Corticision: A Flapless Procedure to Accelerate Tooth Movement.

Y. Park
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引用次数: 21

Abstract

Orthodontic tooth movement results from applied forces to the teeth evoking cellular responses in the teeth and their surrounding tissues, including the periodontal ligament, alveolar bone and gingiva. It is advantageous for the orthodontist to be well informed of the detailed process of the biological events that unfold during tooth movement, since some of these details may differ from one person to another due to biological differences such as periodontal metabolism or alveolar bone density. This led us to emphasize that orthodontics is a field of endeavor where the integration of mechanics and biology is materialized, and to affirm the fact that tooth movement is conducted in individual human beings, each composed of a unique and intricate physiological system. Biological variations may be the foundation of the differences that are frequently observed in the outcomes of orthodontic treatment in particular with reference to treatment duration between patients with similar malocclusions and who were treated identically. A wide diversity of clinical trials has been carried out to control the tissue resistance to facilitate orthodontic tooth movement, which involves biomechanical, pharmaceutical, surgical, electrical regimens or tissue engineering technology. The term 'Corticision' is a neologism which indicates 'cortical bone incision'. It is a minimally invasive periodontal procedure without flap elevation, thus accelerating tooth movement with an enhanced turnover rate of the surrounding structures. This chapter introduces the technical procedure, and the biological background of how such a minor surgical procedure can receive the accelerated tooth movement with impunity and thereby shorten the duration of treatment.
去皮:一种加速牙齿运动的无瓣手术。
正畸牙齿的移动是由于施加在牙齿上的力引起牙齿及其周围组织(包括牙周韧带、牙槽骨和牙龈)的细胞反应。对于正畸医生来说,充分了解牙齿运动过程中展开的生物事件的详细过程是有利的,因为由于生物差异,例如牙周代谢或牙槽骨密度,这些细节可能因人而异。这使我们强调正畸是一个努力的领域,其中力学和生物学的整合是物化的,并确认牙齿运动是在个体人类进行的事实,每个人都由一个独特而复杂的生理系统组成。生物变异可能是正畸治疗结果中经常观察到的差异的基础,特别是在相似错咬合和相同治疗的患者之间的治疗时间。为了控制组织阻力以促进正畸牙齿移动,已经开展了各种各样的临床试验,包括生物力学、制药、外科、电气方案或组织工程技术。“皮质切除”是一个新词,意思是“皮质骨切口”。这是一种微创牙周手术,没有皮瓣抬高,因此加速牙齿运动,提高周围结构的周转率。本章介绍了技术程序,以及这样一个小的外科手术如何不受惩罚地加速牙齿运动,从而缩短治疗时间的生物学背景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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