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脉冲电磁场对正畸牙齿移动的影响。

Effect of pulsed electromagnetic fields on orthodontic tooth movement.

作者信息

Stark T M, Sinclair P M

出版信息

Am J Orthod Dentofacial Orthop. 1987 Feb;91(2):91-104. doi: 10.1016/0889-5406(87)90465-3.

Abstract

The purpose of this study was to determine whether the application of a simple surgically noninvasive, pulsed electromagnetic field could increase both the rate and amount of orthodontic tooth movement observed in guinea pigs. In addition, the objective was to evaluate the electromagnetic field's effects on bony physiology and metabolism and to search for possible systemic side effects. Laterally directed orthodontic force was applied to the maxillary central incisors of a sample of 40 young male, Hartley guinea pigs (20 experimental, 20 control) by means of a standardized intraoral coil spring inserted under constricting pressure into holes drilled in the guinea pigs' two maxillary central incisors. During the experimental period, the guinea pigs were placed in specially constructed, plastic animal holders with their heads positioned in an area of uniform electromagnetic field. Control animals were placed in similar plastic holders that did not carry the electrical apparatus. The application of a pulsed electromagnetic field to the experimental animals significantly increased both the rate and final amount of orthodontic tooth movement observed over the 10-day experimental period. The experimental animals also demonstrated histologic evidence of significantly greater amounts of bone and matrix deposited in the area of tension between the orthodontically moved maxillary incisors. This increase in cellular activity was also reflected by the presence of significantly greater numbers of osteoclasts in the alveolar bone surrounding the maxillary incisors of the experimental animals. After a 10-day exposure to pulsed electromagnetic field, minor changes in serologic parameters relating to protein metabolism and muscle activity were noted. The results of this study suggest that it is possible to increase the rate of orthodontic tooth movement and bone deposition through the application of a noninvasive, pulsed electromagnetic field.

摘要

本研究的目的是确定应用一种简单的手术无创脉冲电磁场是否能提高豚鼠正畸牙齿移动的速率和移动量。此外,目标是评估电磁场对骨生理和代谢的影响,并寻找可能的全身副作用。通过将标准化的口内螺旋弹簧在收缩压力下插入40只年轻雄性哈特利豚鼠(20只实验动物,20只对照动物)上颌中切牙钻的孔中,对上颌中切牙施加侧向正畸力。在实验期间,将豚鼠放置在特制的塑料动物固定器中,其头部位于均匀电磁场区域。对照动物放置在类似的不携带电气设备的塑料固定器中。在10天的实验期内,对实验动物施加脉冲电磁场显著提高了观察到的正畸牙齿移动的速率和最终移动量。实验动物还显示出组织学证据,表明在正畸移动的上颌切牙之间的张力区域沉积了大量的骨和基质。实验动物上颌切牙周围牙槽骨中破骨细胞数量显著增加也反映了细胞活性的这种增加。在暴露于脉冲电磁场10天后,观察到与蛋白质代谢和肌肉活动相关的血清学参数有轻微变化。本研究结果表明,通过应用无创脉冲电磁场有可能提高正畸牙齿移动速率和骨沉积。

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