来模拟咬合载荷。使用在加载匹配的牙齿和植入物组件的物理模型期间获取的应变仪测量值来验证模型预测。结果对于天然牙,下颌骨的最大vonMises应力(6.4 MPa)和最大主应变(1.8mε,?1.7mε)低于假牙(12.5 MPa,3.2mε和?4.4mε),分别)。当相对于牙齿中心轴颊侧施加咬合负荷时,应力和应变幅度增加。结论天然牙的咬合负荷导致牙槽骨下面的应力-应变幅度低于与匹配咬合解剖学的牙科植入物相关的应力-应变幅度。 PDL可起到减轻偏心咬合负荷导致的轴向和弯曲应力强度的作用。该发现可能对牙种植体设计,修复材料的选择和手术计划有用。

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