“Pump it up: computer animation of a biomechanically based model of muscle using the finite element method” by Chen and Zeltzer

  • ©David T. Chen and David Zeltzer

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    Pump it up: computer animation of a biomechanically based model of muscle using the finite element method

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Abstract:


    No abstract available.

References:


    1. N.I. Badler, J. O’Rourke, and H. Toltzis. A spherical representation of a human body for visualizing movement. Proceedings IEEE, 67(10):1397-1402, 1979.
    2. Klaus-Jiirgen Bathe. Finite Element Procedures in Engineering Analysis. Prentice-Hall, 1982.
    3. F. D. Caxlson and D. R. Wilkie. Muscle Physiology. Prentice-Hall, Inc., 1974.
    4. John E. Chadwick, David R. Haumann, and Richard E. Parent. Layered construction for deformable animated characters. A CM Computer Graphics, 23(3):243-252, 1989.
    5. David T. Chen. Pump It Up: Computer Animation of a Biomechanically Based Model of Muscle using the Finite Element Method. PhD thesis, MIT, 1992.
    6. Scott L. Delp. Surgery Simulation: A Computer Graphics System to Analyze and Design Musculoskeletal Reconstructions of the Lower Limb. PhD thesis, Stanford University, 1990.
    7. William A. Fetter. A progression of human figures simulated by computer graphics. IEEE Computer Graphics and Applications, pages 9-13, November 1982.
    8. H.S. Gasser and A.V. Hill. The dynamics of muculax contraction. Royal Society of London Proceedings, 96:398-437, 1924.
    9. Jean-Paul Gourret, Nadia Magnenat-Thalman, and Daniel Thalman. Simulation of object and human skin deformations in a grasping task. ACM Computer Graphics, 24(3):21-30, 1989.
    10. Andrew P. Grieve and Cecil G. Armstrong. Compressive properties of soft tissues. Biomechanics XI-A, International Series on Biomechanics, Amsterdam, 1988. Free Unversity Press.
    11. A.F Huxley and R. Niedergerke. Structural changes in muscle during contraction. Nature, 173:971-973, 1954.
    12. H. Huxley and J. Hanson. Changes in the crossstriations of muscle during contraction and stretch and their structural interpretation. Nature, 173:973-976, 1954.
    13. David L. Kelley. Kinesiology: Fundamentals of Motion Description. Prentice Hall, Inc., 1971.
    14. Koji Komatsu. Human skin model capable of natural shape variation. Laboratories Note 329, NHK, Tokyo, March 1986.
    15. W.E. Lorensen and H.E. Cline. Marching cubes: A high resolution 3d surface construction algorithm. A CM Computer Graphics, 21(4):163-169, 1987.
    16. Delle Rae Maxwell. Graphical marionette: a modernday Pinocchio. Master’s thesis, MIT, 1983.
    17. S. McKenna, Y. Harvill, A. Louie, and D. Huffman. Swivel 3D Professional User’s Guide. Paxacomp, Inc., 1987-1990.
    18. Thomas A. McMahon. Muscles, Reflexes, and Locomotion. Princeton University Press, 1984.
    19. Steve Pieper, Joseph Rosen, and David Zeltzer. Interactive computer graphics for plastic surgery: A task-level analysis and implementation. Proceedings of the A CM 199~ Symposium on Interactive SD Graphics, pages 127-134, 1992.
    20. Steven Donald Pieper. CAPS: Computer-Aided Plastic Surgery. PhD thesis, MIT, 1992.
    21. John C. Platt and Alan H. Barr. Constraint methods for physical models. A CM Computer Graphics, 22(4):279-288, 1988.
    22. D. Terzopoulos and K. Waters. Physically-based facial modelling, analysis, and animation. The Journal of Visualization and Computer Animation, 1(2):73-80, 1990.
    23. Demetri Terzopoulos and Kurt Fleischer. Modeling inelastic deformation: Viscoelasticity, plasticity, fracture. ACM Computer Graphics, 22(4):269-278, 1988.
    24. F. E. Zajac. Muscle and tendon: Properties, models, scaling, and application to biomechanics and motor control. Critical Reviews in Biomedical Engineering, 17:359-411, 1989.
    25. F. E. Zajac, E.L. Topp, and P.J. Stevenson. A dimensionless musculotendon model. Proceedings IEEE Engineering in Medicine and Biology, 1986.


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