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采用独立附着体系统的下颌种植覆盖义齿的应力分析:修复间隙和附着高度的影响

Stress analysis of mandibular implant-retained overdenture with independent attachment system: effect of restoration space and attachment height.

作者信息

Ebadian Behnaz, Talebi Saeid, Khodaeian Niloufar, Farzin Mahmoud

出版信息

Gen Dent. 2015 Jan-Feb;63(1):61-7.

Abstract

In this in vitro study, 2 implants were embedded in the interforaminal region of an acrylic model. Two kinds of retention mechanisms were used to construct complete overdentures: ball type and direct abutment (Locator). The ball-type retention mechanism models included 3 different collar heights (1, 2, and 3 mm) with 15 mm occlusal plane height, and 3 different occlusal plane heights (9, 12, and 15 mm) with 1 mm collar height. The direct abutment models included 3 different occlusal plane heights (9, 12, and 15 mm) with 1 mm cuff height. Vertical unilateral and bilateral loads of 150 N were applied to the central fossa of the first molar. The stress of the bone around the implant was analyzed by finite element analysis. The results showed that by increasing vertical restorative space, the maximum stress values around implants were decreased in both unilateral and bilateral loading models. The results also showed that the increase in maximum stress values around implants correlated with the ball attachment collar height. The Locator attachment with a 1 mm cuff height and 9 mm occlusal plane height demonstrated 6.147 and 3.914 MPa in unilateral and bilateral loading conditions, respectively. While a reduction in the collar height of a ball-type retention mechanism and an increase in the vertical restorative space in direct abutment retention mechanisms are both biomechanically favorable, and may result in reduced stress in peri-implant bone, a ball attachment seems to be more favorable in the stress distribution around an implant than a Locator attachment.

摘要

在这项体外研究中,将2枚种植体植入丙烯酸模型的椎间孔区域。采用两种固位机制制作全口覆盖义齿:球帽型和直接基台(Locator)型。球帽型固位机制模型包括3种不同的颈部高度(1、2和3毫米),咬合平面高度为15毫米,以及3种不同的咬合平面高度(9、12和15毫米),颈部高度为1毫米。直接基台模型包括3种不同的咬合平面高度(9、12和15毫米),袖口高度为1毫米。向第一磨牙中央窝施加150牛的垂直单侧和双侧载荷。通过有限元分析对种植体周围骨的应力进行分析。结果表明,在单侧和双侧加载模型中,通过增加垂直修复空间,种植体周围的最大应力值均降低。结果还表明,种植体周围最大应力值的增加与球帽附着颈部高度相关。袖口高度为1毫米、咬合平面高度为9毫米的Locator附着在单侧和双侧加载条件下分别显示出6.147和3.914兆帕的应力。虽然球帽型固位机制颈部高度的降低和直接基台固位机制中垂直修复空间的增加在生物力学上都是有利的,并且可能导致种植体周围骨应力降低,但球帽附着在种植体周围的应力分布方面似乎比Locator附着更有利。

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