首页> 外文期刊>Journal of Indian Society of Periodontology >A comparative study on the stress distribution around dental implants in three arch form models for replacing six implants using finite element analysis
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A comparative study on the stress distribution around dental implants in three arch form models for replacing six implants using finite element analysis

机译:有限元分析的三种牙弓模型替代六种种植体的种植体周围应力分布的比较研究

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Background: Dental implant is a method to replacement of missing teeth. It is important for replacing the missed anterior teeth. In vitro method is a safe method for evaluation of stress distribution. Finite element analysis as an in vitro method evaluated stress distribution around replacement of six maxillary anterior teeth implants in three models of maxillary arch. Materials and Methods: In this in vitro study, using ABAQUS software (Simulia Corporation, Vélizy-Villacoublay, France), implant simulation was performed for reconstruction of six maxillary anterior teeth in three models. Two implants were placed on both sides of the canine tooth region (A model); two implants on both sides of the canine tooth region and another on one side of the central incisor region (B model); and two implants on both sides of the canine tooth region and two implants in the central incisor area (C model). All implants evaluated in three arch forms (tapered, ovoid, and square). Data were analyzed by finite analysis software. Results: Von Mises stress by increasing of implant number was reduced. In a comparison of A model in each maxillary arch, the stress created in the cortical and cancellous bones in the square arch was less than ovoid and tapered arches. The stress created in implants and cortical and cancellous bones in C model was less than A and B models. Conclusions: The C model (four-implant) reduced the stress distribution in cortical and cancellous bones, but this pattern must be evaluated according to arch form and cost benefit of patients.
机译:背景:种植牙是一种替代缺失牙齿的方法。对于更换前牙缺失很重要。体外方法是评估应力分布的安全方法。有限元分析作为一种体外方法,评估了三种上颌牙弓模型中六颗上颌前牙植入物置换后的应力分布。材料和方法:在这项体外研究中,使用ABAQUS软件(Simulia Corporation,Vélizy-Villacoublay,法国),进行了植入物仿真,以重建三个模型中的六个上颌前牙。在犬齿区域的两侧放置了两个植入物(A模型)。在犬齿区域的两侧有两个植入物,在中央门牙区域的一侧有另一个植入物(B模型);在犬齿区域的两侧有两个植入物,在中央门牙区域有两个植入物(C模型)。所有植入物均以三种弓形(锥形,卵形和正方形)评估。数据通过有限分析软件进行分析。结果:通过增加植入物数量减少了冯·米塞斯(Von Mises)的压力。在每个上颌牙弓的A模型比较中,在方形牙弓的皮质和松质骨中产生的应力小于卵形和锥形牙弓。 C模型在植入物,皮质和松质骨中产生的应力小于A和B模型。结论:C模型(四植入物)减少了皮质和松质骨中的应力分布,但必须根据弓形和患者的成本效益评估这种模式。

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