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低强度力在口腔正畸中的骨改建作用

Low-Magnitude Forces for Bone Modeling and Remodeling in Dentofacial Orthopedics.

机构信息

Department of Orthodontics and Oral Facial Genetics, Indiana University School of Dentistry, 1121 W Michigan St, Indianapolis, IN, 46202, USA.

出版信息

Curr Osteoporos Rep. 2018 Jun;16(3):277-282. doi: 10.1007/s11914-018-0437-9.

Abstract

PURPOSE OF REVIEW

To examine the evidence in support of light continuous forces for enhancing bone adaptation (modeling and remodeling) in orthodontics and dentofacial orthopedics.

RECENT FINDINGS

Clinical evidence suggests that light continuous orthodontic force can achieve physiologic expansion of the maxillary arch, but the long-term stability and the biological effects of the procedure are unclear. Compared to conventional orthodontic appliances that deliver heavy interrupted forces for tooth movement, the application of low-magnitude forces in animal models leads to anabolic modeling and remodeling of the alveolar bone in the path of orthodontic tooth movement. This results in dental translation and expansion of the alveolar process. Light continuous forces are preferable to heavy forces for more physiologic dentofacial orthopedics. The interaction of low-magnitude loads with soft tissue posture achieves therapeutic adaptation of the craniofacial skeleton. The increasing emphasis on genomic medicine and personalized treatment planning should focus on low-magnitude loads in orthodontics and dentofacial orthopedics.

摘要

目的综述

研究支持轻持续力促进正畸和正颌骨改建(塑造和重塑)的证据。

最近的发现

临床证据表明,轻持续正畸力可以实现上颌弓的生理性扩张,但该过程的长期稳定性和生物学效应尚不清楚。与传统正畸矫治器通过施加重间断力来移动牙齿相比,在动物模型中应用低幅度力会导致牙槽骨在正畸牙齿移动的过程中发生合成代谢重塑和重塑。这会导致牙齿的平移和牙槽骨的扩张。轻持续力比重力更适合更生理性的正颌骨矫形。低幅度负荷与软组织姿势的相互作用实现了颅面骨骼的治疗适应。越来越重视基因组医学和个体化治疗计划,应关注正畸和正颌骨矫形中的低幅度负荷。

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