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正畸牙齿移动过程中人类弹力纤维系统的重建。

Reconstitution of the human oxytalan system during orthodontic tooth movement.

作者信息

Sims M R

出版信息

Am J Orthod. 1976 Jul;70(1):38-58. doi: 10.1016/0002-9416(76)90259-1.

Abstract

Orthodontic tooth movement in man has revealed that the oxytalan fiber system possesses a high order of maintenance. Oxytalan fibers did not merely increase in number during orthodontic movement. On the contrary, the oxytalan fiber system underwent reconstruction and adaptation to extensive metabolic and anatomic changes within the periodontium. With the use of light orthodontic forces, the oxytalan fiber system was constantly remodeled on both the tension and compression sides and maintained a characteristic cementum-vascular relationship even when teeth were moved a significant distance through the alveolar bone. In contrast, heavier forces caused localized destruction of the oxytalan system in regions of excessive pressure and tension. Reconstitution of the oxytalan system provided evidence against the concept that oxytalan fibers are stretched by orthodontic movement and subsequently contribute to relapse by elastic rebound. In man the oxytalan fiber system of the periodontal ligament is arranged as a three-dimensional fiber meshwork and exhibits a complex geometry like other fiber systems in the connective tissues. Knowledge of the interaction between elastic and collagen fibrillar assemblies has been used to derive some speculative concepts of oxytalan-collagen interaction. These concepts have been put forward with the intention of stimulating further interest in the oxytalan fiber meshwork. The present investigation emphasizes that the use of the light microscope to examine and record static images of complex biologic changes can provide new knowledge of the structure and function of human connective tissues.

摘要

人类的正畸牙齿移动表明,耐酸性纤维系统具有高度的维持能力。在正畸移动过程中,耐酸性纤维不仅仅是数量增加。相反,耐酸性纤维系统经历了重建,并适应了牙周组织内广泛的代谢和解剖学变化。使用轻正畸力时,耐酸性纤维系统在张力侧和压缩侧都不断重塑,即使牙齿通过牙槽骨移动了相当远的距离,也能维持牙骨质与血管的特征性关系。相比之下,较重的力会导致耐酸性系统在压力和张力过大的区域发生局部破坏。耐酸性系统的重建为“耐酸性纤维被正畸移动拉伸,随后通过弹性回弹导致复发”这一概念提供了反证。在人类中,牙周韧带的耐酸性纤维系统排列成三维纤维网络,与结缔组织中的其他纤维系统一样呈现出复杂的几何形状。对弹性纤维和胶原纤维组件之间相互作用的了解已被用于推导一些关于耐酸性纤维与胶原相互作用的推测性概念。提出这些概念的目的是激发对耐酸性纤维网络的进一步兴趣。本研究强调,使用光学显微镜检查和记录复杂生物变化的静态图像可以提供关于人类结缔组织结构和功能的新知识。

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