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使用带有聚醚醚酮基质的附着系统制作单颗种植覆盖义齿:体外固位力

Using an Attachment System with PEEK Matrices for Single-Implant Overdentures: In Vitro Retention Force.

作者信息

Fugariu Ioana, de Souza Raphael Freitas, Rosas Eduardo, Borie Eduardo

机构信息

Faculty of Dental Medicine and Oral Health Sciences, McGill University, Montreal, QC H3A 1G1, Canada.

Master in Dental Sciences Program, Universidad de La Frontera, Temuco 4811230, Chile.

出版信息

J Clin Med. 2023 Mar 10;12(6):2159. doi: 10.3390/jcm12062159.

Abstract

Single-implant overdentures (SIOs) represent a major biomechanical challenge in terms of prosthetic retention. The Novaloc attachment system has the potential to overcome those challenges when used for SIOs, due to the use of PEEK matrices. This study compared the retentive force of the Novaloc attachment to the traditional Locator system, before and after cyclic insertion-removal cycles. Three Novaloc matrices (white, yellow, and green, corresponding to low, medium, and high retention, respectively) and Locator (medium retention) were tested, totalling four groups. Retentive force was measured using an Imada force gauge before and after 1095 insertion-removal cycles, corresponding to a year of SIO wearing. Retention was tested with the implants angulated at 0, 10, and 20°. Data for the different groups, angles, and cycling periods were tested via linear regression analysis and two-way ANOVA (α = 0.05). Although the Locator system yielded higher retention forces in general, it lost a much higher percentage of retention with cycling. This trend was similar with the three angles, with forces being inversely proportional to the implant angulation. The authors conclude that Novaloc may provide more reliable retention for SIOs due to their higher resistance to insertion-removal cycling.

摘要

单种植体覆盖义齿(SIO)在修复固位方面面临着重大的生物力学挑战。由于使用了聚醚醚酮(PEEK)基质,Novaloc附着系统在用于SIO时有可能克服这些挑战。本研究比较了Novaloc附着体与传统Locator系统在循环插入-取出前后的固位力。测试了三种Novaloc基质(白色、黄色和绿色,分别对应低、中、高固位力)和Locator(中固位力),共四组。在1095次插入-取出循环前后,使用Imada测力计测量固位力,这相当于SIO佩戴一年的次数。在种植体成角为(0°)、(10°)和(20°)时测试固位情况。通过线性回归分析和双向方差分析((\alpha = 0.05))对不同组、角度和循环周期的数据进行测试。尽管Locator系统总体上产生的固位力更高,但随着循环次数增加,其固位力损失的百分比要高得多。在三个角度下这种趋势相似,固位力与种植体成角成反比。作者得出结论,由于Novaloc对插入-取出循环具有更高的抵抗力,因此可能为SIO提供更可靠的固位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecf3/10055980/11c5f1449d1b/jcm-12-02159-g001.jpg

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