Complexity Changes in Brain Activity in Healthy Ageing: A Permutation Lempel-Ziv Complexity Study of Magnetoencephalograms
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Daniel Abásolo | Alberto Fernández | Pinar Deniz Tosun | Elizabeth Shumbayawonda | Michael Pycraft Hughes | D. Abásolo | E. Shumbayawonda | M. P. Hughes | A. Fernández | P. Tosun | Elizabeth Shumbayawonda | Elizabeth Shumbayawonda
[1] R. Bajo,et al. Towards the Understanding of Healthy and Pathological Aging Through MEG , 2019, Magnetoencephalography.
[2] C. Rosazza,et al. Resting-state brain networks: literature review and clinical applications , 2011, Neurological Sciences.
[3] Roberto Hornero,et al. Blind source separation to enhance spectral and non-linear features of magnetoencephalogram recordings. Application to Alzheimer's disease. , 2009, Medical engineering & physics.
[4] J. Babb,et al. Age-related total gray matter and white matter changes in normal adult brain. Part I: volumetric MR imaging analysis. , 2002, AJNR. American journal of neuroradiology.
[5] R. Weinshilboum,et al. The sixth report of the Joint National Committee on prevention, detection, evaluation, and treatment of high blood pressure. , 1997, Archives of internal medicine.
[6] Samantha Simons,et al. Univariate and Multivariate Generalized Multiscale Entropy to Characterise EEG Signals in Alzheimer's Disease , 2017, Entropy.
[7] C. Miniussi,et al. Guiding transcranial brain stimulation by EEG/MEG to interact with ongoing brain activity and associated functions: A position paper , 2017, Clinical Neurophysiology.
[8] C. Stam,et al. Phase lag index: Assessment of functional connectivity from multi channel EEG and MEG with diminished bias from common sources , 2007, Human brain mapping.
[9] Y. Okada,et al. Contributions of principal neocortical neurons to magnetoencephalography and electroencephalography signals , 2006, The Journal of physiology.
[10] María Carmen Martín-Buro,et al. Functional Connectivity Disruption in Subjective Cognitive Decline and Mild Cognitive Impairment: A Common Pattern of Alterations , 2017, Front. Aging Neurosci..
[11] Qianli D. Y. Ma,et al. Modified permutation-entropy analysis of heartbeat dynamics. , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[12] B. Pompe,et al. Permutation entropy: a natural complexity measure for time series. , 2002, Physical review letters.
[13] Anton Popov,et al. Permutation entropy of EEG signals for different sampling rate and time lag combinations , 2013, 2013 Signal Processing Symposium (SPS).
[14] P Tewarie,et al. The relation between structural and functional connectivity patterns in complex brain networks. , 2016, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[15] J. Sleigh,et al. Permutation entropy of the electroencephalogram: a measure of anaesthetic drug effect. , 2008, British journal of anaesthesia.
[16] B. Pakkenberg,et al. Marked loss of myelinated nerve fibers in the human brain with age , 2003, The Journal of comparative neurology.
[17] H Ector,et al. Heart rate variability and heart rate in healthy volunteers. Is the female autonomic nervous system cardioprotective? , 1998, European heart journal.
[18] T. van Amelsvoort,et al. HRT and its effect on normal ageing of the brain and dementia. , 2001, British journal of clinical pharmacology.
[19] O. Sporns,et al. The economy of brain network organization , 2012, Nature Reviews Neuroscience.
[20] Jing Hu,et al. Analysis of Biomedical Signals by the Lempel-Ziv Complexity: the Effect of Finite Data Size , 2006, IEEE Transactions on Biomedical Engineering.
[21] J Hislop-Jambrich,et al. Defining acute ischemic stroke tissue pathophysiology with whole brain CT perfusion. , 2014, Journal of neuroradiology. Journal de neuroradiologie.
[22] Ali Miri,et al. A Lempel-Ziv complexity measure for muscle fatigue estimation. , 2011, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[23] N. Birbaumer,et al. Age increases brain complexity. , 1996, Electroencephalography and clinical neurophysiology.
