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Cutting on triangle mesh: local model-based haptic display for dental preparation surgery simulation

机译:在三角形网格上切割:用于牙科准备手术模拟的基于局部模型的触觉显示

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摘要

A new method to realize stable and realistic cutting simulation using an impedance display haptic device and microcomputer is presented in this paper. Material removal or cutting simulation is a critical task in dental preparation surgery simulation. In this paper, a piecewise contact force model is proposed to approximately describe the cutting process. Challenging issues of minimizing the difference between the cutting simulation and haptic contact simulation are analyzed. The proposed contact-based simulation method is developed for a one-dimensional cutting task and can be expanded to three-dimensional cases. Local model-based multirate simulation cutting architecture is proposed and force control of the haptic device is decoupled from the cutting simulation loop, which can both ensure high fidelity of dynamical simulation as well as maintain stability of the haptic device. The cutting operation is realized using spherical and cylindrical shaped tools. An experiment based on the Phantom desktop proves that fidelity in one-dimensional cutting can be realized and stability in three-dimensional cutting can be ensured using the force-filtering method.
机译:提出了一种利用阻抗显示触觉装置和微机实现稳定逼真的切削仿真的新方法。材料去除或切割模拟是牙科准备手术模拟中的关键任务。本文提出了一种分段接触力模型来大致描述切削过程。分析了使切割模拟和触觉接触模拟之间的差异最小化的挑战性问题。提出的基于接触的仿真方法是针对一维切割任务而开发的,可以扩展到三维情况。提出了一种基于局部模型的多速率仿真切割架构,将触觉设备的力控制与切割仿真循环分离,既可以保证动态仿真的高保真度,又可以保持触觉设备的稳定性。切割操作是使用球形和圆柱形工具实现的。基于Phantom桌面的实验证明,使用力过滤方法可以实现一维切割的保真度,并可以确保三维切割的稳定性。

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