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一种非连续性龈上牙萌出机制。

A mechanism of noncontinuous supraosseous tooth eruption.

作者信息

Katona T R, Qian H

机构信息

Biomechanics and Biomaterials Research Center, Indiana University, Indianapolis 46202, USA.

出版信息

Am J Orthod Dentofacial Orthop. 2001 Sep;120(3):263-71. doi: 10.1067/mod.2001.116086.

Abstract

Numerous theories have been propounded to explain the various aspects of tooth eruption, but no general consensus exists about some of the underlying mechanisms that govern these aspects. An important unresolved issue is the source of the motive forces that displace teeth. We proposed that supraosseous eruptive forces are generated by tooth socket distortions caused by functional jaw deformations. Previous studies used basic equations of static equilibrium to demonstrate that the concomitant stretching of the oblique periodontal ligament (PDL) fibers give rise to forces that may cause supraosseous tooth eruption. For a more rigorous and expanded analysis, we applied the finite element method (FEM). Three functional loads were considered, but the FEM calculations strongly suggested that all jaw deformations contribute to tooth extrusion. It was also demonstrated that the PDL fiber disruptions that are likely to occur with increased stretching can provide a mechanism to stabilize the erupted position.

摘要

为了解释牙齿萌出的各个方面,人们提出了许多理论,但对于一些控制这些方面的潜在机制,尚未达成普遍共识。一个重要的未解决问题是使牙齿移位的动力来源。我们提出,骨上萌出力是由功能性颌骨变形引起的牙槽窝扭曲产生的。先前的研究使用静态平衡的基本方程来证明,斜行牙周韧带(PDL)纤维的伴随拉伸会产生可能导致骨上牙齿萌出的力。为了进行更严格和扩展的分析,我们应用了有限元方法(FEM)。考虑了三种功能性负荷,但有限元计算强烈表明,所有颌骨变形都会导致牙齿挤出。还证明了随着拉伸增加可能发生的PDL纤维破坏可以提供一种稳定萌出位置的机制。

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