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首页> 外文期刊>Journal of Periodontology >Evaluation of stress induced by implant type, number of splinted teeth, and variations in periodontal support in tooth-implant-supported fixed partial dentures: a non-linear finite element analysis.
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Evaluation of stress induced by implant type, number of splinted teeth, and variations in periodontal support in tooth-implant-supported fixed partial dentures: a non-linear finite element analysis.

机译:评估由种植体类型,夹齿的数量以及牙种植体支持的固定局部假牙的牙周支持变化引起的应力:非线性有限元分析。

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BACKGROUND: This study investigated the biomechanical interactions in tooth-implant-supported fixed partial dentures (FPDs) with variations in periodontal support, implant system, number of splinted teeth, and load type using the non-linear finite element (FE) approach. METHODS: The section contours of the alveolar bone, abutment teeth, and prosthesis were acquired using computed tomography (CT) and micro-CT to construct the FE models with normal periodontal support (NPS) and compromised periodontal support (CPS) containing one- and two-piece implants splinted to the first and second premolars. Realistic interface conditions within the implant system were simulated using frictional contact elements. The main effects for each level of investigated factors in terms of stress values and dissimilar mobility of natural teeth and the implant were computed for all models. RESULTS: Analytic results indicated that the load condition was the predominant factor affecting stress developed in the implant, bone, and prosthesis. Additionally, the oblique occlusal forces increased the stress values relative to that of axial analogs. A splinted system with a two-piece implant increased stress on the bone and decreased stress on the prosthesis compared to that of the one-piece implant. The splinted system with a CPS only slightly increased implant stress on the bone compared to that of the splint system with NPS. Splinting an additional tooth did not significantly impact stress values for the tooth-implant-supported FPD. CONCLUSIONS: A one-piece structure implant may be better than that of a two-piece structure implant in decreasing bone stress when a natural tooth is planned to connect with an implant. The factors of periodontal support and number of splinted teeth only slightly influenced stress in tooth-implant-supported FPDs.
机译:背景:这项研究使用非线性有限元(FE)方法研究了牙种植体支持的固定局部义齿(FPD)在牙周支架,种植体系统,夹板牙齿的数量和负载类型方面变化的生物力学相互作用。方法:使用计算机断层扫描(CT)和微型CT获取牙槽骨,基牙和假体的剖面轮廓,以构建具有正常牙周支持(NPS)和受损牙周支持(CPS)的FE模型,该模型包含一个和一个两件式种植体夹在第一和第二前磨牙上。使用摩擦接触元件模拟了植入系统内的实际界面条件。对于所有模型,计算了每个受调查因素在应力值和天然牙与种植体的不同活动性方面的主要影响。结果:分析结果表明,负载条件是影响植入物,骨骼和假体中应力发展的主要因素。另外,倾斜的咬合力相对于轴向类似物增加了应力值。与单件式植入物相比,带有两件式植入物的夹板系统增加了骨骼上的应力,并减小了假体上的应力。与具有NPS的夹板系统相比,具有CPS的夹板系统仅稍微增加了骨骼上的植入物应力。夹额外的牙齿不会显着影响牙齿植入物支持的FPD的应力值。结论:当计划将天然牙齿与种植体连接时,一件式结构植入物在降低骨应力方面可能比两件式结构植入物更好。牙种植体支持的FPD中,牙周支持因素和夹齿的数量仅轻微影响应力。

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