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Original Articles

Estimation of the muscle force distribution in ballistic motion based on a multibody methodology

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Pages 45-54 | Received 18 Oct 2005, Accepted 23 Jan 2006, Published online: 25 Jan 2007

References

  • Abdel-Aziz , Y. and Karara , H. 1971 . “ Direct linear transformation from comparator co-ordinates into object space co-ordinates ” . In Proceedings of ASP/UI Symposium on Close-range Photogrammetry , 1 – 18 . Falls Church, VA : American Society of Photogrammetry .
  • Ambrósio , J. , Abrantes , J. and Lopes , G. 2001 . Spatial reconstruction of human motion by means of a single camera and a biomechanical model . Hum. Mov. Sci. , 20 : 829 – 851 .
  • Anderson , F.C. and Pandy , M.G. 2001 . Static and dynamic optimization solutions for gait are practically equivalent . J. Biomech. , 34 : 153 – 161 .
  • Blajer , W. and Czaplicki , A. 2001 . Modeling and inverse simulation of somersaults on the trampoline . J. Biomech. , 34 : 1619 – 1629 .
  • Bobbert , M.F. and van Ingen Schenau , G.J. 1988 . Coordination in vertical jumping . J. Biomech. , 21 : 249 – 262 .
  • M.R. Carhart, “Biomechanical analysis of compensatory stepping: Implications for paraplegics standing via FNS”, PhD Dissertation, Department of Bioengineering, Arizona State University, Tempe, 2000.
  • Celigüeta , J.T. 1996 . “ Multibody simulation of human body motion in sports ” . In Proceedings of the XIV International Symposium on Biomechanics in Sports , Edited by: Abrantes , J. 81 – 94 . Lisbon : Technical University of Lisbon .
  • Chaffin , D.B. 1969 . A computerized biomechanical model-development for the use in studying gross body actions . J. Biomech. , 2 : 429 – 441 .
  • Collins , J.J. 1995 . The redundant nature of locomotor optimization laws . J. Biomech. , 28 : 251 – 267 .
  • Crowninshield , R.D. and Brand , R.A. 1981 . A physiologically based criterion of muscle force prediction in locomotion . J. Biomech. , 14 : 793 – 801 .
  • Davy , D.T. and Audu , M.L. 1987 . A dynamic optimization technique for predicting muscle forces in the swing phase of gait . J. Biomech. , 20 : 187 – 201 .
  • Fukunaga , T. , Kubo , K. , Kawakami , Y. , Fukashiro , S. , Kanehisa , H. and Maganaris , C.N. 2001 . In vivo behavior of human muscle tendon during walking . Proc. R. Soc. London B , 268 : 229 – 233 . Biological Sciences
  • Garcia de Jalón , J.G. and Bayo , E. 1994 . Kinematic and Dynamic Simulation of Mechanical Systems—The Real-time Challenge , New York : Springer-Verlag .
  • Garcia deJalón , J.G. , Unda , J. and Avello , A. 1986 . Natural coordinates for the computer analysis of multibody systems . Comp. Methods Appl. Mech. Eng. , 56 : 309 – 327 .
  • Glitsch , U. and Baumann , W. 1997 . The three-dimensional determination of internal loads in the lower extremity . J. Biomech. , 30 : 1123 – 1131 .
  • Hartenberg , R.S. and Denavit , J. 1964 . Kinematic Synthesis of Linkages , New York : McGraw-Hill .
  • Hatze , H. 1981 . A comprehensive model for human motion simulation and its application to the take-off phase of the long jump . J. Biomech. , 14 : 135 – 143 .
  • Haug , E. 1989 . Computer aided Kinematics and Dynamics of Mechanical Systems , Boston : Allyn and Bacon .
  • Kubo , K. , Kanehisa , H. , Kawakami , Y. and Fukunaga , T. 2000 . Elasticity of tendon structures of the lower limbs, in sprinters . Acta Physiol. Scand. , 168 : 327 – 335 .
  • Lutzenberger , C. and Pfeiffer , F. 1988 . “ A three-dimensional model of human locomotor apparatus for gait analysis ” . In Proceedings of European Mechanics Colloquium Euromech 375 25 – 35 . Munich, Germany
  • Nikravesh , P. 1988 . Computer-aided Analysis of Mechanical Systems , Englewood Cliffs : Prentice Hall .
  • Pandy , M.G. , Zajac , F.E. , Sim , E. and Levine , W.S. 1990 . An optimal control model for maximum-height human jumping . J. Biomech. , 23 : 1185 – 1198 .
  • Pandy , M. 2001 . Computer modeling and simulation of human movement . Annu. Rev. Biomed. Eng. , 3 : 245 – 273 .
  • Patriarco , A.G. , Mann , R.W. , Simon , S.R. and Mansour , J.M. 1981 . An evaluation of the approaches of optimization models in prediction of muscle forces during human gait . J. Biomech. , 14 : 513 – 525 .
  • Pedersen , D.R. , Brand , R.A. , Cheng , C. and Arora , J.S. 1987 . Direct comparison of muscle force predictions using linear and nonlinear programming . ASME J. Biomech. Eng. , 109 : 192 – 199 .
  • Schiehlen , W. 1997 . Multibody system dynamics: roots and perspectives . Multibody Syst. Dyn. , 1 : 149 – 188 .
  • Silva , M. and Ambrósio , J. 2002 . Kinematic data consistency in the inverse dynamic analysis of biomechanical systems . Multibody Syst. Dyn. , 8 : 219 – 239 .
  • M. Silva, “Human motion analysis using multibody dynamics and optimization tools”, PhD Dissertation, Institute of Mechanical Engineering, Technical University of Lisbon, 2003.
  • Vanderplaats , G.N. 1984 . An efficient feasible directions algorithm for design synthesis . AIAA J. , 22 : 1633 – 1640 .
  • Vanderplaats , G.N. 1999 . DOT—Design Optimization Tools Users Manual, Version 5.0
  • Winter , D.A. 1990 . Biomechanics and Motor Control of Human Movement , 2nd ed. , New York : John Wiley & Sons .
  • Yamaguchi , G.T. 2001 . Dynamic Modeling of Musculoskeletal Motion , Boston : Kluwer Academic Publishers .
  • Zajac , F.E. 1989 . Muscle and tendon: properties, models, scaling, and application to biomechanics and motor control . Crit. Rev. Biomed. Eng. , 17 : 359 – 411 .
  • Zajac , F.E. and Winters , J.M. 1990 . “ Modeling musculoskeletal movement systems: joint and body segmental dynamics, musculoskeletal actuation, and neuromuscular control ” . In Multiple Muscle Systems, Biomechanics and Movement Organization , Edited by: Winters , J.M. and Woo , S.L.-Y. 121 – 148 . New York : Springer Verlag .

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