DocumentCode :
1389901
Title :
Impulse-Based Rendering Methods for Haptic Simulation of Bone-Burring
Author :
Wang, Qiong ; Chen, Hui ; Wu, Wen ; Qin, Jing ; Heng, Pheng Ann
Author_Institution :
Dept. of Comput. Sci. & Eng., Chinese Univ. of Hong Kong, Hong Kong, China
Volume :
5
Issue :
4
fYear :
2012
Firstpage :
344
Lastpage :
355
Abstract :
Bone-burring is a common procedure in orthopedic, dental, and otologic surgeries. Virtual reality (VR)-based surgical simulations with both visual and haptic feedbacks provide novice surgeons with a feasible and safe way to practice their burring skill. However, creating realistic haptic interactions between a high-speed rotary burr and stiff bone is a challenging task. In this paper, we propose a novel interactive haptic bone-burring model based on impulse-based dynamics to simulate the contact forces, including resistant and frictional forces. In order to mimic the lateral and axial burring vibration forces, a 3D vibration model has been developed. A prototype haptic simulation system for the bone-burring procedure has been implemented to evaluate the proposed haptic rendering methods. Several experiments of force evaluations and task-oriented tests were conducted on the prototype system. The results demonstrate the validity and feasibility of the proposed methods.
Keywords :
haptic interfaces; medical computing; rendering (computer graphics); surgery; virtual reality; 3D vibration model; VR-based surgical simulations; axial burring vibration forces; contact forces; dental surgeries; force evaluations; frictional forces; haptic feedbacks; haptic interactions; high-speed rotary burr; impulse-based dynamics; impulse-based rendering methods; interactive haptic bone-burring model; lateral burring vibration forces; orthopedic surgeries; otologic surgeries; prototype haptic simulation system; resistant forces; stiff bone; task-oriented tests; virtual reality; visual feedbacks; Bones; Computational modeling; Force feedback; Haptic interfaces; Simulation; Surgery; Vibration measurement; Virtual reality; Haptic simulation of bone-burring; impulse-based dynamics; surgical simulation; vibration modeling; virtual reality;
fLanguage :
English
Journal_Title :
Haptics, IEEE Transactions on
Publisher :
ieee
ISSN :
1939-1412
Type :
jour
DOI :
10.1109/TOH.2011.69
Filename :
6095548
Link To Document :
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