Title of article :
An efficient and scalable deformable model for virtual reality-based medical applications
Author/Authors :
Choi، نويسنده , , Kup-Sze and Sun، نويسنده , , Hanqiu and Heng، نويسنده , , Pheng-Ann، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Abstract :
Modeling of tissue deformation is of great importance to virtual reality (VR)-based medical simulations. Considerable effort has been dedicated to the development of interactively deformable virtual tissues. In this paper, an efficient and scalable deformable model is presented for virtual-reality-based medical applications. It considers deformation as a localized force transmittal process which is governed by algorithms based on breadth-first search (BFS). The computational speed is scalable to facilitate real-time interaction by adjusting the penetration depth. Simulated annealing (SA) algorithms are developed to optimize the model parameters by using the reference data generated with the linear static finite element method (FEM). The mechanical behavior and timing performance of the model have been evaluated. The model has been applied to simulate the typical behavior of living tissues and anisotropic materials. Integration with a haptic device has also been achieved on a generic personal computer (PC) platform. The proposed technique provides a feasible solution for VR-based medical simulations and has the potential for multi-user collaborative work in virtual environment.
Keywords :
Deformable simulation , VIRTUAL REALITY , SIMULATED ANNEALING , Heuristic optimization , Haptic rendering , medical simulations
Journal title :
Artificial Intelligence In Medicine
Journal title :
Artificial Intelligence In Medicine