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首页> 外文期刊>Dental Research Journal >Evaluation of stress distribution of implant?retained mandibular overdenture with different vertical restorative spaces: A finite element analysis
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Evaluation of stress distribution of implant?retained mandibular overdenture with different vertical restorative spaces: A finite element analysis

机译:不同垂直修复空间的种植体固位下颌覆盖义齿的应力分布评估:有限元分析

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Background: Available restorative space and bar height is an important factor in stress distribution of implant?supported overdentures. The purpose of this study was to evaluate the effect of different vertical restorative spaces and different bar heights on the stress distribution around implants by 3D finite element analysis. Materials and Methods: 3D finite element models were developed from mandibular overdentures with two implants in the interforaminal region. In these models, four different bar heights from gingival crest (0.5, 1, 1.5, 2 mm) with 15 mm occlusal plane height and three different occlusal plane heights from gingival crest (9, 12, 15 mm) with 2 mm bar height were analyzed. A vertical unilateral and a bilateral load of 150 N were applied to the central occlusal fossa of the first molar and the stress of bone around implant was analyzed by finite element analysis. Results: By increasing vertical restorative space, the maximum stress values around implants were found to be decreased in unilateral loading models but slightly increased in bilateral loading cases. By increasing bar height from gingival crest, the maximum stress values around implants were found to be increased in unilateral loading models but slightly decreased in bilateral loading cases. In unilateral loading models, maximum stress was found in a model with 9 mm occlusal plane height and 1.5 mm bar height (6.254 MPa), but in bilateral loading cases, maximum stress was found in a model with 15 mm occlusal plane height and 0.5 mm bar height (3.482 MPa). Conclusion: The reduction of bar height and increase in the thickness of acrylic resin base in implant?supported overdentures are biomechanically favorable and may result in less stress in periimplant bone. Key Words: Finite element analysis, implant, overdenture, stress.
机译:背景:可用的修复空间和钢筋高度是植入物支持的覆盖义齿的应力分布的重要因素。这项研究的目的是通过3D有限元分析评估不同的垂直修复空间和不同的钢筋高度对植入物周围应力分布的影响。材料和方法:3D有限元模型是由下颌覆盖义齿在椎间孔区域内植入两个植入物而开发的。在这些模型中,距牙龈顶高度15 mm的牙龈牙顶(0.5、1、1.5、2 mm)有四个不同的牙高,距牙龈高度2 mm的牙龈牙顶齿(9、12、15 mm)有3个不同的牙合面高度。分析。对第一磨牙的中央咬合窝施加垂直的单侧和双侧150 N载荷,并通过有限元分析法分析植入物周围的骨应力。结果:通过增加垂直修复空间,在单侧加载模型中发现植入物周围的最大应力值减小,而在双侧加载情况下略有增加。通过增加牙龈c的棒高,在单侧负荷模型中发现种植体周围的最大应力值增加,而在双侧负荷情况下略有降低。在单侧加载模型中,最大应力出现在咬合面高度为9毫米,棒高为1.5毫米(6.254 MPa)的模型中,而在双侧加载情况下,最大应力是在咬合平面高度为15毫米和0.5毫米的模型中钢筋高度(3.482 MPa)。结论:种植体支持的覆盖义齿中棒高度的降低和丙烯酸树脂基体厚度的增加在生物力学上是有利的,并且可以减少植入物周围骨的应力。关键词:有限元分析,植入物,覆盖义齿,应力。

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