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首页> 外文期刊>The Journal of oral implantology >Stress Analysis on Single Cobalt/Chrome Prosthesis With a 15-mm Cantilever Placed Over 10/13/15-mm-length Implants: A Simulated Photoelastic Model Study
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Stress Analysis on Single Cobalt/Chrome Prosthesis With a 15-mm Cantilever Placed Over 10/13/15-mm-length Implants: A Simulated Photoelastic Model Study

机译:具有15mm悬臂放置在10/13 / 15mm长的植入物中的单个钴/铬假体的应力分析:模拟光弹性模型研究

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摘要

The aim of study was to assess the stress around 10/13/15-mm implants in the mandibular area with a 15-mm cantilevered acrylic-resincoated prostheses following the application force, using the photoelasticity method. Three photoelastic mandibular models were created containing 10-, 13-, and 15-mm implants in length and 3.75 mm in diameter. The implants had bore internal hex connections and were placed parallel to the intermental region. Abutments with 1-mm high cuffs were placed over the implants, and a single cobalt/chrome metallic prosthesis with a 15-mm cantilever, coated with thermoplastic acrylic resin, was placed on top. Loads of 1.0 and 3.0 bars were applied, and the images were photographed and assessed by photoelasticity method. The greatest stress levels were observed for the 10mm implants. The stress pattern was the same regardless of implant length; only the magnitude of the stress along the implant body revealed changes. Increased implant length played a role in reducing stress on the investigated area of the model, and the 15-mm implants exhibited the best performance in regard to stress distribution. The highest stress levels were found in the implants closest to the cantilever and the central implant. The longest implants were more favorable in regard to the stress distribution on the peri-implant support structures in the 15-mm cantilevered prosthesis under loads.
机译:研究的目的是使用光弹性方法评估施加力后,使用15毫米丙烯酸树脂涂层悬臂假体在下颌区10/13/15毫米植入物周围的应力。创建了三个光弹性下颌模型,其中分别包含长度分别为10、13和15毫米,直径为3.75毫米的植入物。植入物具有内六角孔连接,并平行于齿间区域放置。将具有1毫米高袖口的基台放置在植入物上,并将单个15毫米悬臂的钴/铬金属假体(上面涂有热塑性丙烯酸树脂)放置在顶部。施加1.0和3.0巴的载荷,并通过光弹性方法拍摄图像并评估。对于10mm植入物,观察到最大应力水平。无论植入物的长度如何,应力模式都是相同的。沿植入物主体的应力大小仅显示出变化。植入物长度的增加在减轻模型研究区域的应力方面发挥了作用,而15毫米植入物在应力分布方面表现出最佳性能。在最接近悬臂和中央植入物的植入物中发现了最高的应力水平。在负载下,最长的植入物在15毫米悬臂假体中的植入物周围支撑结构上的应力分布方面更为有利。

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