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种植体支持的固定局部义齿的纤维增强复合材料与传统金属框架的生物力学比较:三维有限元研究。

Biomechanical comparison of implant retained fixed partial dentures with fiber reinforced composite versus conventional metal frameworks: a 3D FEA study.

机构信息

Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Gazi University, 8. Cadde 82. Sokak EMEK-Ankara, Turkey.

出版信息

J Mech Behav Biomed Mater. 2011 Jan;4(1):107-16. doi: 10.1016/j.jmbbm.2010.09.011. Epub 2010 Oct 1.

Abstract

Fiber reinforced composite (FRC) materials have been successfully used in a variety of commercial applications. These materials have also been widely used in dentistry. The use of fiber composite technology in implant prostheses has been previously presented, since they may solve many problems associated with metal alloy frameworks such as corrosion, complexity of fabrication and high cost. The hypothesis of this study was that an FRC framework with lower flexural modulus provides more even stress distribution throughout the implant retained fixed partial dentures (FPDs) than a metal framework does. A 3-dimensional finite element analysis was conducted to evaluate the stress distribution in bone, implant-abutment complex and prosthetic structures. Hence, two distinctly different models of implant retained 3-unit fixed partial dentures, composed of Cr-Co and porcelain (M-FPD model) or FRC and particulate composite (FRC-FPD model) were utilized. In separate load cases, 300 N vertical, 150 N oblique and 60 N horizontal forces were simulated. When the FRC-FPD and M-FPD models were compared, it was found that all investigated stress values in the M-FPD model were higher than the values in the FRC-FPD model except for the stress values in the implant-abutment complex. It can be concluded that the implant supported FRC-FPD could eliminate the excessive stresses in the bone-implant interface and maintain normal physiological loading of the surrounding bone, therefore minimizing the risk of peri-implant bone loss due to stress-shielding.

摘要

纤维增强复合材料(FRC)已成功应用于多种商业用途。这些材料也已广泛应用于牙科领域。纤维复合材料技术已被用于种植体修复体,因为它可能解决与金属合金框架相关的许多问题,例如腐蚀、制造复杂性和高成本。本研究的假设是,具有较低弯曲模量的 FRC 框架比金属框架更能均匀分布种植体固位固定局部义齿(FPD)的应力。通过三维有限元分析来评估骨、种植体-基台复合体和修复体结构中的应力分布。因此,使用了两种截然不同的种植体固位三单位固定局部义齿模型,分别由 Cr-Co 和瓷(M-FPD 模型)或 FRC 和颗粒复合材料(FRC-FPD 模型)组成。在单独的加载情况下,模拟了 300 N 的垂直、150 N 的斜向和 60 N 的水平力。当比较 FRC-FPD 和 M-FPD 模型时,发现除了种植体-基台复合体中的应力值外,M-FPD 模型中的所有研究应力值都高于 FRC-FPD 模型中的应力值。可以得出结论,种植体支持的 FRC-FPD 可以消除骨-种植体界面的过度应力,并保持周围骨的正常生理负荷,从而最大限度地减少因应力屏蔽导致的种植体周围骨丢失的风险。

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