Biomechanics and μCT Laboratories, Department of Orthodontics, College of Dentistry, New York University, New York, NY 10010, USA.
Am J Orthod Dentofacial Orthop. 2013 Feb;143(2):163-72. doi: 10.1016/j.ajodo.2012.09.010.
The center of resistance is considered the most important reference point for tooth movement. It is often stated that forces through this point will result in tooth translation. The purpose of this article is to report the results of numeric experiments testing the hypothesis that centers of resistance do not exist in space as 3-dimensional points, primarily because of the geometric asymmetry of the periodontal ligament. As an alternative theory, we propose that, for an arbitrary tooth, translation references can be determined by 2-dimensional projection intersections of 3-dimensional axes of resistance.
Finite element analyses were conducted on a maxillary first molar model to determine the position of the axes of rotation generated by 3-dimensional couples. Translation tests were performed to compare tooth movement by using different combinations of axes of resistance as references.
The couple-generated axes of rotation did not intersect in 3 dimensions; therefore, they do not determine a 3-dimensional center of resistance. Translation was obtained by using projection intersections of the 2 axes of resistance perpendicular to the force direction.
Three-dimensional axes of resistance, or their 2-dimensional projection intersections, should be used to plan movement of an arbitrary tooth. Clinical approximations to a small 3-dimensional "center of resistance volume" might be adequate in nearly symmetric periodontal ligament cases.
阻力中心被认为是牙齿移动最重要的参考点。通常认为,通过该点的力将导致牙齿平移。本文的目的是报告数值实验的结果,以验证阻力中心在空间中不存在三维点的假设,主要是因为牙周韧带的几何不对称性。作为替代理论,我们提出,对于任意牙齿,可以通过三维阻力轴的二维投影交点来确定平移参考点。
对上颌第一磨牙模型进行有限元分析,以确定由三维力偶产生的旋转轴的位置。进行平移测试,以比较使用不同阻力轴组合作为参考的牙齿移动情况。
产生的旋转轴在三维空间中不相交,因此它们不能确定三维阻力中心。通过使用垂直于力方向的两个阻力轴的投影交点来获得平移。
应使用三维阻力轴或其二维投影交点来规划任意牙齿的移动。在几乎对称的牙周韧带情况下,临床接近一个小的三维“阻力中心体积”可能就足够了。