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首页> 外文期刊>Acta of Bioengineering and Biomechanics >Biomechanical analysis of asymmetric mesio-distal molar positions loaded by a symmetric cervical headgear
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Biomechanical analysis of asymmetric mesio-distal molar positions loaded by a symmetric cervical headgear

机译:对称颈带加载的不对称近中臼齿位置的生物力学分析

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Purpose: The plane 2D model and 3d finite element model of the headgear attached to two molars with different mesio-distal location are studied to show the asymmetric mechanical effects produced by symmetrically loaded headgear. In daily dental practice the asymmetrical location of molars is usually ignored. Methods: Six 3D finite element models of a symmetric cervical headgear were designed in SolidWorks 2011. The models showed symmetric molar position (model 1), 0.5 to 2 mm of anterior-posterior molar difference (models 2-5) and a significant asymmetry with 10 mm of difference in the locations (model 6). The head gear was loaded with 3N of force applied at the cervical headgear. The forces and moments produced on terminal molars are assessed. Results: It is shown the difference between the forces acting at the longer and shorter outer arms of the headgear increases with increase in the distance. The significant numeric difference in the forces has been found: from 0.0082 N (model 1) to 0.0324 N (model 5) and 0.146 N (model 6). These small forces may produce unplanned distal tipping and rotation of the molars around their vertical axes. The most important funding was found as a clockwise yaw moment in the system when is viewed superio-inferiorly. The yaw moment has been computed between -0.646 N. mm (model 1) and -1.945 N mm (model 5). Conclusions: Therefore even small asymmetry in location of molars loaded by a symmetric cervical headgear will produce undesirable movement and rotation of the teeth that must be taken into account before applying the treatment.
机译:目的:研究头盔在不同近中距位置上附着在两个臼齿上的平面2D模型和3d有限元模型,以显示对称加载的头盔产生的不对称机械效应。在日常牙科实践中,通常会忽略臼齿的不对称位置。方法:在SolidWorks 2011中设计了六个对称宫颈头带的3D有限元模型。模型显示对称的臼齿位置(模型1),前后臼齿差为0.5至2 mm(模型2-5),并且具有显着的不对称性。位置相差10毫米(型号6)。头部齿轮承受了3N的力,施加在颈托上。评估在末端磨牙上产生的力和力矩。结果:表明作用在头带较长和较短外臂上的力之间的差异随距离的增加而增加。已发现力的显着数值差异:从0.0082 N(模型1)到0.0324 N(模型5)和0.146 N(模型6)。这些较小的力可能会导致意外的远侧倾斜和磨牙绕其垂直轴旋转。从上至下查看时,最重要的资金是系统中的顺时针偏航力矩。计算出的偏航力矩在-0.646 N. mm(模型1)和-1.945 N mm(模型5)之间。结论:因此,即使对称式颈带帽加载的臼齿位置即使很小,也将产生不希望的牙齿移动和旋转,因此在进行治疗之前必须考虑到这一点。

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