首页> 外文期刊>The International journal of oral & maxillofacial implants >Bone-implant interface with simulated insertion stress around an immediately loaded dental implant in the anterior maxilla: a three-dimensional finite element analysis.
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Bone-implant interface with simulated insertion stress around an immediately loaded dental implant in the anterior maxilla: a three-dimensional finite element analysis.

机译:在上颌前牙立即加载的牙科植入物周围模拟植入应力的骨植入物界面:三维有限元分析。

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The purpose of the present study was to investigate the stress distribution around the bone-implant interface and the effect of the length of an immediately loaded implant in the anterior maxilla using a finite element model with simulated loading stresses.Four-mm-diameter external-hex implants with different lengths (8.5, 10.0, 11.5, 13.0, and 15.0 mm) were used in this study. The anterior maxilla was assumed to be D3 bone quality. All of the material was assumed to be homogenous, isotropic, and linearly elastic. Average bone deformation during implant placement was calculated through the simulation process, and using this, insertion stress was created. The bone-implant interface was constructed using a contact element to simulate a nonosseointegrated condition. Then, 176 N of static force was applied at the middle of the palatoincisal line angle of the abutment at a 120-degree angle to the long axis of the abutment. The von Mises stresses were measured at intervals of 0.25 mm along the bone-implant interface.Prior to loading, the stresses were evenly distributed around the implant and highly concentrated in the cortical area. When the load was applied, von Mises stresses were concentrated in the cortical bone of the implant neck area. More favorable stress distribution was seen with increasing implant length. However, when the implant length reached 15.0 mm, the stresses increased.In the maxilla, when immediate loading is applied after implant placement, 11.5- and 13.0-mm-long single implants showed more favorable stress patterns than the others analyzed. If implants longer than 15.0 mm are used in immediate loading, sufficient bone volume in the recipient site should be considered an important factor.
机译:本研究的目的是使用带有模拟加载应力的有限元模型研究上颌前骨中即刻加载的植入物周围的应力分布以及立即加载的植入物的长度的影响。在这项研究中使用了不同长度(8.5、10.0、11.5、13.0和15.0 mm)的六角形植入物。上颌前骨被认为是D3骨质。假定所有材料均质,各向同性和线性弹性。通过模拟过程计算出植入物放置期间的平均骨变形,并以此创建插入应力。使用接触元件构造骨-植入物界面以模拟非骨整合状态。然后,在与基台的长轴成120度角的基台的上切线的夹角中间施加176 N的静力。沿骨-植入物界面以0.25 mm的间隔测量von Mises应力。在加载之前,应力均匀分布在植入物周围并高度集中在皮质区域。当施加载荷时,von Mises应力集中在植入物颈部的皮质骨中。随着植入物长度的增加,可以看到更有利的应力分布。但是,当植入物长度达到15.0 mm时,应力会增加。在上颌骨中,当植入物放置后立即施加载荷时,长11.5和13.0 mm的单个植入物显示出比其他分析的更有利的应力模式。如果在立即加载中使用长度超过15.0毫米的植入物,则应考虑受体部位足够的骨量。

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