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用于正畸支抗的微型种植体的负荷相关种植体反应。

Load-related implant reaction of mini-implants used for orthodontic anchorage.

作者信息

Büchter André, Wiechmann Dirk, Koerdt Stefan, Wiesmann Hans Peter, Piffko Josef, Meyer Ulrich

机构信息

Department of Cranio-Maxillofacial Surgery, University of Münster, Münster, Germany.

出版信息

Clin Oral Implants Res. 2005 Aug;16(4):473-9. doi: 10.1111/j.1600-0501.2005.01149.x.

Abstract

The purpose of this study was to determine the clinical and biomechanical outcome of two different titanium mini-implant systems activated with different load regimens. A total of 200 mini-implants (102 Abso Anchor and 98 Dual Top) were placed in the mandible of eight Göttinger minipigs. Two implants each were immediately loaded in opposite direction by various forces (100, 300 or 500 cN) through tension coils. Additionally, three different distances between the neck of the implant and the bone rim (1, 2 and 3 mm) were used. The different load protocols were chosen to evaluate the load-related implant performance. The load was provided by superelastic tension coils, which are known to develop a virtually constant force. Non-loaded implants were used as a reference. Following an experimental loading period of 22 and 70 days half of the minipigs were sacrificed, and implant containing bone specimens evaluated for clinical performance and implant stability. Implant loosing was found to be statistically dependent on the tip moment (TM) at the bone rim. Clinical implant loosing were only present when load exceeded 900 cN mm. No movement of implants through the bone was found in the experimental groups, for any applied loads. Over the two experimental periods the non-loaded implants of one type of implant had a higher stability than those of the loaded implants. Dual Top implants revealed a slightly higher removal torque compared with Abso Anchor implants. Based on the results of this study, immediate loading of mini-implants can be performed without loss of stability when the load-related biomechanics do not exceed an upper limit of TM at the bone rim.

摘要

本研究的目的是确定两种不同的钛微型种植体系统在不同加载方案激活下的临床和生物力学结果。总共200颗微型种植体(102颗Abso Anchor和98颗Dual Top)被植入8只哥廷根小型猪的下颌骨。通过张力线圈以不同的力(100、300或500 cN)立即向相反方向加载两颗种植体。此外,使用了种植体颈部与骨边缘之间的三种不同距离(1、2和3 mm)。选择不同的加载方案来评估与负载相关的种植体性能。负载由超弹性张力线圈提供,已知其能产生几乎恒定的力。未加载的种植体用作对照。在22天和70天的实验加载期后,处死一半的小型猪,并对含有种植体的骨标本进行临床表现和种植体稳定性评估。发现种植体松动在统计学上取决于骨边缘的尖端力矩(TM)。仅当负载超过900 cN·mm时才会出现临床种植体松动。在任何施加的负载下,实验组中均未发现种植体穿过骨的移动。在两个实验期内,一种种植体类型的未加载种植体比加载种植体具有更高的稳定性。与Abso Anchor种植体相比,Dual Top种植体显示出略高的去除扭矩。基于本研究的结果,当与负载相关的生物力学不超过骨边缘TM的上限时,可以进行微型种植体的即刻加载而不会丧失稳定性。

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