Model selection for identifying power-law scaling
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[1] Pengjian Shang,et al. Detecting long-range correlations of traffic time series with multifractal detrended fluctuation analysis , 2008 .
[2] Ken Aho,et al. Model selection for ecologists: the worldviews of AIC and BIC. , 2014, Ecology.
[3] Steven B. Lowen,et al. Efficent Generation of Fractional Brownian Motion for Simulation of Infrared Focal-plane Array Calibration Drift , 1999 .
[4] D. Grech,et al. On the scaling ranges of detrended fluctuation analysis for long-term memory correlated short series of data , 2012, 1206.1007.
[5] Matthew J. Brookes,et al. Resting state MEG oscillations show long-range temporal correlations of phase synchrony that break down during finger movement , 2015, Front. Physiol..
[6] David R. Anderson,et al. Model selection and multimodel inference : a practical information-theoretic approach , 2003 .
[7] B. Mandelbrot,et al. Fractional Brownian Motions, Fractional Noises and Applications , 1968 .
[8] K. Linkenkaer-Hansen,et al. Long-Range Temporal Correlations and Scaling Behavior in Human Brain Oscillations , 2001, The Journal of Neuroscience.
[9] H. Haken. Synergetics: an Introduction, Nonequilibrium Phase Transitions and Self-organization in Physics, Chemistry, and Biology , 1977 .
[10] H. E. Hurst,et al. Long-Term Storage Capacity of Reservoirs , 1951 .
[11] H. Stanley,et al. Effect of nonlinear filters on detrended fluctuation analysis. , 2004, Physical review. E, Statistical, nonlinear, and soft matter physics.
[12] Lisa Borland. Long-range memory and nonextensivity in financial markets , 2005 .
[13] K. Linkenkaer-Hansen,et al. Neuronal long-range temporal correlations and avalanche dynamics are correlated with behavioral scaling laws , 2013, Proceedings of the National Academy of Sciences.
[14] Imen Kammoun,et al. Asymptotic Properties of the Detrended Fluctuation Analysis of Long-Range-Dependent Processes , 2008, IEEE Transactions on Information Theory.
[15] Andreas Daffertshofer,et al. Benefits and Pitfalls in Analyzing Noise in Dynamical Systems - On Stochastic Differential Equations and System Identification , 2011, Nonlinear Dynamics in Human Behavior.
[16] H. Haken,et al. Synergetics , 1988, IEEE Circuits and Devices Magazine.
[17] Woodrow L. Shew,et al. The Functional Benefits of Criticality in the Cortex , 2013, The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry.
[18] B Kaulakys,et al. Stochastic nonlinear differential equation generating 1/f noise. , 2004, Physical review. E, Statistical, nonlinear, and soft matter physics.
[19] Trang Dinh. ON THE EFFECTS OF NON-STATIONARITY IN LONG-RANGE DEPENDENCE TESTS , 1999 .
[20] S. Havlin,et al. Correlated and uncorrelated regions in heart-rate fluctuations during sleep. , 2000, Physical review letters.
[21] R. Bryce,et al. Revisiting detrended fluctuation analysis , 2012, Scientific Reports.
[22] Richard D. Deveaux,et al. Applied Smoothing Techniques for Data Analysis , 1999, Technometrics.
[23] Woodrow L. Shew,et al. Cascades and Cognitive State: Focused Attention Incurs Subcritical Dynamics , 2015, The Journal of Neuroscience.
[24] H. Stanley,et al. Effect of trends on detrended fluctuation analysis. , 2001, Physical review. E, Statistical, nonlinear, and soft matter physics.
[25] Hermann Haken,et al. An Introduction: Nonequilibrium Phase Transitions and Self-Organization in Physics, Chemistry and Biology , 2004 .
[26] D. Sornette,et al. Comparing the performance of FA, DFA and DMA using different synthetic long-range correlated time series , 2012, Scientific Reports.
[27] Christian Bender,et al. Arbitrage with fractional Brownian motion , 2007 .
[28] B Kaulakys,et al. 1/f Noise from nonlinear stochastic differential equations. , 2010, Physical review. E, Statistical, nonlinear, and soft matter physics.
[29] Luc Berthouze,et al. A maximum likelihood based technique for validating detrended fluctuation analysis (ML-DFA) , 2013, 1306.5075.
[30] David R. Anderson,et al. Multimodel Inference , 2004 .
[31] Morten L. Kringelbach,et al. Distinct criticality of phase and amplitude dynamics in the resting brain , 2015, NeuroImage.
[32] John M. Beggs,et al. Neuronal Avalanches in Neocortical Circuits , 2003, The Journal of Neuroscience.
[33] Harvard Medical School,et al. Effect of nonstationarities on detrended fluctuation analysis. , 2001, Physical review. E, Statistical, nonlinear, and soft matter physics.
[34] Jeffrey C. Lagarias,et al. Convergence Properties of the Nelder-Mead Simplex Method in Low Dimensions , 1998, SIAM J. Optim..
[35] James A. Roberts,et al. Biophysical Mechanisms of Multistability in Resting-State Cortical Rhythms , 2011, The Journal of Neuroscience.
[36] J. Collins,et al. Random walking during quiet standing. , 1994, Physical review letters.
[37] Andreas Daffertshofer,et al. Stochastic two-delay differential model of delayed visual feedback effects on postural dynamics , 2010, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[38] William D. Penny,et al. Comparing Dynamic Causal Models using AIC, BIC and Free Energy , 2012, NeuroImage.
[39] S. Sharma,et al. The Fokker-Planck Equation , 2010 .
[40] Walter Willinger,et al. Stock market prices and long-range dependence , 1999, Finance Stochastics.
[41] N. Tzourio-Mazoyer,et al. Automated Anatomical Labeling of Activations in SPM Using a Macroscopic Anatomical Parcellation of the MNI MRI Single-Subject Brain , 2002, NeuroImage.
[42] C. Peng,et al. Mosaic organization of DNA nucleotides. , 1994, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[43] H. Stanley,et al. Quantification of scaling exponents and crossover phenomena in nonstationary heartbeat time series. , 1995, Chaos.
[44] Christopher Rao,et al. Graphs in Statistical Analysis , 2010 .
[45] D. Chialvo. Emergent complex neural dynamics , 2010, 1010.2530.
[46] Woodrow L. Shew,et al. Neuronal Avalanches Imply Maximum Dynamic Range in Cortical Networks at Criticality , 2009, The Journal of Neuroscience.
[47] Hamid Reza Mohseni,et al. Exploring mechanisms of spontaneous functional connectivity in MEG: How delayed network interactions lead to structured amplitude envelopes of band-pass filtered oscillations , 2014, NeuroImage.