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不同设计的牙/种植体支持覆盖义齿固位强度和抗疲劳性的体外研究。

An in vitro investigation into retention strength and fatigue resistance of various designs of tooth/implant supported overdentures.

作者信息

Fatalla Abdalbseet A, Song Ke, Du Tianfeng, Cao Yingguang

机构信息

Center of Stomatological Medicine, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.

Department of Prosthodontics and Implantology, College of Dentistry, Baghdad University, Baghdad, Iraq.

出版信息

J Huazhong Univ Sci Technolog Med Sci. 2012 Feb;32(1):124-129. doi: 10.1007/s11596-012-0022-x. Epub 2012 Jan 27.

Abstract

Previously, the choice of prosthetic implant-retained overdentures has depended on data from previous studies about the retention-fatigue strength of the attachment system selected. Little or no data have been available on the correlation between the attachment system selected and the overdenture support configuration. The purpose of the present study was to evaluate the retention force and fatigue resistance of three attachment systems and four support designs of overdenture prosthesis. Four lower edentulous acrylic models were prepared and eight combinations of attachments groups were investigated in the study. These included: O-Rings with mini-dental implants (MDIs), Dalbo elliptic with Dalbo Rotex and fabricated flexible acrylic attachments with both MDI and Dalbo Rotex. The study was divided into four test groups: groups A and B, controls, and groups C and D, experimental groups. Control group A contained three overdenture supports: two free standing MDIs in the canine region and at the midline, and one simulated tooth root with Dalbo Rotex screwed in. Control group B contained four overdenture support foundations: two free standing MDIs in the right canine region and the first premolar region, and two simulated tooth roots with Dalbo Rotex screwed in at the same MDI position, but on the left side of the model. Experimental group C contained three overdenture support foundations: two free standing MDIs in the canine region and at the midline, and one simulated tooth root with MDI screwed in. Experimental group D contained four overdenture support foundations: two free standing MDIs in the right canine region and the first premolar region, and two simulated tooth roots with MDIs screwed in at the same MDI position, but on the left side of the model. Each group was further divided into two subgroups according to attachment type used. Five samples were prepared for each group. Retention force (N) values were recorded initially (0 cycles) and after 360, 720, 1440 and 2880 insertion and removal cycles. During the tensile test a cross-head speed of 10 mm/min was applied. Values of absolute force (AF) and relative force (RF) were statistically analyzed by two-way ANOVA and multiple comparison Tukey's tests between groups and cycles periods. The results of fatigue tests showed a 50% reduction in retention force in the subgroups with flexible attachments. A triangular design of overdenture support foundations with O-Ring attachments revealed the lowest value of AF and a relatively high reduction in RF. The four overdenture support designs with flexible acrylic attachments improved the retention force and reduced the fatigue retention. Furthermore, the results of the investigation demonstrate that flexible acrylic attachments for both teeth and implant-supported overdentures offer a wide range of retention forces.

摘要

以前,选择种植体支持的覆盖义齿取决于先前关于所选附着系统的固位-疲劳强度的研究数据。关于所选附着系统与覆盖义齿支持结构之间的相关性,几乎没有可用数据。本研究的目的是评估三种附着系统和四种覆盖义齿修复体支持设计的固位力和抗疲劳性。制备了四个下颌无牙丙烯酸模型,并在研究中调查了八种附着组组合。这些包括:带微型牙种植体(MDIs)的O形环、带Dalbo Rotex的Dalbo椭圆形以及同时带有MDI和Dalbo Rotex的定制柔性丙烯酸附着体。该研究分为四个测试组:A组和B组为对照组,C组和D组为实验组。对照组A包含三种覆盖义齿支持:两颗独立的MDIs分别位于尖牙区和中线,以及一颗拧入Dalbo Rotex的模拟牙根。对照组B包含四种覆盖义齿支持基础:两颗独立的MDIs分别位于右侧尖牙区和第一前磨牙区,以及两颗拧入Dalbo Rotex的模拟牙根,位置与MDIs相同,但在模型左侧。实验组C包含三种覆盖义齿支持基础:两颗独立的MDIs分别位于尖牙区和中线,以及一颗拧入MDI的模拟牙根。实验组D包含四种覆盖义齿支持基础:两颗独立的MDIs分别位于右侧尖牙区和第一前磨牙区,以及两颗拧入MDIs的模拟牙根,位置与MDIs相同,但在模型左侧。每组根据所使用的附着类型进一步分为两个亚组。每组制备五个样本。在最初(0次循环)以及360、720、1440和2880次插入和取出循环后记录固位力(N)值。在拉伸试验期间,施加10 mm/min的十字头速度。通过双向方差分析以及组间和循环周期的多重比较Tukey检验对绝对力(AF)和相对力(RF)值进行统计学分析。疲劳试验结果表明,带有柔性附着体的亚组固位力降低了50%。带O形环附着体的覆盖义齿支持基础的三角形设计显示出最低的AF值和相对较高的RF降低率。四种带有柔性丙烯酸附着体的覆盖义齿支持设计提高了固位力并降低了疲劳固位。此外,研究结果表明,用于牙齿和种植体支持的覆盖义齿的柔性丙烯酸附着体提供了广泛的固位力范围。

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