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首页> 外文期刊>Journal of Zhejiang University. Science, B >Stabilization of an abutment under a rigidly fixed bridge by holographical-speckle interferometry
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Stabilization of an abutment under a rigidly fixed bridge by holographical-speckle interferometry

机译:通过全息斑点干涉测量法稳定刚性固定桥梁的静止

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Objective: There are no detailed reports of three-dimensional measurement of abutment teeth in mastication, because it is knotty to observe the rotation in chewing directly, and inexact to estimate indirectly. This work studies the three-dimensional stability of rigidly fixed bridge under the stresses of distributed loads and concentrated loads by optical method that gives the tip angle and rotation angle calculated directly based on measurement data. Methods: The specimen, taken from a 25-year-old male, was a left mandible without the second premolars and the first molars. As abutments, first premolar and second molar have complete periodontium. The specimen was soaked in formaldehyde solution. The bridge was fixed between two abutment teeth (first premolars and second molars), and the mandible was cemented in a steel box. The load was increased from 0 kg to 23 kg. Laser holographic technique was used to measure the three-dimensional bit shift of the dens, both buccolingual bit shift and mesiodistal bit shift, and determine tip angle and rotation angle. Results: The effects of stress distribution on the rigidly fixed bridge were evaluated, and stabilization of the bridge under the stresses of distributed loads and concentrated loads, respectively, were analyzed. The results showed that the tips of two abutments were very similar, and no distinct difference was observed between the distributed load and the concentrated load. However, the maximum rotation angle for the distributed load was two to four times as large as that for the concentrated load. In the experiment, the tip angle of the abutment teeth was no more than 0.65 degree, and the rotation angle was no more than 0.60 degree. All maximum angles occurred in the second molar. Conclusion: The fixed bridge is considered to be safe. In addition, a method for measuring the rotation angle was provided effectively.
机译:目的:没有详细报道咀嚼牙齿的三维测量,因为它是短暂的,以观察咀嚼的旋转直接,并且不适用于间接估计。这项工作研究了在分布式负载的应力下刚性固定桥梁的三维稳定性通过光学方法,其基于测量数据直接计算出直接计算的尖角和旋转角度。方法:从25岁的男性中取出的标本,没有第二级前磨牙和第一磨牙的左侧下垂。作为基台,第一个磨牙和第二磨牙都有完整的牙周。将样品浸泡在甲醛溶液中。桥梁固定在两个邻接牙齿(第一磨牙和第二磨牙)之间,下颌骨在钢盒中粘合。负载从0千克增加到23千克。激光全息技术用于测量DENS的三维比特偏移,BUCLING BIT换档和关系位移,并确定尖角和旋转角度。结果:分析了应力分布对刚性固定桥梁的影响,分别分别评价刚性固定桥梁的稳定,分别在分布式载荷和浓度荷载下的稳定。结果表明,两台基台的尖端非常相似,并且在分布式载荷和浓缩载荷之间没有观察到不同的差异。然而,分布式负载的最大旋转角度为浓度的浓度为2至4倍。在实验中,邻接齿的尖角不大于0.65度,旋转角度不大于0.60度。所有最大角度在第二磨牙中发生。结论:固定桥被认为是安全的。另外,有效地提供了一种测量旋转角度的方法。

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