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Analyzing center of rotation during opening and closing movements of the mandible using computer simulations

机译:使用计算机模拟分析下颌骨打开和闭合运动期间的旋转中心

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摘要

The traditional hinge axis theory for guiding clinical procedures in dentistry and dental articulators has been challenged by the concept of an instantaneous center of rotation (ICR), which is becoming more prevalent in modern explanations of mandibular movement. The purpose of this study was to analyze traditional hinge axis theory using three-dimensional computer simulations and to compare it with ICR. Three-dimensional computational models that reproduced the traditional pantograph tracing method were created to simulate the opening and closing movements of the jaw. Models of the bones, muscles and ligaments were combined to create a dynamic representation using ArtiSynth, a biomechanical simulation toolkit. The mandibular motion is constrained based on contact between the articular eminence and the mandibular condyle, and is limited by spring-like ligaments, as well as passive properties of the skeletal muscles. To estimate the center of rotation according to the traditional axis theory, markers on the pantograph were traced during mandibular opening and closing movement The ICR was computed at each time step throughout the simulation. To locate a single hinge axis in simulation, the point about which the mandible seems to rotate during early opening and terminal closing was determined. The estimated center of rotation was inconsistent with the ICR, yet motion was found to be well approximated by a pure rotation. The inconsistency suggests that the use of the ICR position for the clinical dental procedures has its limitations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:用于指导牙科和咬合架临床程序的传统铰链轴理论已受到瞬时旋转中心(ICR)概念的挑战,该概念在下颌运动的现代解释中越来越普遍。这项研究的目的是使用三维计算机仿真分析传统的铰链轴理论,并将其与ICR进行比较。创建了模仿传统的缩放仪跟踪方法的三维计算模型,以模拟颌骨的张开和闭合运动。使用ArtiSynth(一种生物力学仿真工具包),将骨骼,肌肉和韧带的模型组合起来以创建动态表示。下颌运动是基于关节隆起和下颌con突之间的接触而受到限制的,并且受弹簧状韧带以及骨骼肌被动属性的限制。为了根据传统的轴论估计旋转中心,在下颌打开和关闭运动期间在受电弓上标记了标记。在整个模拟过程中的每个时间步都计算了ICR。为了在仿真中定位单个铰链轴,确定了下颌骨在早期打开和末端闭合期间似乎围绕其旋转的点。估计的旋转中心与ICR不一致,但是发现运动可以通过纯旋转很好地近似。不一致表明在临床牙科手术中使用ICR位置有其局限性。 (C)2015 Elsevier Ltd.保留所有权利。

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