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Biological Cybernetics|January 1, 1996
Extending the HKB model of coordinated movement to oscillators with different eigenfrequenciesA Fuchs, V K Jirsa, H Haken, et al.American Journal of Mental Deficiency|May 1, 1979
Movement coding and memory in retarded childrenJ A Kelso, D Goodman, C L Stamm, et al.Experimental Brain Research|September 10, 1999
Spatiotemporal reorganization of electrical activity in the human brain associated with a timing transition in rhythmic auditory-motor coordinationJ M Mayville, S L Bressler, A Fuchs, et al.The Journal of the Acoustical Society of America|January 1, 1985
A qualitative dynamic analysis of reiterant speech production: phase portraits, kinematics, and dynamic modelingJ A Kelso, E Vatikiotis-Bateson, E L Saltzman, et al.Journal of Experimental Psychology. Human Perception and Performance|May 1, 1987
Space-time behavior of single and bimanual rhythmical movements: data and limit cycle modelB A Kay, J A Kelso, E L Saltzman, et al.Experimental Brain Research|October 12, 2000
Local and global stabilization of coordination by sensory informationP W Fink, P Foo, V K Jirsa, et al.Journal of Motor Behavior|December 1, 1981
Patterns of human interlimb coordination emerge from the properties of non-linear, limit cycle oscillatory processes: theory and dataJ A Kelso, K G Holt, P Rubin, et al.Proceedings. Biological Sciences|May 26, 2001
Haptic information stabilizes and destabilizes coordination dynamicsJ A Kelso, P W Fink, C R DeLaplain, et al.Journal of Experimental Psychology. Human Perception and Performance|May 16, 2000
Recruitment of degrees of freedom stabilizes coordinationP W Fink, J A Kelso, V K Jirsa, et al.Clinical Neurophysiology : Official Journal of the International Federation of Clinical Neurophysiology|August 22, 2001
Neuromagnetic activity in alpha and beta bands reflect learning-induced increases in coordinative stabilityK J Jantzen, A Fuchs, J M Mayville, et al.Pageof 9