Optimal control
From Biomch-W
Contents |
Studies using optimal control for movement prediction
The initial list is a summary from Erdemir et al., Model-based estimation of muscle forces exerted during movements. Clin. Biomech., 2006. List organized by activity than sorted by order of appearence.
Walking
F.C. Anderson and M.G. Pandy, Dynamic optimization of human walking, J. Biomech. Eng. 123 (2001), pp. 381–390.
Jumping
M.G. Pandy, F.E. Zajac, E. Sim and W.S. Levine, An optimal control model for maximum-height human jumping, J. Biomech. 23 (1990), pp. 1185–1198.
M.G. Pandy and F.E. Zajac, Optimal muscular coordination strategies for jumping, J. Biomech. 24 (1991), pp. 1–10.
M.G. Pandy, F.C. Anderson and D.G. Hull, A parameter optimization approach for the optimal control of large-scale musculoskeletal systems, J. Biomech. Eng. 114 (1992), pp. 450–460.
F.C. Anderson and M.G. Pandy, A dynamic optimization solution for vertical jumping in three dimensions, Comput. Methods Biomech. Biomed. Eng. 2 (1999), pp. 201–231.
M.F. Bobbert, Dependence of human squat jump performance on the series elastic compliance of the triceps surae: a simulation study, J. Exp. Biol. 204 (2001), pp. 533–542.
A. Nagano, T. Komura, S. Fukashiro and R. Himeno, Force, work and power output of lower limb muscles during human maximal-effort countermovement jumping, J. Electromyogr. Kinesiol. 15 (2005), pp. 367–376.
Cycling
C.C. Raasch, F.E. Zajac, B. Ma and W.S. Levine, Muscle coordination of maximum-speed pedaling, J. Biomech. 30 (1997), pp. 595–602.
R.R. Neptune and M.L. Hull, A theoretical analysis of preferred pedaling rate selection in endurance cycling, J. Biomech. 32 (1999), pp. 409–415.
Posture
L.L. Menegaldo, T. Fleury Ade and H.I. Weber, Biomechanical modeling and optimal control of human posture, J. Biomech. 36 (2003), pp. 1701–1712.
Rising on Toes
A. Erdemir and S.J. Piazza, Changes in foot loading following plantar fasciotomy: a computer modeling study, J. Biomech. Eng. 126 (2004), pp. 237–243.
Rising from a chair
M.G. Pandy, B.A. Garner and F.C. Anderson, Optimal control of non-ballistic muscular movements: a constraint-based performance criterion for rising from a chair, J. Biomech. Eng. 117 (1995), pp. 15–26.
Kicking
M.L. Audu and D.T. Davy, The influence of muscle model complexity in musculoskeletal motion modeling, J. Biomech. Eng. 107 (1985), pp. 147–157.
Arm Movements
A.C. Schouten, E. de Vlugt, F.C. van der Helm and G.G. Brouwn, Optimal posture control of a musculo-skeletal arm model, Biol. Cybernet. 84 (2001), pp. 143–152.
K. Ohta, M.M. Svinin, Z. Luo, S. Hosoe and R. Laboissiere, Optimal trajectory formation of constrained human arm reaching movements, Biol. Cybernet. 91 (2004), pp. 23–36.
Elbow Flexion
R.V. Gonzalez, E.L. Hutchins, R.E. Barr and L.D. Abraham, Development and evaluation of a musculoskeletal model of the elbow joint complex, J. Biomech. Eng. 118 (1996), pp. 32–40.
T. Kashima, Y. Isurugi and M. Shima, Analysis of a muscular control system in human movements, Biol. Cybernet. 82 (2000), pp. 123–131.

