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首页> 外文期刊>Journal of long-term effects of medical implants >Effect of Implant-Abutment Connection Type on Stress Distribution in Peri-Implant Bone and Abutment Micromovement: A Three-Dimensional Finite Element Analysis
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Effect of Implant-Abutment Connection Type on Stress Distribution in Peri-Implant Bone and Abutment Micromovement: A Three-Dimensional Finite Element Analysis

机译:植入式连接型对围植入骨和邻静脉微动脉应力分布的影响:三维有限元分析

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This study assessed the effect of implant-abutment connection type on stress distribution in peri-implantbone and abutment micromovement using finite-element analysis (FEA). Dimensions of three implant-abutment designs were measured by a three-dimensional scanner and transferred to SOLIDWORKS. An elemental model was designed using ABAQUS. Each implant was placed in bone at the crestal level. A 100-N load was applied at a 45° angle relative to the longitudinal axis of the implant in the buccolingual direction from the palatal toward the buccal and coronal parts of the abutment. Shear stress, von Mises stress, and micromovement of the abutment relative to the fixture were analyzed. Data were reported qualitatively and quantitatively using ABAQUS. The von Mises stress in all three samples decreased from the crest toward the apical area and was distributed homogenously. Maximum stress concentration was at the most coronal part of the implant body in the midbuccal area. In cancellous and cortical bone, stress decreased from the crest toward the palate and was at its maximum at the midbuccal point in the bone crest. Stress in cortical bone was more homogenous and in cancellous bone was higher. Shear stress was higher in the buccal than in the palatal area, and at its maximum shear stress and equal in the mesiobuccal and distobuccal areas. Micromovement was 4.25 μm in an Astra implant, 5.42 μm in a Intra-Lock implant, and 6.63 μm in an SPI implant. The distribution of von Mises and shear stress was the same in bone around the three implant connection types; however, abutment micomovement differed.
机译:该研究评估了使用有限元分析(FEA)对植入式连接型对Peri-Inclimantbone和邻接微动脉的应激分布的影响。通过三维扫描仪测量三个种植体 - 邻接设计的尺寸并转移到SolidWorks。使用ABAQUS设计了一个元素模型。将每个植入物放在骨骼水平的骨中。相对于从栅栏的植入方向的植入物的纵向轴线从往桥朝向邻接的颊和冠部,以45°角施加100-n载荷。分析了剪切应力,von误导应力和相对于夹具的邻接的微观。数据报告了定性和使用ABAQUS的定量和定量。所有三个样品中的von误差应激从嵴朝向顶点区域下降,并分布均匀。最大应力浓度在中间地区的植入体中最大的冠状部分。在松质和皮质骨中,应力从嵴朝向腭下降,并且在骨嵴中的中琥珀色点处最大。皮质骨中的应力更均匀,在松质骨中较高。颊部的剪切应力高于腭区域,并且在其最大剪切应力和中浊和磁性区域中的最大剪切应力和等于。在ASTRA植入物中,微动脉为4.25μm,在锁定内植入物中为5.42μm,在SPI植入物中为6.63μm。在三种植入物连接类型周围的骨骼中分布von误和剪切应力是相同的;然而,基静micomovement不同。

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