截骨术与皮质切开术辅助牙齿移动的比较。

S. Yen
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引用次数: 7

摘要

骨切开术和皮质切开术结合正畸牙齿移动可以激活不同的骨反应,可能被利用来加速牙齿移动。在牙根周围进行节段性截骨术可以形成一个承载牙齿的运输盘,这个运输盘可以分散,用正畸器具和弓线定位。在困难的颅面修复中,牙槽节段可以用弓丝和正畸力学引导到位。皮质切开术延伸到骨髓间隙可以激活骨损伤修复机制,当牙根周围的牙槽骨从脱矿阶段过渡到纤维替代阶段并最终过渡到矿化阶段时,可以加速骨更新。有控制的脱矿和牙槽骨的置换为牙根在再矿化之前通过密度较小的骨移动提供了机会。虽然与正颌手术相比,皮质切开术和截骨术是小手术,但未来研究的目标是通过使用更小的手术或完全取消手术来产生类似的骨反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comparison between Osteotomy and Corticotomy-Assisted Tooth Movement.
Osteotomies and corticotomies used in combination with orthodontic tooth movement can activate different bone responses that may be exploited to accelerate tooth movement. Segmental osteotomies around dental roots can create a tooth-bearing transport disk that may be distracted and positioned with orthodontic appliances and archwires. In difficult craniofacial repairs, alveolar segments can be guided into position with archwires and orthodontic mechanics. The corticotomy extending into the marrow space can activate bone injury repair mechanisms that accelerate bone turnover as the alveolar bone surrounding the dental roots transitions from a demineralization phase to a fibrous replacement phase and, finally, a mineralization phase. The controlled demineralization and replacement of alveolar bone provides a window of opportunity for roots to move though less dense bone prior to remineralization. Although the corticotomies and osteotomies are minor surgeries compared to orthognathic surgery, the goal of future research is to produce similar bone responses by using smaller surgeries or by eliminating the surgeries altogether.
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