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首页> 外文期刊>The International journal of periodontics & restorative dentistry >Narrow-diameter implants as terminal support for occlusal three-unit FPDs: a biomechanical analysis.
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Narrow-diameter implants as terminal support for occlusal three-unit FPDs: a biomechanical analysis.

机译:窄直径植入物作为咬合三单元FPD的终端支撑:生物力学分析。

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摘要

The purpose of this study was to examine force transmissions of narrow-diameter ITI implants when used as a terminal support for freestanding three-unit fixed partial dentures (FPD). Photoelastic and strain-gauged models of two 4.1-mm-diameter solid-screw implants; a 3.3-mm reduced-diameter implant and a 4.1-mm-diameter solid-screw implant; and a 3.3-mm-diameter narrow-neck implant and a 4.1-mm-diameter solid-screw implant supporting fixed prostheses were fabricated. A static force of 100 N was applied on both implants and on the pontic of the prostheses in separate load cases, and the generation of isochromatic fringes was observed and photographed in the field of a circular polariscope. The strain-gauge signals were digitized by a data-acquisition system and displayed in a computer by corresponding software at a sample rate of 10,000 Hz, and the principal strains were calculated. The use of narrow-neck and reduced-diameter implants resulted in an overall increase in stress and strain magnitudes around supporting implants in comparison with support from two standard solid-screw implants. Narrow-diameter ITI implants may be used to support FPDs for patients with low bite forces. In other clinical situations involving narrow-diameter implants, increasing the implant support is crucial to improve the biomechanical outcome of the treatment.
机译:这项研究的目的是检查窄直径ITI植入物作为独立式三单元固定局部义齿(FPD)的终端支撑时的力传递。两个4.1毫米直径的实心螺钉植入物的光弹性模型和应变模型; 3.3毫米直径减小的植入物和4.1毫米直径的实心螺钉植入物;制造了直径为3.3毫米的窄颈种植体和直径为4.1毫米的实心螺钉种植体,这些种植体支持固定假体。在单独的负载情况下,在两个植入物和假体的桥上均施加了100 N的静力,并在圆偏光镜领域观察并拍摄了异色条纹的产生。应变仪信号由数据采集系统数字化,并通过相应软件以10,000 Hz的采样率显示在计算机中,并计算出主要应变。与两个标准的实心螺钉植入物的支撑相比,窄颈和直径减小的植入物的使用导致支撑植入物周围的应力和应变大小总体增加。窄直径ITI植入物可用于支持低咬力患者的FPD。在其他涉及狭窄直径植入物的临床情况中,增加植入物支撑对于改善治疗的生物力学结果至关重要。

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