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Bone's responses to different designs of implant-supported fixed partial dentures

机译:骨对植入物支持的固定局部义齿的不同设计的反应

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This paper explores the biomechanics and associated bone remodeling responses of two different abutment configurations, namely implant-implant-supported versus tooth-implant-supported fixed partial dentures. Two 3D finite element analysis models are created based upon computerized tomography data. The strain energy density induced by occlusal loading is used as a mechanical stimulus for driving the bone remodeling. To measure osseointegration and stability during healing, a resonance frequency analysis is conducted. At the second premolar peri-implant region, overloading resorption around the neck of implant is identified in both the models over the first 12 months. Stress-shielding around the edentulous region is also observed in both the models with a greater resorption rate found in the implant-implant case. The remodeling and resonance frequency analyses reveal that the tooth-implant scheme offers a higher degree of osseointegration. The remodeling procedure is expected to provide prosthodontists with a modeling tool to assess possible long-term clinical outcomes.
机译:本文探讨了两种不同基台配置的生物力学和相关的骨骼重塑响应,即种植体-种植体支持与牙齿种植体支持的固定局部义齿。基于计算机断层扫描数据创建了两个3D有限元分析模型。由咬合负荷引起的应变能密度被用作驱动骨重建的机械刺激。为了测量愈合过程中的骨整合和稳定性,进行了共振频率分析。在第二个磨牙前种植体周围区域,在最初的12个月中,两个模型都确定了种植体颈部周围的超负荷吸收。在两个模型中,在种植体和种植体的情况下,均在无牙区域周围也观察到了应力屏蔽,吸收率更高。重塑和共振频率分析表明,种植牙方案可提供更高的骨整合度。预计重塑过程将为修复牙齿的医生提供一种建模工具,以评估可能的长期临床结果。

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