Title :
Visual, Haptic, and Auditory Realities Based Dental Training Simulator
Author :
Ullah, Furqan ; Park, Kang
Author_Institution :
Grad. Sch. of Mech. Eng., Myongji Univ., Yongin, South Korea
Abstract :
This research paper presents a surface-based virtual dental sculpting simulator based on mixed auditory, visual, and tactile realities. The simulator can be used to perform different dental procedures (i.e., grinding, drilling, or surface scrubbing), and gain experience of using various virtual dental tools of different shapes. The surface-based dental model, which is extracted from a commercial 3D dental laser scanner, is used for simulating sculpting processes at less memory cost. Large amount of triangular mesh data is contained in scanned models; therefore, a model reduction algorithm is proposed for large triangular mesh data. For the computation of repulsive force feedback, a spring-damper force model with a force filter is used. Vertex deformation method is implemented along with an enhanced bi-tri subdivision method of triangles to perform precision sculpting simulation. In order to make the mesh regular, a number of mesh refinement algorithms are performed. Finally, considering the fidelity, stability, computer efficiency, and update rate of the haptic display, it can be concluded that these mixed realities based virtual system can generate stable simulation of material removal from a human tooth model with realistic auditory, visual, and force sensations.
Keywords :
computational geometry; computer based training; computerised instrumentation; dentistry; digital simulation; force feedback; graphical user interfaces; haptic interfaces; human computer interaction; mesh generation; shock absorbers; 3D dental laser scanner; auditory realities; bi-tri subdivision method; dental training simulator; drilling dental procedure; force filter; grinding dental procedure; haptic display computer efficiency; haptic display fidelity; haptic display stability; haptic display update rate; haptic realities; mesh refinement algorithms; mixed realities based virtual system; model reduction algorithm; repulsive force feedback; sculpting process simulation; spring-damper force model; stable material removal simulation generation; surface scrubbing dental procedure; surface-based dental model; surface-based virtual dental sculpting simulator; tactile realities; triangular mesh data; vertex deformation method; virtual dental tools; visual realities; Computational modeling; Dentistry; Force; Haptic interfaces; Real time systems; Solid modeling; Teeth;
Conference_Titel :
Information Science and Applications (ICISA), 2012 International Conference on
Conference_Location :
Suwon
Print_ISBN :
978-1-4673-1402-2
DOI :
10.1109/ICISA.2012.6220964