Miao Zeyao, Ren Liling, Zhang Haijuan, Zheng Chengdong, Yang Yuxuan, Zhu Jinyuan, Han Yandong, Wang Shuang
Angle Orthod. 2025 May 7;95(5):530-7. doi: 10.2319/100424-813.1.
To evaluate the influence of personalized aligner replacement, with or without physical methods of acceleration using low-frequency vibration combined with a low-level laser, on the tooth movement rate and accuracy of clear aligners.
Forty participants were randomly allocated to three groups. Fourteen participants used the standard replacement protocol in Group A, Group B included 14 participants using a personalized replacement protocol, and 12 participants in Group C followed the personalized replacement protocol and used a physical device that combined low-frequency vibration and low-level laser. Aligner replacement cycles of the first 12 steps were recorded, and GOM inspect suite software 2022 (GOM; Braunschweig, Germany) was used to evaluate maxillary molar movement accuracy using digital models collected before treatment and at the end of the 12th step.
No significant difference was found in the accuracy of maxillary molar movement between Groups A and B, but the tooth movement rate in Group B was significantly greater. The accuracy of maxillary molar movement was similar in Groups B and C, and the tooth movement rate in Group C was significantly increased.
The personalized replacement protocol decreased the number of aligner replacement cycles without impacting the accuracy of tooth movement. With personalized replacement, a physical method of acceleration combining low-level laser and low-frequency vibration significantly accelerated orthodontic tooth movement and had little influence on the accuracy of tooth movement.
评估个性化矫治器更换方式,以及联合使用低频振动和低强度激光等物理加速方法对透明矫治器牙齿移动速率和准确性的影响。
40名参与者被随机分为三组。A组14名参与者采用标准更换方案,B组14名参与者采用个性化更换方案,C组12名参与者采用个性化更换方案并使用结合了低频振动和低强度激光的物理装置。记录前12步的矫治器更换周期,并使用GOM inspect suite软件2022(GOM;德国不伦瑞克),通过治疗前和第12步结束时收集的数字模型来评估上颌磨牙移动的准确性。
A组和B组在上颌磨牙移动准确性方面未发现显著差异,但B组的牙齿移动速率显著更高。B组和C组在上颌磨牙移动准确性方面相似,且C组的牙齿移动速率显著增加。
个性化更换方案减少了矫治器更换周期数,且不影响牙齿移动的准确性。在个性化更换的基础上,联合低强度激光和低频振动的物理加速方法显著加速了正畸牙齿移动,且对牙齿移动准确性影响较小。