A theoretical model of phase transitions in human hand movements
- 1 February 1985
- journal article
- research article
- Published by Springer Nature in Biological Cybernetics
- Vol. 51 (5) , 347-356
- https://doi.org/10.1007/bf00336922
Abstract
Earlier experimental studies by one of us (Kelso, 1981a, 1984) have shown that abrupt phase transitions occur in human hand movements under the influence of scalar changes in cycling frequency. Beyond a critical frequency the originally prepared out-of-phase, antisymmetric mode is replaced by a symmetrical, in-phase mode involving simultaneous activation of homologous muscle groups. Qualitavely, these phase transitions are analogous to gait shifts in animal locomotion as well as phenomena common to other physical and biological systems in which new “modes” or spatiotemporal patterns arise when the system is parametrically scaled beyond its equilibrium state (Haken, 1983). In this paper a theoretical model, using concepts central to the interdisciplinary field of synergetics and nonlinear oscillator theory, is developed, which reproduces (among other features) the dramatic change in coordinative pattern observed between the hands.Keywords
This publication has 16 references indexed in Scilit:
- Exploring the functional significance of physiological tremor: A biospectroscopic approachExperimental Brain Research, 1983
- Preferential coupling between voluntary movements of ipsilateral limbsNeuroscience Letters, 1982
- The nature of the coupling between segmental oscillators of the lamprey spinal generator for locomotion: A mathematical modelJournal of Mathematical Biology, 1982
- On the interaction between spinal locomotor generators in quadrupedsBrain Research Reviews, 1980
- Two coupled oscillators as a model for the coordinated finger tapping by both handsBiological Cybernetics, 1980
- Problems in Physics with many Scales of LengthScientific American, 1979
- On the Nature of Human Interlimb CoordinationScience, 1979
- Cooperative phenomena in systems far from thermal equilibrium and in nonphysical systemsReviews of Modern Physics, 1975
- Synchronous Bimanual Movements Performed by Homologous and Non-Homologous MusclesPerceptual and Motor Skills, 1971
- The Theory of Phase TransitionsNature, 1936