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远中游离端种植体支持可摘局部义齿基牙、种植体及剩余牙槽嵴上的负荷分布

Load distribution on abutment tooth, implant and residual ridge with distal-extension implant-supported removable partial denture.

作者信息

Matsudate Yoshiki, Yoda Nobuhiro, Nanba Masahide, Ogawa Toru, Sasaki Keiichi

机构信息

Division of Advanced Prosthetic Dentistry, Tohoku University Graduate School of Dentistry, Sendai, Japan.

Division of Advanced Prosthetic Dentistry, Tohoku University Graduate School of Dentistry, Sendai, Japan.

出版信息

J Prosthodont Res. 2016 Oct;60(4):282-288. doi: 10.1016/j.jpor.2016.01.008. Epub 2016 Feb 17.

Abstract

PURPOSE

The aim of this study was to evaluate the effect of implant location on load distribution in the abutment tooth, implant and residual ridge with a distal-extension implant-supported removable partial denture (ISRPD).

METHODS

A mandibular unilateral distal-extension edentulous simulation model was used. Implants were inserted at the second premolar (mesial implant) and second molar (distal implant) positions in the edentulous area. An experimental ISRPD was fabricated of acrylic resin with a cobalt-chromium alloy framework. Loads on the implants and abutment tooth were measured with piezoelectric force transducers. The load on the residual ridge was measured with pressure-sensitive film. A vertical load of 100N was applied at the first molar region. Measurements were made under the following three conditions: with conventional removable partial denture (CRPD), with mesial-implant-supported removable partial denture (MISRPD), and with distal-implant-supported removable partial denture (DISRPD). In each condition, the unused implants were made inactive by eliminating contact with the inner surface of the denture.

RESULTS

The load on the abutment tooth was greatest with DISRPD, followed by CRPD and MISRPD (P<0.01). The load on the implant was greater with DISRPD than with MISRPD (P<0.01). The load on the residual ridge was lowest with DISRPD, followed by MISRPD and CRPD (P<0.01).

CONCLUSIONS

This experimental study provided quantitative data regarding the effect of implant location on load distribution with ISRPDs. Further investigation regarding the effect of denture design on the load distribution is needed for determining the proper implant location of ISRPD.

摘要

目的

本研究旨在评估种植体位置对采用远中游离端种植体支持的可摘局部义齿(ISRPD)时基牙、种植体及剩余牙槽嵴上负荷分布的影响。

方法

采用下颌单侧远中游离端无牙颌模拟模型。在无牙区的第二前磨牙(近中种植体)和第二磨牙(远中种植体)位置植入种植体。用钴铬合金支架制作丙烯酸树脂实验性ISRPD。用压电力传感器测量种植体和基牙上的负荷。用压敏膜测量剩余牙槽嵴上的负荷。在第一磨牙区施加100N的垂直负荷。在以下三种情况下进行测量:使用传统可摘局部义齿(CRPD)、近中种植体支持的可摘局部义齿(MISRPD)和远中种植体支持的可摘局部义齿(DISRPD)。在每种情况下,通过消除种植体与义齿内表面的接触使未使用的种植体不起作用。

结果

DISRPD时基牙上的负荷最大,其次是CRPD和MISRPD(P<0.01)。DISRPD时种植体上的负荷大于MISRPD(P<0.01)。DISRPD时剩余牙槽嵴上的负荷最低,其次是MISRPD和CRPD(P<0.01)。

结论

本实验研究提供了关于种植体位置对ISRPD负荷分布影响的定量数据。为确定ISRPD合适的种植体位置,需要进一步研究义齿设计对负荷分布的影响。

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