Page 412 - Biomedical Engineering and Design Handbook Volume 2, Applications
P. 412
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61. Klosowski, J. T., et al., Efficient collision detection using bounding volume hierarchies of k-DOPs. IEEE
Transactions on Visualization and Computer Graphics, 1998. 4(1):21–36.
62. van den Bergen, G., Collision Detection in Interactive 3D Computer Animation. 1999, Printed by University
Press Facilities, Technische Universiteit Eindhoven, 1999: Eindhoven. viii, 181.
63. Fuchs, H., Z. M. Kedem, and B.F. Naylor, On visible surface generation by a priori tree structures. In
Proceedings of the 7th Annual Conference on Computer Graphics and Interactive Techniques. 1980, ACM:
Seattle, WA.
64. Möller, T. and B. Trumbore, Fast, minimum storage ray-triangle intersection. Journal of Graphics Tools,
1997. 2(1):21–28.
65. Badouel, D., A. S. Glassner, An efficient ray-polygon intersection. In Graphics Gems. 1990, Academic Press
Professional, Inc. 390–93.
66. Lin, M. C. and J. F. Canny, A fast algorithm for incremental distance calculation. In Proceedings of the IEEE
International Conference on Robotics and Automation, 1991. Sacramento, CA.
67. Basdogan, C. and M. A. Srinivasan, Haptic rendering in virtual environments. In Handbook of Virtual
Environments: Design, Implementation, and Applications, K.M. Stanney, Editor. 2002, Lawrence Erlbaum
Associates.
68. Salisbury, K., F. Conti, and F. Barbagli, Haptic rendering: introductory concepts. IEEE Computer Graphics
and Applications, 2004. 24(2):24–32.
69. Colgate, J. E. and G. G. Schenkel, Passivity of a class of sampled-data systems: application to haptic inter-
faces. Journal of Robotic Systems, 1998. 14(1):37–47.
70. Diolaiti, N., et al., Stability of haptic rendering: discretization, quantization, time delay, and Coulomb effects.
IEEE Transactions on Robotics and Automation, 2006. 22(2):256–68.
71. Adams, R. J. and B. Hannaford, Stable haptic interaction with virtual environments. IEEE Transactions on
Robotics and Automation, 1999. 15(3):465–74.
72. Hannaford, B. and J. H. Ryu, Time domain passivity control of haptic interfaces. In IEEE Transactions on
Robotics and Automation. 2002. 18(1):1–10.
73. Cavusoglu, M. C. and F. Tendick, Multirate simulation for high fidelity haptic interaction with deformable
objects in virtual environments. In Proceedings of the IEEE International Conference on Robotics and
Automation (ICRA 2000). 2000. San Francisco, CA.
74. Jacobs, P. and M. C. Cavusoglu, High fidelity haptic rendering of stick-slip frictional contact with
deformable objects in virtual environments using multi-rate simulation. In Proceedings of the IEEE
International Conference on Robotics and Automation (ICRA 2007). 2007. Rome, Italy.
75. Brown, N., et al., Virtual environment-based training simulator for endoscopic third ventriculostomy. In
Proceedings of Medicine Meets Virtual Reality XIV (MMVR 2006). 2006. Long Beach, CA.
76. Szekely, G., et al., Modelling of soft tissue deformation for laparoscopic surgery simulation. Medical Image
Analysis, 2000. 4(1):57–66.
77. Cai, Q., V. Liberatore, and M. C. Cavusoglu, GiPSiNet, An open source/open architecture network middle-
ware for surgical simulations. In Proceedings of Medicine Meets Virtual Reality XIV (MMVR 2006). 2006.
Long Beach, CA.
78. Cavusoglu, M. C., T. Goktekin, and F. Tendick, GiPSi: a framework for open source/open architecture soft-
ware development for organ level surgical simulation. In IEEE Transactions on Information Technology in
Biomedicine, 2006. 10(2):312–21.
79. Allard, J., et al., SOFA—an open source framework for medical simulation. Studies in Health Technology
and Informatics, 2007. 125:13–18.