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Development of the mandibular curve of spee and maxillary compensating curve: A finite element model

机译:Spee和上颌补偿曲线下颌曲线的发展:有限元模型

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The curved planes of the human dentition seen in the sagittal view, the mandibular curve of Spee and the maxillary compensating curve, have clinical importance to modern dentistry and potential relevance to the craniofacial evolution of hominins. However, the mechanism providing the formation of these curved planes is poorly understood. To explore this further, we use a simplified finite element model, consisting of maxillary and mandibular “blocks”, developed to simulate tooth eruption, and forces opposing eruption, during simplified masticatory function. We test our hypothesis that curved occlusal planes develop from interplay between tooth eruption, occlusal load, and mandibular movement. Our results indicate that our simulation of rhythmic chewing movement, tooth eruption, and tooth eruption inhibition, applied concurrently, results in a transformation of the contacting maxillary and mandibular block surfaces from flat to curved. The depth of the curvature appears to be dependent on the radius length of the rotating (chewing) movement of the mandibular block. Our results suggest mandibular function and maxillo-mandibular spatial relationship may contribute to the development of human occlusal curvature.
机译:在矢状观点中看到的人类牙列的弯曲平面,Spee的下颌曲线和上颌补偿曲线,对现代牙科的临床重要性以及与母体的颅面演进的潜在相关性。然而,提供了这些弯曲平面形成的机制是较差的。为了进一步探索这一点,我们使用简化的有限元模型,由上颌和下颌“块”组成,开发用于模拟牙齿爆发,并且在简化的咀嚼功能期间对抗爆发。我们测试我们的假设,即弯曲的咬合飞机从牙齿喷发,咬合载荷和下颌运动之间的相互作用产生。我们的研究结果表明,我们的节奏咀嚼运动,齿喷发和牙齿喷发抑制的模拟,同时施加,导致接触上颌和下颌块表面的转化从平坦到弯曲。曲率的深度似乎取决于下颌块的旋转(咀嚼)运动的半径长度。我们的结果表明下颌功能和颌骨下颌空间关系可能有助于人类咬合曲率的发展。

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