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Effect of cyclical forces on the periodontal ligament and alveolar bone remodeling during orthodontic tooth movement

机译:正畸牙齿移动过程中周期性力对牙周膜和牙槽骨重塑的影响

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摘要

Objective: To investigate the effect of externally applied cyclical (vibratory) forces on the rate of tooth movement, the structural integrity of the periodontal ligament, and alveolar bone remodeling. Methods: Twenty-six female Sprague-Dawley rats (7?weeks old) were divided into four groups: CTRL (unloaded), VBO (molars receiving a vibratory stimulus only), TMO (molars receiving an orthodontic spring only), and TMO+VB (molars receiving an orthodontic spring and the additional vibratory stimulus). In TMO and TMO+VB groups, the rat first molars were moved mesially for 2?weeks using Nickel-Titanium coil spring delivering 25?g of force. In VBO and TMO+VB groups, cyclical forces at 0.4?N and 30?Hz were applied occlusally twice a week for 10?minutes. Microfocus X-ray computed tomography analysis and tooth movement measurements were performed on the dissected rat maxillae. Tartrate-resistant acid phosphatase staining and collagen fiber assessment were performed on histological sections. Results: Cyclical forces significantly inhibited the amount of tooth movement. Histological analysis showed marked disorganization of the collagen fibril structure of the periodontal ligament during tooth movement. Tooth movement caused a significant increase in osteoclast parameters on the compression side of alveolar bone and a significant decrease in bone volume fraction in the molar region compared to controls. Conclusions: Tooth movement was significantly inhibited by application of cyclical forces.
机译:目的:研究外部施加的周期性(振动)力对牙齿运动速率,牙周膜结构完整性和牙槽骨重塑的影响。方法:将26只雌性Sprague-Dawley大鼠(7周龄)分为四组:CTRL(空载),VBO(仅接受振动刺激的磨牙),TMO(仅接受正畸弹簧的磨牙)和TMO + VB(臼齿接受正畸弹簧和附加的振动刺激)。在TMO和TMO + VB组中,使用镍钛螺旋弹簧传递25微克的力,使大鼠的第一磨牙近中移2周。在VBO和TMO + VB组中,每周两次施加0.4?N和30?Hz的周期性力,持续10分钟。在解剖的大鼠上颌骨上进行了微聚焦X射线计算机断层扫描分析和牙齿运动测量。在组织切片上进行了抗酒石酸酸性磷酸酶染色和胶原纤维评估。结果:循环力显着抑制了牙齿运动。组织学分析表明,牙齿运动期间牙周膜的胶原纤维结构明显紊乱。与对照组相比,牙齿的移动导致在牙槽骨受压侧的破骨细胞参数显着增加,而在磨牙区域的骨体积分数显着下降。结论:施加周期性力可显着抑制牙齿运动。

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