Universidad Politécnica de Cartagena TESIS DOCTORAL “UNA ...

Universidad Politécnica de Cartagena TESIS DOCTORAL “UNA ... Universidad Politécnica de Cartagena TESIS DOCTORAL “UNA ...

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Schaal, S. (2003). Arm and hand movement control. In M. Arbib (Ed.), The handbook of brain theory and neural networks, 2ed. Cambridge, MA: MIT Press, pp. 110 – 113. Schettino, L., Rajaraman, V., Jack, D., Adamovich, S., Sage, J., Poizner, H. (2003). Deficits in the evolution of hand preshaping in Parkinson’s disease. Neuropsychologia, 42: 82 – 94. Schieber, M., Hibbard, L.S. (1993). How somatotopic is the motor cortex hand area? Science, 261: 489–492. Schieber, M., Poliakov, A.V. (1998). Partial inactivation of the primary motor cortex hand area: effects of individuated finger movements. Journal of Neuroscience, 18: 9038–9054. Schieber, M. (1999). Somatotopic gradients in the distributed organization of the human primary motor cortex hand area: evidence from small infarcts. Experimental Brain Research, 128: 139–148. Simoneau, M., Paillard, J., Bard, C., Teasdale, N., Martin, O., Fleury, M, Lamarre, Y. (1999). Role of the feedforward command and reafferent information in the coordination of a passing prehension task. Experimental Brain Research, 128: 236 – 242 Smeets, J.B., Brenner, E. (1999). A new view on grasping. Motor Control, 3: 237 – 271. Steenbergen, B (1999). What Can Be Learned From Smeets and Brenner’s Model About the Control of Grasping? Motor Control, 3 (3): 302-306 Stokbro, K., Umberger, D.K., Hertz, J.A. (1990). Exploiting neurons with localized receptive fields to learn chaos. Complex Systems, 4: 603 – 622. Strick, P.L., Preston, J.B. (1978). Multiple representation in the primate motor cortex. Brain Research, 54: 366–370. Sutton, R. S. (1988). Learning to Predict by the Methods of Temporal Differences. Machine Learning, 3: 9-44. Taha, Z., Brown, R., Wright, D. (1997) Modelling and simulation of the hand grasping using neural networks. Medical Engineering and Physiology, 19(6): 536-538. Taira, M., Mine, S., Georgopoulos, A., Murata, A., Sakata, H. (1990). Parietal cortex neurons of the monkey related to the visual guidance of hand movement. Experimental Brain Research, 83: 29 – 36.

Tanee, J., Boussaoud, D., Boyer-Zeller, N., Roullier, E. (1995). Direct visual pathways for reaching movements in the macaque monkey. Neuroreport, 7(1): 267-272. Tepper, J.M., Koós., T., Wilson, C.J. (2004). GABAergic microcircuits in the neostriatum. Trends in Neurosciences. 27 (11): 662-669. Tikhonov, A.N., Arsenin, V.Y. (1977). Solutions of ill – posed problems. W.H. Winston (Ed). Washington, D.C. Timman, D., Stelmach, G.E., Bloedel, J.R. (1996). Grasping component alterations and limb transport. Experimental Brain Research, 108, 486-492. Ulloa, A., Bullock, D. (2003). A neural network simulating human reach-grasp coordination by continuous updating of vector positioning commands. Neural Networks, 16: 1141-1160. Uno, Y., Kawato, M., & Suzuki, R. (1989) Formation and control of optimal trajectories in human multijoint arm movements. Minimum torquechange model. Biological Cybernetics, 61, 89 -101. Uno, Y., Fukumura, N., Suzuki, R., Kawato, M. (1993). Integration of Visual and Somatosensory Information for Preshaping Hand in Grasping Movements. In Advances in Neural Information Processing Systems, 5: 311-318. Uno, Y., Fukumura, N., Suzuki, R., Kawato M. (1995). A Computational Model for Recognizing Objects and Planning Hand Shapes in Grasping Movements. Neural Networks, 8(6): 839-851. Vila, M., Levy, R., Herrero, M.T., Ruberg, M., Faucheux, B.A., Obeso, J.A., Agid, Y., Hirsch, E.C. (1997). Consequences of nigrosriatal denervation on the functioning of basal ganglia in human and non-human primates: An in situ hybridization study of cytochrome oxidase subunit I mRNA. Journal of Neuroscience, 17: 765-773. Wallace, S.A, Weeks, D. (1988). Temporal constraints in the control of the prehensile movement. Journal of Motor Behavior, 20(2): 81-105. Wallace, S.A., Weeks, D.L., Kelso, J.A.S. (1990). Temporal constraints in reaching and grasping behavior, Human Movement Science, 9, 69-93. Wang, J., Stelmach, G.E (1999). Temporal and Spatial Relationship Between Reaching and Grasping. Commentary on A New View on Grasping. Motor Control, 3 (3): 307- 311 Weiss, P., Stelmach, G.E., Hefter, H. (1997). Programming of a movement sequence in Parkinson’s disease. Brain, 120: 91- 102