[24] S. G. Danko,et al. EEG differences between resting states with eyes open and closed in darkness , 2010, Human Physiology.
[25] Yong He,et al. Topological organization of the human brain functional connectome across the lifespan , 2013, Developmental Cognitive Neuroscience.
[26] D. Perani. Faculty Opinions recommendation of PET imaging of tau deposition in the aging human brain. , 2017 .
[27] A. Meyer-Lindenberg,et al. The evolution of complexity in human brain development: an EEG study. , 1996, Electroencephalography and clinical neurophysiology.
[28] Davide Contini,et al. Time domain functional NIRS imaging for human brain mapping , 2014, NeuroImage.
[29] Alexander Leemans,et al. Microstructural maturation of the human brain from childhood to adulthood , 2008, NeuroImage.
[30] G. Edelman,et al. Complexity and coherency: integrating information in the brain , 1998, Trends in Cognitive Sciences.
[31] Matthäus Staniek,et al. Symbolic transfer entropy. , 2008, Physical review letters.
[32] O. Sporns,et al. Complex brain networks: graph theoretical analysis of structural and functional systems , 2009, Nature Reviews Neuroscience.
[33] A. W. M. van den Enden,et al. Discrete Time Signal Processing , 1989 .
[34] N. Woodward,et al. Resting-State Functional Connectivity in Psychiatric Disorders. , 2015, JAMA psychiatry.
[35] Daniel Abásolo,et al. Permutation Entropy for the Characterisation of Brain Activity Recorded with Magnetoencephalograms in Healthy Ageing , 2017, Entropy.
[36] Daniel R. Schonhaut,et al. PET Imaging of Tau Deposition in the Aging Human Brain , 2016, Neuron.
[37] Abraham Lempel,et al. On the Complexity of Finite Sequences , 1976, IEEE Trans. Inf. Theory.
[38] C. J. Stam,et al. EEG synchronization likelihood in mild cognitive impairment and Alzheimer's disease during a working memory task , 2004, Clinical Neurophysiology.
[39] Maurizio Corbetta,et al. Resting-State Functional Connectivity Emerges from Structurally and Dynamically Shaped Slow Linear Fluctuations , 2013, The Journal of Neuroscience.
[40] Robert J Barry,et al. Age and sex effects in the EEG: development of the normal child , 2001, Clinical Neurophysiology.
[41] Margot J. Taylor,et al. Oscillations, networks, and their development: MEG connectivity changes with age , 2014, Human brain mapping.
[42] Adriana Galván,et al. The use of functional and effective connectivity techniques to understand the developing brain , 2015, Developmental Cognitive Neuroscience.
[43] Detection. The sixth report of the Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure (JNC VI) , 1997 .
[44] Olaf Sporns,et al. Neurobiologically Realistic Determinants of Self-Organized Criticality in Networks of Spiking Neurons , 2011, PLoS Comput. Biol..
[45] Seungjin Choi. Blind Source Separation and Independent Component Analysis : A Review , 2004 .
[46] D. Abásolo,et al. Brain oscillatory complexity across the life span , 2012, Clinical Neurophysiology.
[47] Jing Li,et al. Using Permutation Entropy to Measure the Changes in EEG Signals During Absence Seizures , 2014, Entropy.
[48] R. Peters,et al. Ageing and the brain , 2006, Postgraduate Medical Journal.
[49] Emily L. Dennis,et al. Functional Brain Connectivity Using fMRI in Aging and Alzheimer’s Disease , 2014, Neuropsychology Review.
[50] Yang Bai,et al. A permutation Lempel-Ziv complexity measure for EEG analysis , 2015, Biomed. Signal Process. Control..
[51] Gordon Pipa,et al. Transfer entropy—a model-free measure of effective connectivity for the neurosciences , 2010, Journal of Computational Neuroscience.
[52] Praveen Kumar Sharma,et al. Aging of Brain: Role of Estrogen , 2006, Neurochemical Research.