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一种使用骨骼锚固和低力的啮齿动物模型用于正畸牙齿移动。

A rodent model using skeletal anchorage and low forces for orthodontic tooth movement.

机构信息

Department of Orthodontics, University of Louisville, Louisville, Ky.

University of Kentucky, Lexington, Ky.

出版信息

Am J Orthod Dentofacial Orthop. 2019 Feb;155(2):254-263. doi: 10.1016/j.ajodo.2018.03.022.

Abstract

INTRODUCTION

Nonhuman animal models have been used extensively to study orthodontic tooth movement (OTM). However, rodent models have disadvantages, including a reported reduction in bone volume during OTM. The purpose of this study was to determine the viability of a skeletal anchorage and the effect of low force (∼3 cN) on interradicular bone volume during OTM.

METHODS

Ninety Sprague-Dawley rats were divided into 5 time points. A miniscrew and a nickel titanium coil spring placed a load of 3 cN (experimental) or 0 cN (sham) on the maxillary first molar in a split-mouth design. Displacement of the first molar and bone volume/total volume (BV/TV) in the interradicular region were quantified.

RESULTS

The success rate of the miniscrew was 98.9% (89 out of 90). Linear and angular tooth movement increased steadily (mean 0.1 mm/wk, 0.48 mm at 40 days). BV/TV was significantly reduced between the tooth movement and non-tooth movement sides in the 3 cN group: by 13%, 23%, 15%, 23%, and 16% at 3, 7, 14, 28, and 40 days, respectively.

CONCLUSIONS

Our model resulted in efficient OTM without skeletal anchorage failure. BV/TV reduction was lower than in previous reports. This novel validated model is likely to be the basis for future studies.

摘要

简介

非人类动物模型已被广泛用于研究正畸牙齿移动(OTM)。然而,啮齿动物模型存在一些缺点,包括在 OTM 期间报告的骨量减少。本研究的目的是确定骨锚固的可行性以及在 OTM 期间低力(约 3 cN)对根管间骨量的影响。

方法

90 只 Sprague-Dawley 大鼠分为 5 个时间点。在分口设计中,微型螺钉和镍钛螺旋弹簧在上颌第一磨牙上施加 3 cN(实验组)或 0 cN(假手术组)的负荷。定量测量第一磨牙的位移和根管间区域的骨体积/总体积(BV/TV)。

结果

微型螺钉的成功率为 98.9%(90 个中的 89 个)。牙齿的线性和角度移动稳步增加(平均每周 0.1 毫米,40 天增加 0.48 毫米)。在 3 cN 组中,牙齿移动侧和非牙齿移动侧之间的 BV/TV 显著减少:分别为 3、7、14、28 和 40 天时的 13%、23%、15%、23%和 16%。

结论

我们的模型在没有骨锚固失败的情况下导致了有效的 OTM。BV/TV 减少低于先前的报告。这种新颖的验证模型可能是未来研究的基础。

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