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种植体支持修复体的循环加载:当将循环使用的基台替换为成品基台时,修复体与基台界面间隙的比较。

Cyclic loading of implant-supported prostheses: comparison of gaps at the prosthetic-abutment interface when cycled abutments are replaced with as-manufactured abutments.

作者信息

Hecker Donna M, Eckert Steven E, Choi Yong-Geun

机构信息

Mayo Clinic, Mayo Graduate School of Medicine, Rochester, MN 55344, USA.

出版信息

J Prosthet Dent. 2006 Jan;95(1):26-32. doi: 10.1016/j.prosdent.2005.11.005.

Abstract

STATEMENT OF PROBLEM

Implant-supported prostheses are mechanically connected to implants. When this connection is a screw joint, it is likely that the fit will be imperfect. Previous studies demonstrate that deformation can occur at the interface between the prosthesis and implant following cyclic loading. This deformation alters the fit of components. If implant connection components, abutments, were to be reoriented or replaced, it is likely that deformed surfaces would no longer approximate each other. Likewise, it is possible that the deformation may deleteriously alter the fit to replacement components.

PURPOSE

This study evaluated the changes in prosthesis-implant abutment fit when gold cylinders that have been cyclically loaded are mated to as-manufactured abutments.

MATERIAL AND METHODS

Fifteen implant-supported frameworks were fabricated using conventional casting techniques and were cyclically loaded under 3 different loading conditions: anterior region, unilaterally on posterior cantilever, and bilaterally on posterior cantilever. A cyclical load of 200 N was applied to each framework for 200,000 cycles. The abutments and frameworks were returned to the definitive casts for measurements. Linear measurements (microm) of the gap between the prosthetic cylinder and the implant-supported abutment at 4 predetermined reference points were made. The cycled abutments were replaced with as-manufactured abutments, and the gaps were measured at the same reference points. The Mann-Whitney rank-sum test was applied to the 2 sets of data to determine whether significant changes in fit were observed following component replacement (alpha = .05).

RESULTS

Although minor changes in component fit were seen, the data failed to show that gaps at the prosthetic-abutment interface of cycled abutments were significantly different from those of as-manufactured abutments.

CONCLUSIONS

Within the limitations of this study, differences in the fit between the implant-supported prosthesis and the abutments were not significantly different when abutments worn through loading were replaced with new as-manufactured abutments.

摘要

问题陈述

种植体支持的修复体通过机械方式与种植体相连。当这种连接为螺丝连接时,其配合可能并不完美。先前的研究表明,在循环加载后,修复体与种植体之间的界面可能会发生变形。这种变形会改变部件的配合。如果种植体连接部件(基台)要重新定向或更换,变形的表面可能不再相互贴合。同样,变形也可能对更换部件的配合产生有害影响。

目的

本研究评估了经过循环加载的金圆柱体与新制造的基台配对时,修复体 - 种植体基台配合的变化。

材料与方法

使用传统铸造技术制作了15个种植体支持的框架,并在3种不同加载条件下进行循环加载:前部区域、单侧后悬臂和双侧后悬臂。对每个框架施加200 N的循环载荷,持续200,000次循环。将基台和框架放回最终模型进行测量。在4个预定参考点测量修复体圆柱体与种植体支持基台之间间隙的线性尺寸(微米)。将经过循环加载的基台更换为新制造的基台,并在相同参考点测量间隙。对两组数据应用曼 - 惠特尼秩和检验,以确定更换部件后配合是否有显著变化(α = 0.05)。

结果

虽然观察到部件配合有微小变化,但数据未能表明经过循环加载的基台在修复体 - 基台界面处的间隙与新制造的基台有显著差异。

结论

在本研究的局限性内,当用新制造的基台替换因加载而磨损的基台时,种植体支持的修复体与基台之间的配合差异无统计学意义。

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