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体外评估种植体位置对肯尼迪II类条件下种植体支持可摘局部义齿生物力学行为的影响。

In Vitro Assessment of the Effect of Implant Position on Biomechanical Behaviors of Implant-Supported Removable Partial Dentures in Kennedy Class II Condition.

作者信息

Kihara Masafumi, Ogino Yoichiro, Matsushita Yasuyuki, Morita Takehiro, Sawae Yoshinori, Ayukawa Yasunori, Koyano Kiyoshi

机构信息

Section of Implant and Rehabilitative Dentistry, Division of Oral Rehabilitation, Faculty of Dental Sciences, Kyushu University, Fukuoka 812-8282, Japan.

Section of Fixed Prosthodontics, Division of Oral Rehabilitation, Faculty of Dental Sciences, Kyushu University, Fukuoka 812-8282, Japan.

出版信息

Materials (Basel). 2021 Apr 23;14(9):2145. doi: 10.3390/ma14092145.

Abstract

The purpose of this study was to investigate the effects of implant position and loading position on biomechanical behaviors using implant-supported removable partial denture (ISRPD) models in a simulated Kennedy class Ⅱ partially edentulous mandible. Three types of Kennedy class Ⅱ mandibular acrylic resin models (a conventional RPD without support by an implant-CRPD; models with an implant placed at first molar (#46)-MP-ISRPD- and second molar (#47)-DP-ISRPD) were used to measure vertical displacement of the RPD, mesio-distal displacement of the abutment tooth, and bending moment of the abutment tooth and implant under one-point loading. The variables at three respective loading points (#45, #46 and #47) were compared statistically. Vertical displacement was suppressed in ISRPDs compared to the CRPD, and significant effects were identified under loading at the implant position. The largest meiso-distal displacement was observed in MP-ISRPD under #47 loading. Bending moments of the abutment tooth and implant were significantly higher in MP-ISRPD than in DP-ISPRD. In MP-ISRPD, a higher bending moment of the abutment tooth under #45 and #47 loading was detected, although the bending moment in DP-ISRPD was almost zero. The results of this study suggested that MP-ISRPD shows the specific biomechanical behaviors, although DP-ISRPD might provide biomechanical benefits under all one-point loading conditions.

摘要

本研究的目的是使用种植体支持的可摘局部义齿(ISRPD)模型,在模拟的肯氏Ⅱ类下颌部分牙列缺损模型中,研究种植体位置和加载位置对生物力学行为的影响。使用三种类型的肯氏Ⅱ类下颌丙烯酸树脂模型(一种无种植体支持的传统可摘局部义齿-CRPD;种植体位于第一磨牙(#46)处的模型-MP-ISRPD-以及种植体位于第二磨牙(#47)处的模型-DP-ISRPD)来测量可摘局部义齿的垂直位移、基牙的近远中位移以及在单点加载下基牙和种植体的弯矩。对三个各自加载点(#45、#46和#47)处的变量进行统计学比较。与CRPD相比,ISRPD的垂直位移得到抑制,并且在种植体位置加载时发现了显著影响。在#47加载下,MP-ISRPD中观察到最大的近远中位移。MP-ISRPD中基牙和种植体的弯矩显著高于DP-ISPRD。在MP-ISRPD中,在#45和#47加载下检测到基牙的弯矩较高,尽管DP-ISRPD中的弯矩几乎为零。本研究结果表明,MP-ISRPD表现出特定的生物力学行为,尽管DP-ISRPD可能在所有单点加载条件下都提供生物力学益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa80/8122922/e4bc4054b1ec/materials-14-02145-g001.jpg

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