首页> 外文期刊>Journal of Biomechanics >Digital image correlation analysis of the load transfer by implant-supported restorations.
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Digital image correlation analysis of the load transfer by implant-supported restorations.

机译:植入式修复件负载传输的数字图像相关分析。

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摘要

This study compared splinted and non-splinted implant-supported prosthesis with and without a distal proximal contact using a digital image correlation method. An epoxy resin model was made with acrylic resin replicas of a mandibular first premolar and second molar and with threaded implants replacing the second premolar and first molar. Splinted and non-splinted metal-ceramic screw-retained crowns were fabricated and loaded with and without the presence of the second molar. A single-camera measuring system was used to record the in-plane deformation on the model surface at a frequency of 1.0Hz under a load from 0 to 250N. The images were then analyzed with specialist software to determine the direct (horizontal) and shear strains along the model. Not splinting the crowns resulted in higher stress transfer to the supporting implants when the second molar replica was absent. The presence of a second molar and an effective interproximal contact contributed to lower stress transfer to the supporting structures even for non-splinted restorations. Shear strains were higher in the region between the molars when the second molar was absent, regardless of splinting. The opposite was found for the region between the implants, which had higher shear strain values when the second molar was present. When an effective distal contact is absent, non-splinted implant-supported restorations introduce higher direct strains to the supporting structures under loading. Shear strains appear to be dependent also on the region within the model, with different regions showing different trends in strain changes in the absence of an effective distal contact.
机译:该研究使用数字图像相关方法比较了夹板和非夹持的植入物支持的假体,并且没有远端近端接触。用颌骨第一次磨牙和第二磨牙的丙烯酸树脂复制品制备环氧树脂模型,螺纹植入物取代第二磨牙和第一磨牙。制造夹板和非夹板金属陶瓷螺旋保留冠,并在没有第二摩尔的情况下加载。单摄像摄像头测量系统用于在0到250n的负载下以1.0Hz的频率在模型表面上记录面内变形。然后用专科软件分析图像以确定沿模型的直接(水平)和剪切菌株。当不存在第二磨牙复制时,没有夹板导致冠部导致较高的应力转移到支撑植入物。即使对于非夹板修复体,也有助于降低应力转移到支撑结构的应力转移。无论夹在不存在第二摩尔时,臼齿之间的区域在臼齿之间的区域中剪切菌株较高。发现植入物之间的区域的相反,当存在第二摩尔时具有更高的剪切应变值。当不存在有效的远端触点时,非夹持式植入物支持的修复因子将较高的直接菌株引入负载下的支撑结构。剪切菌株似乎也依赖于模型内的区域,不同的区域显示出在没有有效的远端接触的情况下的应变变化的不同趋势。

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