Previous studies on computational modeling of tooth movement in orthodontic treatments are limited to a single model and fail in generalizing the simulation results to other patients. To this end, we consider multiple patients and focus on tooth movement variations under the identical load and boundary conditions both for intra- and inter-patient analyses. We introduce a novel computational analysis tool based on finite element models (FEMs) addressing how to assess initial tooth displacement in the mandibular dentition across different patients for uncontrolled tipping scenarios with different load magnitudes applied to the mandibular dentition. This is done by modeling the movement of each patient's tooth as a nonlinear function of both load and tooth size. As the size of tooth can affect the resulting tooth displacement, a combination of two clinical biomarkers obtained from the tooth anatomy, i.e., crown height and root volume, is considered to make the proposed model generalizable to different patients and teeth.
翻译:以往关于牙动在正牙治疗中的计算模型研究仅限于一个单一模型,未能将模拟结果推广到其他病人。为此,我们考虑多个病人,注重在相同的负荷和界限条件下的牙齿运动变化,供病人内部和病人间分析使用。我们采用了一个新的计算分析工具,根据有限的元素模型(FEMS),研究如何评估不同病人在单体齿下最初的牙脱落情况,以无控制的倾斜情景,对人脑切口应用不同的负载大小。这是通过将每个病人的牙齿运动模拟为负载和牙齿大小的非线性功能来完成的。由于牙齿大小可能影响由此造成的牙齿脱位,因此考虑将从牙齿解剖学获得的两个临床生物标记,即冠高和根积结合起来,使不同的病人和牙齿能够普遍使用拟议的模型。