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首页> 外文期刊>The International journal of oral & maxillofacial implants >Stress distribution on scalloped implants with different microthread and connection configurations using three-dimensional finite element analysis.
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Stress distribution on scalloped implants with different microthread and connection configurations using three-dimensional finite element analysis.

机译:使用三维有限元分析,在具有不同微螺纹和连接配置的扇贝形种植体上应力分布。

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摘要

The objective of this study was to investigate the effects of different microthread designs and implant-abutment connection configurations of scalloped implants on stress distribution in bone using three-dimensional finite element analysis.Three different designs of scalloped implants (two different microthread designs and one without microthreads) with two different connection systems and two flat-top implants with similar connection systems were compared in a bone model that mimicked the anterior maxilla. Vertical and oblique (30-degree) loading with 100 N of force was applied to eight models. Peak stress levels and the distribution of stress were observed.The stress pattern of scalloped implants was distinctively different from that observed on flat-top implants. Scalloped implants showed peak stresses in the proximal cortical bone as well as in the buccal and palatal cortical bone, whereas flat-top implants showed peak stresses mainly in the buccal and palatal cortical bone and limited stress in the proximal bone. The scalloped implant without microthreads and a conical platform-switched connection demonstrated the lowest peak stress levels. The scalloped implant with a straight platform connection generally showed peak stress that was two to three times higher than that seen in the conical platform-switched model.Peak stress levels in scalloped implants varied with microthread designs, connection configurations, and the direction of loading. The conical platform-switched connection seemed more important for a scalloped implant than the microthread design in reducing loading stresses exerted on the surrounding bone. Scalloped implants without microthread and a with a conical platform-switched connection or closed microthreads and a conical platform-switched connection showed consistently lower buccal bone stress than the flat-top implants in areas where the bone had a sloping and scalloping shape.
机译:这项研究的目的是使用三维有限元分析来研究扇贝形种植体的不同微螺纹设计和种植体-基台连接结构对骨骼应力分布的影响。扇贝形种植体的三种不同设计(两种不同的微螺纹设计和一种不带扇形的种植体)在模拟前上颌骨的骨模型中比较了具有两个不同连接系统和两个具有相似连接系统的平顶植入物的微螺纹)。在八个模型上施加了100 N力的垂直和倾斜(30度)载荷。观察到峰值应力水平和应力分布。扇贝形植入物的应力模式与平顶植入物明显不同。扇形植入物在近端皮质骨以及颊和pa皮质骨中显示出峰值应力,而平顶植入物则主要在颊和pa皮质骨中显示出峰值应力,而近端骨中的应力有限。没有微螺纹和圆锥形平台切换连接的扇贝形种植体显示出最低的峰值应力水平。带扇形平台连接的扇贝形种植体通常显示出峰值应力,该峰值应力是圆锥形平台切换模型中看到的峰值应力的2至3倍。扇形种植体的峰值应力水平随微螺纹设计,连接结构和加载方向而变化。相比于微螺纹设计,圆锥形平台切换连接对于扇贝形植入物似乎更重要,它可以减少施加在周围骨骼上的负荷应力。扇形植入物没有微螺纹,带有锥形平台切换连接或封闭的微线程和圆锥形平台切换连接,在骨骼呈倾斜和扇形形状的区域,其颊骨应力始终低于平顶植入物。

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