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  1. Improvisation and the self-organization of multiple musical bodies.Ashley E. Walton, Michael J. Richardson, Peter Langland-Hassan & Anthony Chemero - 2015 - Frontiers in Psychology 6:1-9.
    Understanding everyday behavior relies heavily upon understanding our ability to improvise, how we are able to continuously anticipate and adapt in order to coordinate with our environment and others. Here we consider the ability of musicians to improvise, where they must spontaneously coordinate their actions with co-performers in order to produce novel musical expressions. Investigations of this behavior have traditionally focused on describing the organization of cognitive structures. The focus, here, however, is on the ability of the time-evolving patterns of (...)
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  • Neural synchrony within the motor system: what have we learned so far?Bernadette C. M. van Wijk, Peter J. Beek & Andreas Daffertshofer - 2012 - Frontiers in Human Neuroscience 6.
  • Nonverbal synchrony and affect in dyadic interactions.Wolfgang Tschacher, Georg M. Rees & Fabian Ramseyer - 2014 - Frontiers in Psychology 5.
  • The coordination dynamics of social neuromarkers.Emmanuelle Tognoli & J. A. Scott Kelso - 2015 - Frontiers in Human Neuroscience 9.
  • Designer differential equations for animal locomotion.Ian Stewart - 1999 - Complexity 5 (2):12-22.
  • How to build and use agent-based models in social science.Nigel Gilbert & Pietro Terna - 2000 - Mind and Society 1 (1):57-72.
    The use of computer simulation for building theoretical models in social science is introduced. It is proposed that agent-based models have potential as a “third way” of carrying out social science, in addition to argumentation and formalisation. With computer simulations, in contrast to other methods, it is possible to formalise complex theories about processes, carry out experiments and observe the occurrence of emergence. Some suggestions are offered about techniques for building agent-based models and for debugging them. A scheme for structuring (...)
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  • Social Connection Through Joint Action and Interpersonal Coordination.Kerry L. Marsh, Michael J. Richardson & R. C. Schmidt - 2009 - Topics in Cognitive Science 1 (2):320-339.
    The pull to coordinate with other individuals is fundamental, serving as the basis for our social connectedness to others. Discussed is a dynamical and ecological perspective to joint action, an approach that embeds the individual’s mind in a body and the body in a niche, a physical and social environment. Research on uninstructed coordination of simple incidental rhythmic movement, along with research on goal‐directed, embodied cooperation, is reviewed. Finally, recent research is discussed that extends the coordination and cooperation studies, examining (...)
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  • Beyond the blank slate: routes to learning new coordination patterns depend on the intrinsic dynamics of the learner—experimental evidence and theoretical model.Viviane Kostrubiec, Pier-Giorgio Zanone, Armin Fuchs & J. A. Scott Kelso - 2012 - Frontiers in Human Neuroscience 6.
  • Inference or interaction: Social cognition without precursors.Shaun Gallagher - 2008 - Philosophical Explorations 11 (3):163 – 174.
    In this paper I defend interaction theory (IT) as an alternative to both theory theory (TT) and simulation theory (ST). IT opposes the basic suppositions that both TT and ST depend upon. I argue that the various capacities for primary and secondary intersubjectivity found in infancy and early childhood should not be thought of as precursors to later developing capacities for using folk psychology or simulation routines. They are not replaced or displaced by such capacities in adulthood, but rather continue (...)
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  • Degeneracy and Complexity in Neuro-Behavioral Correlates of Team Coordination.Silke Dodel, Emmanuelle Tognoli & J. A. Scott Kelso - 2020 - Frontiers in Human Neuroscience 14.
  • Anisotropy and Antagonism in the Coupling of Two Oscillators: Concepts and Applications for Between-Person Coordination.Harjo J. de Poel - 2016 - Frontiers in Psychology 7.
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  • Synergetics, an Introduction: Nonequilibrium Phase Transitions and SelfOrganization in Physics, Chemistry, and Biology.H. Haken - 1978 - Springer.
  • The sense of agency – a phenomenological consequence of enacting sensorimotor schemes.Thomas Buhrmann & Ezequiel Di Paolo - 2017 - Phenomenology and the Cognitive Sciences 16 (2):207-236.
    The sensorimotor approach to perception addresses various aspects of perceptual experience, but not the subjectivity of intentional action. Conversely, the problem that current accounts of the sense of agency deal with is primarily one of subjectivity. But the proposed models, based on internal signal comparisons, arguably fail to make the transition from subpersonal computations to personal experience. In this paper we suggest an alternative direction towards explaining the sense of agency by braiding three theoretical strands: a world-involving, dynamical interpretation of (...)
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  • Cortical coordination dynamics and cognition.Steven L. Bressler & J. A. Scott Kelso - 2001 - Trends in Cognitive Sciences 5 (1):26-36.
  • A Dynamic Systems Approach to the Development of Cognition and Action.David Morris, E. Thelen & L. B. Smith - 1997 - International Studies in the Philosophy of Science 11 (2).
  • Synchronous oscillations in neuronal systems: Mechanisms and functions.Charles M. Gray - 1994 - Journal of Computational Neuroscience 1:11-38.
  • Binding in models of perception and brain function.Christoph von der Malsburg - 1995 - Current Opinion in Neurobiology 5:520-28.
    The development of the issue of binding as fundamental to neural dynamics has made possible recent advances in the modeling of difficult problems of perception and brain function. Among them is perceptual segmentation, invariant pattern recognition and one-shot learning. Also, longer-term conceptual developments that have led to this success are reviewed.
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  • More is different.P. W. Anderson - 1994 - In H. Gutfreund & G. Toulouse (eds.), Biology and Computation: A Physicist's Choice. World Scientific. pp. 3--21.
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