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滑动力学中控制前牙移动所需最佳力系的实验测定

Experimental determination of optimal force system required for control of anterior tooth movement in sliding mechanics.

作者信息

Sia SheauSoon, Shibazaki Tatsunori, Koga Yoshiyuki, Yoshida Noriaki

机构信息

Sia Orthodontic Dental Specialist Clinic, No. 5-1, Jalan Metro Perdana Barat 1, Taman Usahawan Kepong, 52100 Kuala Lumpur, Malaysia.

出版信息

Am J Orthod Dentofacial Orthop. 2009 Jan;135(1):36-41. doi: 10.1016/j.ajodo.2007.01.034.

Abstract

INTRODUCTION

This study was designed to determine the optimum vertical height of the retraction force on the power arm that is required for efficient anterior tooth retraction during space closure with sliding mechanics.

METHODS

Three adults (1 man, 2 women) with Angle Class II Division 1 malocclusions were selected for this study. In each subject, the maxillary right central incisor was the target tooth. Initial tooth displacements of that tooth with sliding mechanics with various heights of retraction forces were measured in vivo by a 2-point 3-dimensional displacement magnetic sensor device. The tooth's motion trajectories on the midsagittal plane were studied.

RESULTS

The location of the center of rotation of the target tooth varied according to the different heights of the retraction forces. Controlled anterior tooth movement (ie, lingual-crown tipping, lingual-root movement) can be predicted, simulated, or even manipulated by different heights of retraction forces on the power arm in the sliding mechanics force system. A power arm length of 3 to 5 mm is estimated to produce controlled lingual-crown tipping (with the apex as the center of rotation) for efficient anterior tooth retraction during sliding space closure in adults with Angle Class II Division 1 malocclusion.

CONCLUSIONS

Knowing and applying the correct height of retraction force on the power arm is the key to efficient anterior tooth retraction.

摘要

引言

本研究旨在确定在滑动矫治技术关闭间隙过程中,实现高效前牙内收所需的作用臂上牵引力的最佳垂直高度。

方法

本研究选取了3名安氏II类1分类错牙合畸形的成年人(1名男性,2名女性)。在每位受试者中,上颌右侧中切牙为目标牙。使用两点三维位移磁传感器装置在体内测量该牙在不同高度牵引力的滑动矫治技术下的初始牙位移。研究了该牙在正中矢状面上的运动轨迹。

结果

目标牙的旋转中心位置随牵引力高度的不同而变化。在滑动矫治力系统中,通过作用臂上不同高度的牵引力,可以预测、模拟甚至控制前牙的移动(即舌向冠倾斜、舌向根移动)。对于安氏II类1分类错牙合畸形的成年人,在滑动关闭间隙过程中,估计作用臂长度为3至5毫米时可产生可控的舌向冠倾斜(以根尖为旋转中心),以实现高效的前牙内收。

结论

了解并应用作用臂上正确的牵引力高度是实现高效前牙内收的关键。

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