New mini dental implant attachments versus O-ring attachment after cyclic aging: Analysis of retention strength and gap space.

Q Engineering
Abdalbseet A Fatalla, Ke Song, Ying-Guang Cao
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引用次数: 4

Abstract

Overdenture as a treatment modality for both partially and fully edentulous patients is costeffective and less expensive. The purpose of the present study was to examine the newly fabricated attachments by comparing them with conventional O-ring attachment in vitro in terms of retention force and cyclic aging resistance. A total of 150 samples were prepared and divided into five groups according to the materials used (O-ring attachment, Deflex M10 XR, Deflex Classic SR, Deflex Acrilato FD, and flexible acrylic resin). The retention force of different attachments was measured by a mini dental implant after three subsequent aging (0, 63, and 126) cycles in the circumstances similar to the oral environment. The gap space between the head of the implant and the inner surface of the attachments was detected. Two-way analysis of variance (ANOVA) analysis with multiple comparisons test was applied for statistical analysis. The results showed that Deflex M10 XR had the highest retention force and the lowest gap space after cyclic aging; in addition, by comparing the relative force reduction, the lowest values were obtained in the O-ring attachment and the highest values in the flexible acrylic resin attachment. The retention force measured after cyclic aging for the Deflex M10 XR attachment was greatly improved when compared with the O-ring attachment and other types of attachment materials; in addition, the Deflex M10 XR attachment exhibited the minimum gap space between the inner surface and the mini dental implant head. In conclusion, Deflex M10 XR has the ability to withstand weathering conditions and retains its durable and retentive properties after aging when compared with other attachments.

新型微型牙种植体附着体与循环老化后的o形环附着体:固位强度和间隙分析。
覆盖义齿作为部分和全牙无牙患者的一种治疗方式,具有成本效益和较低的费用。本研究的目的是通过与传统的o形环附着体在体外的固位力和抗循环老化性能进行比较。共制备了150个样品,并根据使用的材料分为五组(o型环附件、Deflex M10 XR、Deflex Classic SR、Deflex Acrilato FD和柔性丙烯酸树脂)。在与口腔环境相似的情况下,通过微型种植体在3个老化周期(0、63和126)后测量不同附着体的固位力。检测种植体头部与附着体内表面之间的间隙。采用双因素方差分析(ANOVA)和多重比较检验进行统计分析。结果表明:循环时效后,Deflex M10 XR的固位力最大,间隙最小;此外,通过对比相对减力值,得到了o型圈连接最小,柔性丙烯酸树脂连接最高。循环时效后,Deflex M10 XR粘接体的固位力比o型圈粘接体和其他类型的粘接体有较大的提高;此外,Deflex M10 XR附着体的内表面与微型种植头之间的间隙最小。综上所述,与其他附件相比,Deflex M10 XR具有耐风化条件的能力,并且在老化后保持其耐用性和保持性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.08
自引率
0.00%
发文量
0
审稿时长
3-8 weeks
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