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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Effect of low-frequency mechanical vibration on orthodontic tooth movement
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Effect of low-frequency mechanical vibration on orthodontic tooth movement

机译:低频机械振动对正畸牙齿运动的影响

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Introduction: Our objective was to investigate the effect of low-frequency mechanical vibration (LFMV) on the rate of tooth movement, bone volume fraction, tissue density, and the integrity of the periodontal ligament. Our null hypothesis was that there would be no difference in the amount of tooth movement between different values of LFMV. Methods: Sixty-four male CD1 mice, 12 weeks old, were used for orthodontic tooth movement. The mice were randomly divided into 2 groups: control groups (baseline; no spring + 5 Hz; no spring + 10 Hz; and no spring + 20 Hz) and experimental groups (spring + no vibration; spring + 5 Hz; spring + 10 Hz; and spring + 20 Hz). In the experimental groups, the first molars were moved mesially for 2 weeks using nickel-titanium coil springs delivering 10 g of force. In the control and experimental groups, LFMV was applied at 5, 10, or 20 Hz. Microfocus x-ray computed tomography analysis was used for tooth movement measurements, bone volume fraction, and tissue density. Additionally, immunostaining for sclerostin, tartrate-resistant acid phosphatase (TRAP) staining, and picrosirius red staining were used on the histologic sections. Simple descriptive statistics were used to summarize the data. Kruskal-Wallis tests were used to compare the outcomes across treatment groups. Results: LFMV did not increase the rate of orthodontic tooth movement. Microfocus x-ray computed tomography analysis showed increases in bone volume fractions and tissue densities with applications of LFMV. Sclerostin expression was decreased with 10 and 20 Hz vibrations in both the control and experimental groups. Additionally, the picrosirius staining showed that LFMV helped in maintaining the thickness and integrity of collagen fibers in the periodontal ligament. Conclusions: There was no significant increase in tooth movement by applying LFMV when compared with the control groups (spring + no vibration).
机译:简介:我们的目的是研究低频机械振动(LFMV)对牙齿移动速率,骨体积分数,组织密度和牙周膜完整性的影响。我们的零假设是,不同的LFMV值之间的牙齿移动量不会有差异。方法:将64只12周大的雄性CD1小鼠用于正畸牙齿移动。将小鼠随机分为两组:对照组(基线;无弹簧+ 5Hz;无弹簧+ 10Hz;无弹簧+ 20Hz)和实验组(弹簧+无振动;弹簧+ 5Hz;弹簧+10)。 Hz;弹簧+ 20 Hz)。在实验组中,使用提供10 g力的镍钛螺旋弹簧使第一磨牙近中移动2周。在对照组和实验组中,LFMV的频率为5、10或20 Hz。 Microfocus X射线计算机断层扫描分析用于牙齿运动测量,骨体积分数和组织密度。另外,在组织学切片上使用了针对硬化蛋白的免疫染色,抗酒石酸酸性磷酸酶(TRAP)染色和picrosirius红染色。简单的描述性统计数据用于汇总数据。使用Kruskal-Wallis检验比较治疗组之间的结果。结果:LFMV并没有增加正畸牙齿移动的速度。 Microfocus X射线计算机断层扫描分析显示,使用LFMV后,骨体积分数和组织密度增加。在对照组和实验组中,硬化蛋白的表达均随10和20 Hz振动而降低。此外,picrosirius染色显示LFMV有助于维持牙周膜中胶原纤维的厚度和完整性。结论:与对照组相比,应用LFMV的牙齿运动没有显着增加(弹簧+无振动)。

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