首页> 外文期刊>International journal of computerized dentistry >Chewing simulation with a physically accurate deformable model.
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Chewing simulation with a physically accurate deformable model.

机译:用物理上准确的可变形模型进行咀嚼仿真。

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Nowadays, CAD/CAM software is being used to compute the optimal shape and position of a new tooth model meant for a patient. With this possible future application in mind, we present in this article an independent and stand-alone interactive application that simulates the human chewing process and the deformation it produces in the food substrate. Chewing motion sensors are used to produce an accurate representation of the jaw movement. The substrate is represented by a deformable elastic model based on the finite linear elements method, which preserves physical accuracy. Collision detection based on spatial partitioning is used to calculate the forces that are acting on the deformable model. Based on the calculated information, geometry elements are added to the scene to enhance the information available for the user. The goal of the simulation is to present a complete scene to the dentist, highlighting the points where the teeth came into contact with the substrate and giving information about how much force acted at these points, which therefore makes it possible to indicate whether the tooth is being used incorrectly in the mastication process. Real-time interactivity is desired and achieved within limits, depending on the complexity of the employed geometric models. The presented simulation is a first step towards the overall project goal of interactively optimizing tooth position and shape under the investigation of a virtual chewing process using real patient data (Fig 1).
机译:如今,CAD / CAM软件正用于计算适合患者的新牙齿模型的最佳形状和位置。考虑到这种可能的未来应用,我们在本文中介绍了一个独立的,独立的交互式应用程序,它可以模拟人的咀嚼过程及其在食物基质中产生的变形。咀嚼运动传感器用于产生颌部运动的准确表示。基板由基于有限线性元素方法的可变形弹性模型表示,可以保留物理精度。基于空间划分的碰撞检测用于计算作用在可变形模型上的力。基于计算的信息,将几何元素添加到场景中,以增强用户可用的信息。模拟的目的是向牙医展示一个完整的场景,突出显示牙齿与基材接触的点,并提供有关在这些点上作用了多少力的信息,因此可以指示牙齿是否处于在咀嚼过程中使用不正确。根据所采用的几何模型的复杂性,需要在限制内实现实时交互。提出的模拟是朝着通过使用真实患者数据对虚拟咀嚼过程进行调查来交互式优化牙齿位置和形状的总体项目目标的第一步(图1)。

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