Modular decomposition in visuomotor learning (original) (raw)
References
Jacobs, R. A., Jordan, M. I., Nowlan, S. J. & Hinton, G. E. Adaptive mixture of local experts. Neur. Comp.3, 79–87 (1991). Article Google Scholar
Jordan, M. I. & Jacobs, R. A. Hierarchical mixtures of experts and the EM algorithm. Neur. Comp.6, 181–214 (1994). Article Google Scholar
Cacciatore, T. W. & Nowlan, S. J. Mixtures of controllers for jump linear and non-linear plants. In Advances in Neural Information Processing Systems 6 (eds Cowan, J. D., Tesauro, G. & Alspector, J.) 719–726 (Morgan Kaufmann, San Francisco, 1994). Google Scholar
Jacobs, R. A., Jordan, M. I. & Barto, A. G. Task decomposition through competition in a modular connectionist architecture: the what and where vision tasks. Cogn. Sci.15, 219–250 (1991). Article Google Scholar
Graybiel, A. M., Aosaki, T., Flaherty, A. W. & Kimura, M. The basal ganglia and adaptive motor control. Science265, 1826–1831 (1994). ArticleADSCAS Google Scholar
McGonigle, B. & Flook, J. Long-term retention of single and multistate prismatic adaptation by humans. Nature272, 364–366 (1978). ArticleADSCAS Google Scholar
Welch, R. B., Bridgeman, B., Anand, S. & Browman, K. E. Alternating prism exposure causes dual adaptation and generalization to a novel displacement. Percept. Psychophys.54, 195–204 (1993). ArticleCAS Google Scholar
Clower, D. M. et al. Role of posterior parietal cortex in the recalibration of visually guided reaching. Nature383, 618–621 (1996). ArticleADSCAS Google Scholar
Kohler, I. Development and alterations of the perceptual world: conditioned sensations. Proc. Austrian Acad. Sci.227, 1–118 (1951). ADS Google Scholar
Hay, J. C. & Pick, H. L. Gaze-contingent prism adaptation: optical and motor factors. J. Exp. Psychol.72, 640–648 (1966). ArticleCAS Google Scholar
Shelhamer, M., Robinson, D. A. & Tan, H. S. Context-specific gain switching in the human vestibuloocular reflex. Ann. NY Acad. Sci.656, 889–891 (1991). ArticleADS Google Scholar
Baker, J. F., Perlmutter, S. I., Peterson, B. W., Rude, S. A. & Robinson, F. R. Simultaneous opposing adaptive changes in cat vestibulo-ocular reflex directions for two body orientations. Exp. Brain Res.69, 220–224 (1987). ArticleCAS Google Scholar
Gandolfo, F., Mussa-Ivaldi, F. A. & Bizzi, E. Motor learning by field approximation. Proc. Natl Acad. Sci. USA93, 3843–3846 (1996). ArticleADSCAS Google Scholar
Kravitz, J. H. & Yaffe, F. Conditioned adaptation to prismatic displacement with a tone as the conditional stimulus. Percept. Psychophys.12, 305–308 (1972). Article Google Scholar
Kravitz, J. H. Conditioned adaptation to prismatic displacement. Percept. Psychophys.11, 38–42 (1972). Article Google Scholar
Welch, R. B. Discriminative conditioning of prism adaptation. Percept. Psychophys.10, 90–92 (1971). Article Google Scholar
Martin, T. A., Keating, J. G., Goodkin, H. P., Bastian, A. J. & Thach, W. T. Throwing while looking through prisms, II. Specificity and storage of multiple gaze-throw calibrations. Brain119, 1199–1211 (1996). Article Google Scholar
Wolpert, D. M., Ghahramani, Z. & Jordan, M. I. An internal model for sensorimotor integration. Science269, 1880–1882 (1995). ArticleADSCAS Google Scholar
Andersen, R. A., Esseck, C. & Siegel, R. Encoding of spatial location by posterior parietal neurons. Science230, 456–458 (1985). ArticleADSCAS Google Scholar
Soechting, J. F. & Flanders, M. Sensorimotor representations for pointing to targets in three-dimensional space. J. Neurophysiol.62, 582–594 (1989). ArticleCAS Google Scholar
Kalaska, J. F. & Crammond, D. J. Cerebral cortical mechanisms of reaching movements. Science255, 1517–1523 (1992). ArticleADSCAS Google Scholar
Bridle, J. S. Probabilistic interpretation of feedforward classification network outputs, with relationships to statistical pattern recognition. In Neuro-computing: Algorithms, Architectures, and Applications (eds Fougelman-Soulie, F. & Herault, J.) 227–236 (Springer, Berlin, 1990). Google Scholar
Bedford, F. Constraints on learning new mappings between perceptual dimensions. J. Exp. Psychol.15, 232–248 (1989). Google Scholar
Imamizu, H., Uno, Y. & Kawato, M. Internal representations of the motor apparatus: implications from generalization in visuomotor learning. J. Exp. Psychol.21, 1174–1198 (1995). CAS Google Scholar
Ghahramani, Z., Wolpert, D. M. & Jordan, M. I. Generalization to local remappings of the visuomotor coordinate transformation. J. Neurosci.16, 7085–7096 (1996). ArticleCAS Google Scholar
Georgopoulos, A. P., Schwartz, A. B. & Kettner, R. E. Neuronal population coding of movement direction. Science233, 1416–1419 (1986). ArticleADSCAS Google Scholar
Georgopoulos, A. P. Current issues in directional motor control. Trends Neurosci.18, 506–510 (1995). ArticleCAS Google Scholar
Bizzi, E., Mussa-Ivaldi, F. A. & Giszter, S. Computations underlying the execution of movement: A biological perspective. Science253, 287–291 (1991). ArticleADSCAS Google Scholar
Wolpert, D. S., Ghahramani, Z. & Jordan, M. I. Are arm trajectories planned in kinematic or dynamic coordinates? An adaptation study. Exp. Brain Res.103, 460–470 (1995). ArticleCAS Google Scholar
Efron, B. The Jacknife, the Bootstrap and Other Resampling Plans (Society for Industrial and Applied Mathematics, Philadelphia, 1982). Book Google Scholar