A numerical procedure for inferring from experimental data the optimization cost functions using a multibody model of the neuro-musculoskeletal system
暂无分享,去创建一个
[1] Y. Nubar,et al. A minimal principle in biomechanics , 1961 .
[2] Arthur E. Bryson,et al. Applied Optimal Control , 1969 .
[3] H. Weinert,et al. Bryson, A. E./ Ho, Y.-C., Applied Optimal Control, Optimization, Estimation, and Control. New York-London-Sydney-Toronto. John Wiley & Sons. 1975. 481 S., £10.90 , 1979 .
[4] R. Crowninshield,et al. A physiologically based criterion of muscle force prediction in locomotion. , 1981, Journal of biomechanics.
[5] K N An,et al. Determination of muscle and joint forces: a new technique to solve the indeterminate problem. , 1984, Journal of biomechanical engineering.
[6] G. E. Johnson,et al. Muscular synergism--II. A minimum-fatigue criterion for load sharing between synergistic muscles. , 1984, Journal of biomechanics.
[7] R. Wells,et al. Functions and recruitment patterns of one- and two-joint muscles under isometric and walking conditions , 1987 .
[8] Anil V. Rao,et al. Practical Methods for Optimal Control Using Nonlinear Programming , 1987 .
[9] A. Seireg,et al. Biochemical Analysis Of The Musculoskeletal Structure For Medicine And Sports , 1989 .
[10] S C Jacobsen,et al. Quantitation of human shoulder anatomy for prosthetic arm control--II. Anatomy matrices. , 1989, Journal of biomechanics.
[11] K. R. Kaufman,et al. Physiological prediction of muscle forces—II. Application to isokinetic exercise , 1991, Neuroscience.
[12] D. A. Shreeve,et al. An evaluation of optimization techniques for the prediction of muscle activation patterns during isometric tasks. , 1996, Journal of biomechanical engineering.
[13] D. Hull. Conversion of optimal control problems into parameter optimization problems , 1996 .
[14] Herbert Hatze,et al. BIOMECHANICS OF SPORTS - SELECTED EXAMPLES OF SUCCESSFUL APPLICATIONS AND FUTURE PERSPECTIVES , 1998 .
[15] J. B. Rosen,et al. SQP Methods and their Application to Numerical Optimal Control , 1998 .
[16] B I Prilutsky,et al. Coordination of two- and one-joint muscles: functional consequences and implications for motor control. , 2000, Motor control.
[17] B. Prilutsky,et al. Sensitivity of predicted muscle forces to parameters of the optimization-based human leg model revealed by analytical and numerical analyses. , 2001, Journal of biomechanics.
[18] M G Pandy,et al. Static and dynamic optimization solutions for gait are practically equivalent. , 2001, Journal of biomechanics.
[19] James Renegar,et al. A mathematical view of interior-point methods in convex optimization , 2001, MPS-SIAM series on optimization.
[20] H. Hatze. The fundamental problem of myoskeletal inverse dynamics and its implications. , 2002, Journal of biomechanics.
[21] Vladimir M Zatsiorsky,et al. Optimization-Based Models of Muscle Coordination , 2002, Exercise and sport sciences reviews.
[22] C. Bottasso,et al. Optimal Control of Multibody Systems Using an Energy Preserving Direct Transcription Method , 2004 .
[23] H. Hatze,et al. A myocybernetic control model of skeletal muscle , 1977, Biological Cybernetics.
[24] T. Flash,et al. Human arm stiffness characteristics during the maintenance of posture , 1990, Experimental Brain Research.
[25] R. Freund. Review of A mathematical view of interior-point methods in convex optimization, by James Renegar, SIAM, Philadelphia, PA , 2004 .
[26] Carlo L. Bottasso,et al. Optimization of Critical Trajectories for Rotorcraft Vehicles , 2005 .