Tanee, J., Boussaoud, D., Boyer-Zeller, N., Roullier, E. (1995). Direct visual pathways<br />

for reaching movements in the macaque monkey. Neuroreport, 7(1): 267-272.<br />

Tepper, J.M., Koós., T., Wilson, C.J. (2004). GABAergic microcircuits in the neostriatum.<br />

Trends in Neurosciences. 27 (11): 662-669.<br />

Tikhonov, A.N., Arsenin, V.Y. (1977). Solutions of ill – posed problems. W.H. Winston<br />

(Ed). Washington, D.C.<br />

Timman, D., Stelmach, G.E., Bloe<strong>de</strong>l, J.R. (1996). Grasping component alterations and<br />

limb transport. Experimental Brain Research, 108, 486-492.<br />

Ulloa, A., Bullock, D. (2003). A neural network simulating human reach-grasp<br />

coordination by continuous updating of vector positioning commands. Neural<br />

Networks, 16: 1141-1160.<br />

Uno, Y., Kawato, M., & Suzuki, R. (1989) Formation and control of optimal trajectories<br />

in human multijoint arm movements. Minimum torquechange mo<strong>de</strong>l. Biological<br />

Cybernetics, 61, 89 -101.<br />

Uno, Y., Fukumura, N., Suzuki, R., Kawato, M. (1993). Integration of Visual and<br />

Somatosensory Information for Preshaping Hand in Grasping Movements. In<br />

Advances in Neural Information Processing Systems, 5: 311-318.<br />

Uno, Y., Fukumura, N., Suzuki, R., Kawato M. (1995). A Computational Mo<strong>de</strong>l for<br />

Recognizing Objects and Planning Hand Shapes in Grasping Movements. Neural<br />

Networks, 8(6): 839-851.<br />

Vila, M., Levy, R., Herrero, M.T., Ruberg, M., Faucheux, B.A., Obeso, J.A., Agid, Y.,<br />

Hirsch, E.C. (1997). Consequences of nigrosriatal <strong>de</strong>nervation on the functioning of<br />

basal ganglia in human and non-human primates: An in situ hybridization study of<br />

cytochrome oxidase subunit I mRNA. Journal of Neuroscience, 17: 765-773.<br />

Wallace, S.A, Weeks, D. (1988). Temporal constraints in the control of the prehensile<br />

movement. Journal of Motor Behavior, 20(2): 81-105.<br />

Wallace, S.A., Weeks, D.L., Kelso, J.A.S. (1990). Temporal constraints in reaching and<br />

grasping behavior, Human Movement Science, 9, 69-93.<br />

Wang, J., Stelmach, G.E (1999). Temporal and Spatial Relationship Between Reaching<br />

and Grasping. Commentary on A New View on Grasping. Motor Control, 3 (3): 307-<br />

311<br />

Weiss, P., Stelmach, G.E., Hefter, H. (1997). Programming of a movement sequence in<br />

Parkinson’s disease. Brain, 120: 91- 102

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