Title :
Cutting on triangle mesh: local model-based haptic display for dental preparation surgery simulation
Author :
Wang, Daniel ; Zhang, Yuru ; Yuhui Wang ; Lee, Yuan-Shin ; Lu, Peijun ; Yong Wang
Author_Institution :
Robotics Inst., Beihang Univ., Beijing, China
Abstract :
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.
Keywords :
dentistry; force control; haptic interfaces; medical computing; mesh generation; piecewise linear techniques; realistic images; surgery; Phantom desktop; cylindrical shaped tool; dental preparation; dental surgery simulation; dynamical simulation; force control; force-filtering method; haptic contact simulation; impedance display haptic device; local model-based haptic display; local model-based multirate simulation cutting architecture; material removal; microcomputer; piecewise contact force model; realistic cutting simulation; spherical shaped tool; stability; triangle mesh cutting; Analytical models; Dentistry; Displays; Force control; Haptic interfaces; Imaging phantoms; Impedance; Microcomputers; Stability; Surgery; Index Terms- Dental surgery simulation; cutting simulation; haptic display; impedance display; local model; multirate simulation; piecewise contact force model; stability.; Computer Simulation; Computer Systems; Cybernetics; Data Display; Dental High-Speed Technique; Dentistry, Operative; Environment; Humans; Imaging, Three-Dimensional; Man-Machine Systems; Models, Biological; Online Systems; Oral Surgical Procedures; Surgery, Computer-Assisted; Touch; User-Computer Interface;
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
DOI :
10.1109/TVCG.2005.97