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Computer-aided design of polyetheretherketone for application to removable pediatric space maintainers

机译:用于可拆卸的小儿空间维护者的聚醚醚酮的计算机辅助设计

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摘要

The premature loss of primary teeth is a common problem in pediatric dentistry, resulting in disruption of the arch integrity. Hence, space maintainers (SM) used for maintaining spaces are necessary. However, current methods of making removable space maintainers (RSM) have some limitations. Digital models of dentition defects were obtained by using a scanning technique coupled with laser medical image reconstruction. The digital RSMs were designed using the 3Shape software. They were manufactured using two methods: polyetheretherketone (PEEK), and conventional methods (20 RSMs per group). For qualitative evaluation, the Likert five-point scale was used by 10 experts to obtain a score for 40 RSMs. The spaces between the tissue surfaces of the RSMs and the models were replaced using silicone, and the maximum and mean distances, as well as the standard deviation, were measured. A three-dimensional variation analysis was used to measure these spaces. The student’s t-test and Satterthwaite t-test were used to compare the differences in the spaces for the various materials. The PEEK RSMs were found to fit the models well. In the qualitative assessment, the mean experts’ scores for the PEEK and conventional groups were 1.80?±?0.40 and 1.82?±?0.40, and there was no significant difference between the two groups (p?=?0.875). In the quantitative assessment, the mean spaces for the PEEK digital RSMs and the conventional RSMs were 44.32?±?1.75?μm, and 137.36?±?18.63?μm, respectively, and the differences were statistically significant (p??0.001). In addition, there were significant differences in the maximum space and the standard deviation between the two groups. Digitally designed and integrated RSMs were found to be superior to those produced using the conventional method. 3D variation analysis results showed that the mean distances and standard deviations of the PEEK groups were significantly smaller than those of conventional group (p??0.01). A PEEK-manufactured RSM produced using CAD/CAM would be extremely suitable for clinical applications.
机译:主要牙齿的过早损失是小儿牙科的常见问题,导致拱形完整性的破坏。因此,需要用于维持空间的空间维护者(SM)是必要的。然而,当前制作可移动空间维护者(RSM)的方法具有一些限制。通过使用与激光医学图像重建耦合的扫描技术获得牙列缺陷的数字模型。使用3Shape软件设计了数字RSM。它们是使用两种方法制造的:聚醚醚酮(PEEK)和常规方法(每组20克斯)。对于定性评估,10名专家使用李克特五点比例以获得40读数的分数。使用硅树脂更换RSMS的组织表面和模型之间的空间,并测量最大和平均距离以及标准偏差。使用三维变化分析来测量这些空间。学生的T-Test和Satterthwaite T检验用于比较各种材料的空间的差异。发现窥视RSMS适合型号。在定性评估中,PEEK和常规组的平均专家分数为1.80?±0.40和1.82?±0.40,两组之间没有显着差异(P?= 0.875)。在定量评估中,PEEK数字RSMS和传统RSM的平均空间分别为44.32Ω·?1.75?μm,分别为137.36?±18.63Ω·μm,差异有统计学意义(P?<?0.001) 。此外,最大空间存在显着差异和两组之间的标准偏差。发现数字设计和集成的RSMS优于使用常规方法生产的RSM。 3D变异分析结果表明,PEEK组的平均距离和标准偏差明显小于常规组(P?<β01)。使用CAD / CAM生产的PEEK制造的RSM非常适合临床应用。

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