SURGICAL SIMULATION WITH HIGH-FIDELITY HAPTIC FEEDBACK

P.X. Liu, W. Zheng, and B. Chebbi

References

  1. [1] A. Liu, F. Tendick, K. Cleary, & C. Kaufmann, A survey ofsurgical simulation: Applications, technology, and education,Presence: Teleoperators and Virtual Environments, 12 (6),2003, 599–614.
  2. [2] U. Kuhnapfel, H.K. C¸akmak, & H. Maab, Endoscopic surgerytraining using virtual reality and deformable tissue simulation,IEEE Computer and Graphics, 24 (5), 2000, 671–82. doi:10.1016/S0097-8493(00)00070-4
  3. [3] H. Zhang, S. Payandeh, & J. Dill, On cutting and dissection ofvirtual deformable objects, IEEE Proc. Int. Conf. on Roboticsand Automation, New Orleans, LA, 2004, 3908–3913.
  4. [4] J. Zhang, S. Payandch, & J. Dill, Haptic subdivision: Anapproach to defining level-of-detail in haptic rendering, Proc.Haptic Interfaces for Virtual Environment and TeleoperatorSystems, Orlando, FL, 2002, 201–208. doi:10.1109/HAPTIC.2002.998959
  5. [5] S. Gibson et al., Simulating arthroscopic knee surgery usingvolumetric object representations, real-time volume renderingand haptic feedback, Medical Image Analysis, 2 (2), 1998,121–132.
  6. [6] S. Gibson, 3d chainmail: A fast algorithm for deformingvolumetric objects, Proc. Interactive 3D Graphics, Providence,Rhode Island, USA, 1997, 149–154.
  7. [7] M. Bro-Nielsen, Medical image registration and surgery simulation, doctoral diss., IMM Technical University of Denmark,Lingby, Denmark, 1996.
  8. [8] S. Cotin, H. Delingette, & N. Ayache, Efficient linear elasticmodels of soft tissues for real-time surgery simulation, Proc.Medicine Meets Virtual Reality, San Francisco, CA, 1999,139–151.
  9. [9] M. Bro-Nielsen & S. Cotin, Real-time volumetric deformablemodels for surgery simulation using finite elements and condensation, Computer Graphics Forum, 15 (3), 1996, C57–66. doi:10.1111/1467-8659.1530057
  10. [10] S. Cotin, H. Delingette, & N. Ayache, Real-time elastic deformations of soft tissues for surgery simulation, IEEE Trans.Visualization and Computer Graphics, 5 (1), 1999, 62–73. doi:10.1109/2945.764872
  11. [11] S. De, J. Kim, & M.A. Srinivasan, A meshless numericaltechnique for physically based real time medical simulations,Proc. Medicine Meets Virtual Reality, Newport Beach, CA,January 24–27, 2001, 127–132.
  12. [12] E. Hairer, S.P. Norsett, & G. Wanner, Solving ordinary differential equations (New York, NY: Springer-Verlag, 1991).
  13. [13] G. Song & N. Reddy, Tissue cutting in virtual environments,Proc. Medicine Meeting Virtual Reality, San Diego, CA, January 19–22, 1995, 359–364.
  14. [14] A. Tanaka, K. Hirota, & T. Kaneko, Virtual cutting withforce feedback, Proc. IEEE Virtual Reality Annual Int. Symp.,Atlanta, GA, March 14–18, 1998, 71–75. doi:10.1109/VRAIS.1998.658425
  15. [15] A.B. Mor, Progressive cutting with minimal new elementcreation of soft tissue models for interactive surgical simulation,doctoral diss., Robotics Institute, Carnegie-Mellon University,2001.
  16. [16] A. Mor & T. Kanade, Modifying soft tissue models: Progressive cutting with minimal new element creation, Proc. Medical Image Computing and Computer-Assisted Intervention,Pittsburgh, PA, 2000, 598–607.
  17. [17] D. Bielser, P. Glardon, M. Teschner, & M.H. Gross, A statemachine for real-time cutting of tetrahedral meshes, GraphicalModels, 66 (6), 2004, 398–417. doi:10.1016/j.gmod.2004.05.009
  18. [18] R. Adams & B. Hannaford, Stable haptic interaction with virtual environments, IEEE Trans. on Robotics and Automation,15 (3), 1999, 465–474. doi:10.1109/70.768179
  19. [19] E. Ellis, N. Sarkar, & M. Jenkins, Numerical methods for theforce reflection of contact, ASME Trans. of Dynamic SystemsMeasurement and Control, 119 (4), 1997, 768–774. doi:10.1115/1.2802389
  20. [20] M. Cavusoglu & F. Tendick, Multirate simulation for highfidelity haptic interaction with deformable objects in virtualenvironments, IEEE Int. Conf. on Robotics and Automation,San Francisco, CA, April 24–28, 2000, 2458–2465.
  21. [21] C. Zilles & J.K. Salisbury, A constraint-based god-objectmethod for haptic display, Proc. IEEE Int. Conf. on IntelligentRobots and Systems, Pittsburgh, PA, August 5–9, 1995, 146–150.
  22. [22] D. Ruspini, K. Kolarov, & O. Khatib, Haptic interaction invirtual environments, Proc. IEEE Int. Conf. on IntelligentRobots and Systems, Grenoble, France, September 7–11, 1997,128–133.
  23. [23] A. Leo-Garcia, Probability and random processes for electricalengineering, 2nd ed. (Reading, MA: Addison-Wesley PublishingCo., 1994).
  24. [24] http://prism.mem.drexel.edu/desai/research.htm#liver.
  25. [25] T. Chanthasopeephan, J.P. Desai, & A.C.W. Lau, 3D and 2Dfinite element analysis in soft tissue cutting for haptic display,12th Int. Conf. on Advanced Robotics, Seattle, Washington,July 19–21, 2005, 360–367. doi:10.1109/ICAR.2005.1507436
  26. [26] M. Heverly, P. Dupont, & J. Triedman, Trajectory optimizationfor dynamic needle insertion, IEEE Int. Conf. on Robotics andAutomation, Barcelona, Spain, April 18–22, 2005, 1658–1663.
  27. [27] H. Yang, Modeling of needle insertion forces for haptics-based surgical simulation, master’s thesis, Carleton University,Canada, 2005.

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