CPG-based Controllers can Trigger the Emergence of Social Synchrony in Human-Robot Interactions
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[1] Aslak Grinsted,et al. Nonlinear Processes in Geophysics Application of the Cross Wavelet Transform and Wavelet Coherence to Geophysical Time Series , 2022 .
[2] Hau-Tieng Wu,et al. The Synchrosqueezing algorithm for time-varying spectral analysis: Robustness properties and new paleoclimate applications , 2011, Signal Process..
[3] J. Kelso,et al. The human dynamic clamp as a paradigm for social interaction , 2014, Proceedings of the National Academy of Sciences.
[4] P. McClintock. Synchronization:a universal concept in nonlinear science , 2003 .
[5] A. Hodgkin,et al. A quantitative description of membrane current and its application to conduction and excitation in nerve , 1990 .
[6] Jukka-Pekka Kauppi,et al. A versatile software package for inter-subject correlation based analyses of fMRI , 2014 .
[7] A. Ijspeert,et al. Dynamic hebbian learning in adaptive frequency oscillators , 2006 .
[8] M. Turvey,et al. Phase transitions and critical fluctuations in the visual coordination of rhythmic movements between people. , 1990, Journal of experimental psychology. Human perception and performance.
[9] Gordon Cheng,et al. Multi-layered multi-pattern CPG for adaptive locomotion of humanoid robots , 2014, Biological Cybernetics.
[10] C L Webber,et al. Dynamical assessment of physiological systems and states using recurrence plot strategies. , 1994, Journal of applied physiology.
[11] Carlos Cornejo,et al. Interpersonal Coordination: Methods, Achievements, and Challenges , 2017, Front. Psychol..
[12] Ludovic Righetti,et al. Programmable central pattern generators: an application to biped locomotion control , 2006, Proceedings 2006 IEEE International Conference on Robotics and Automation, 2006. ICRA 2006..
[13] Denis Mottet,et al. The dynamics of goal-directed rhythmical aiming , 1999, Biological Cybernetics.
[14] Auke Jan Ijspeert,et al. Central pattern generators for locomotion control in animals and robots: A review , 2008, Neural Networks.
[15] J. Martinerie,et al. The brainweb: Phase synchronization and large-scale integration , 2001, Nature Reviews Neuroscience.
[16] H. Haken,et al. A theoretical model of phase transitions in human hand movements , 2004, Biological Cybernetics.
[17] I. Daubechies,et al. Synchrosqueezed wavelet transforms: An empirical mode decomposition-like tool , 2011 .
[18] L. Bernardi,et al. Spontaneous Group Synchronization of Movements and Respiratory Rhythms , 2014, PloS one.
[19] U. Lindenberger,et al. Cardiac and Respiratory Patterns Synchronize between Persons during Choir Singing , 2011, PloS one.
[20] H. Lee,et al. ORIGIN OF SYNCHRONIZED TRAFFIC FLOW ON HIGHWAYS AND ITS DYNAMIC PHASE TRANSITIONS , 1998, cond-mat/9805097.
[21] J. Kelso,et al. Action-Perception as a Pattern Formation Process , 2018, Attention and Performance XIII.
[22] Daniel S. Margulies,et al. Influences on and Measures of Unintentional Group Synchrony , 2016, Front. Psychol..
[23] Joseph A. Bulbulia,et al. Synchronized arousal between performers and related spectators in a fire-walking ritual , 2011, Proceedings of the National Academy of Sciences.
[24] Per G. Reinhall,et al. Coupled van der Pol oscillators as a simplified model for generation of neural patterns for jellyfish locomotion , 2006 .
[25] K. Nakayama,et al. Adaptation aftereffects in the perception of gender from biological motion. , 2006, Journal of vision.
[26] M. Eichler,et al. Assessing the strength of directed influences among neural signals using renormalized partial directed coherence , 2009, Journal of Neuroscience Methods.
[27] F. Varela,et al. Measuring phase synchrony in brain signals , 1999, Human brain mapping.
[28] Charles L. Webber,et al. Cross recurrence quantification of coupled oscillators , 2002 .
[29] Alexandra Paxton,et al. Interpersonal Movement Synchrony Responds to High- and Low-Level Conversational Constraints , 2017, Front. Psychol..
[30] Poramate Manoonpong,et al. Fast Dynamical Coupling Enhances Frequency Adaptation of Oscillators for Robotic Locomotion Control , 2017, Front. Neurorobot..
[31] Patrick Henaff,et al. Hebbian Plasticity in CPG Controllers Facilitates Self-Synchronization for Human-Robot Handshaking , 2018, Front. Neurorobot..
[32] J. Kelso,et al. Cortical coordination dynamics and cognition , 2001, Trends in Cognitive Sciences.
[33] Jianwei Zhang,et al. A Survey on CPG-Inspired Control Models and System Implementation , 2014, IEEE Transactions on Neural Networks and Learning Systems.
[34] A. Selverston,et al. Modeling the gastric mill central pattern generator of the lobster with a relaxation-oscillator network. , 1993, Journal of neurophysiology.
[35] D. McCrea,et al. Modelling spinal circuitry involved in locomotor pattern generation: insights from deletions during fictive locomotion , 2006, The Journal of physiology.
[36] Benoît G. Bardy,et al. Postural Coordination during Socio-motor Improvisation , 2016, Front. Psychol..
[37] Kurths,et al. Phase synchronization of chaotic oscillators. , 1996, Physical review letters.
[38] J. Kelso,et al. From the Cover : The phi complex as a neuromarker of human social coordination , 2007 .
[39] Patrick Flandrin,et al. Improving the readability of time-frequency and time-scale representations by the reassignment method , 1995, IEEE Trans. Signal Process..
[40] Guy Theraulaz,et al. Self-Organization in Biological Systems , 2001, Princeton studies in complexity.
[41] Philippe Gaussier,et al. Learning to Synchronously Imitate Gestures Using Entrainment Effect , 2016, SAB.
[42] Mohamed Chetouani,et al. Interpersonal Synchrony: A Survey of Evaluation Methods across Disciplines , 2012, IEEE Transactions on Affective Computing.
[43] Shigeki Sugano,et al. A role of multi-modal rhythms in physical interaction and cooperation , 2012, EURASIP J. Audio Speech Music. Process..
[44] Michael J Richardson,et al. Visual tracking and entrainment to an environmental rhythm. , 2007, Journal of experimental psychology. Human perception and performance.