Disrupted Nodal and Hub Organization Account for Brain Network Abnormalities in Parkinson’s Disease
暂无分享,去创建一个
Clement Hamani | Antonio P. Strafella | Sylvain Houle | Anthony E. Lang | Marion Criaud | Sarah Coakeley | Christine Ghadery | Romina Mizrahi | S. Houle | A. Strafella | A. Lang | C. Hamani | S. Cho | R. Mizrahi | M. Criaud | Y. Koshimori | Leigh Christopher | M. Jacobs | Sarah Coakeley | C. Ghadery | Yuko Koshimori | Sang-Soo Cho | Leigh Christopher | Mark Jacobs | Madeleine Harris | Madeleine Harris
[1] C. Grady. Cognitive Neuroscience of Aging , 2008, Annals of the New York Academy of Sciences.
[2] A. Strafella,et al. Apathy in Parkinson's disease: clinical features, neural substrates, diagnosis, and treatment , 2015, The Lancet Neurology.
[3] Justin L. Vincent,et al. Distinct brain networks for adaptive and stable task control in humans , 2007, Proceedings of the National Academy of Sciences.
[4] Mark Hallett,et al. Attention to Automatic Movements in Parkinson's Disease: Modified Automatic Mode in the Striatum. , 2015, Cerebral cortex.
[5] Fumiko Hoeft,et al. GAT: A Graph-Theoretical Analysis Toolbox for Analyzing Between-Group Differences in Large-Scale Structural and Functional Brain Networks , 2012, PloS one.
[6] V Latora,et al. Efficient behavior of small-world networks. , 2001, Physical review letters.
[7] Olaf Sporns,et al. Complex network measures of brain connectivity: Uses and interpretations , 2010, NeuroImage.
[8] Olaf Sporns,et al. Network attributes for segregation and integration in the human brain , 2013, Current Opinion in Neurobiology.
[9] O. Sporns,et al. The economy of brain network organization , 2012, Nature Reviews Neuroscience.
[10] G. Glover,et al. Dissociable Intrinsic Connectivity Networks for Salience Processing and Executive Control , 2007, The Journal of Neuroscience.
[11] Susan L. Whitfield-Gabrieli,et al. Conn: A Functional Connectivity Toolbox for Correlated and Anticorrelated Brain Networks , 2012, Brain Connect..
[12] Daniel L. Schacter,et al. Intrinsic Architecture Underlying the Relations among the Default, Dorsal Attention, and Frontoparietal Control Networks of the Human Brain , 2013, Journal of Cognitive Neuroscience.
[13] Houeto Jean-Luc. [Parkinson's disease]. , 2022, La Revue du praticien.
[14] J. Winn,et al. Brain , 1878, The Lancet.
[15] Edward T. Bullmore,et al. Efficiency and Cost of Economical Brain Functional Networks , 2007, PLoS Comput. Biol..
[16] James B Leverenz,et al. Group comparison of spatiotemporal dynamics of intrinsic networks in Parkinson's disease. , 2015, Brain : a journal of neurology.
[17] J. Cummings,et al. The Montreal Cognitive Assessment, MoCA: A Brief Screening Tool For Mild Cognitive Impairment , 2005, Journal of the American Geriatrics Society.
[18] H. Braak,et al. Cognitive status correlates with neuropathologic stage in Parkinson disease , 2005, Neurology.
[19] C. Clarke,et al. Systematic review of levodopa dose equivalency reporting in Parkinson's disease , 2010, Movement disorders : official journal of the Movement Disorder Society.
[20] M. Hallett,et al. Pathophysiology of bradykinesia in Parkinson's disease. , 2001, Brain : a journal of neurology.
[21] G. Sandini,et al. Graph theoretical analysis of magnetoencephalographic functional connectivity in Alzheimer's disease. , 2009, Brain : a journal of neurology.
[22] M. Hallett,et al. Regional homogeneity changes in patients with Parkinson's disease , 2009, Human brain mapping.
[23] Luke J. Chang,et al. Decoding the role of the insula in human cognition: functional parcellation and large-scale reverse inference. , 2013, Cerebral cortex.
[24] Antonio P Strafella,et al. Uncovering the role of the insula in non-motor symptoms of Parkinson's disease. , 2014, Brain : a journal of neurology.
[25] G. E. Alexander,et al. Parallel organization of functionally segregated circuits linking basal ganglia and cortex. , 1986, Annual review of neuroscience.
[26] B. S. Anami,et al. Identification and Classification of Normal and Affected Agriculture/horticulture Produce Based on Combined Color and Texture Feature Extraction , 2011 .
[27] Guo-Rong Wu,et al. Reduced Topological Efficiency in Cortical-Basal Ganglia Motor Network of Parkinson's Disease: A Resting State fMRI Study , 2014, PloS one.
[28] E. Bullmore,et al. A Resilient, Low-Frequency, Small-World Human Brain Functional Network with Highly Connected Association Cortical Hubs , 2006, The Journal of Neuroscience.
[29] Panos M. Pardalos,et al. Connectivity brain networks based on wavelet correlation analysis in Parkinson fMRI data , 2011, Neuroscience Letters.
[30] S. M. Hadi Hosseini,et al. Altered resting state functional brain network topology in chemotherapy-treated breast cancer survivors , 2012, Neurobiology of Disease.
[31] P. Strick,et al. Imaging the premotor areas , 2001, Current Opinion in Neurobiology.
[32] S. Houle,et al. Imaging changes associated with cognitive abnormalities in Parkinson’s disease , 2015, Brain Structure and Function.
[33] M. Tansey,et al. Neuroinflammation and Non-motor Symptoms: The Dark Passenger of Parkinson’s Disease? , 2012, Current Neurology and Neuroscience Reports.
[34] Marcus Kaiser,et al. Nonoptimal Component Placement, but Short Processing Paths, due to Long-Distance Projections in Neural Systems , 2006, PLoS Comput. Biol..
[35] Thomas T. Liu,et al. A component based noise correction method (CompCor) for BOLD and perfusion based fMRI , 2007, NeuroImage.
[36] M. P. van den Heuvel,et al. Exploring the brain network: a review on resting-state fMRI functional connectivity. , 2010, European neuropsychopharmacology : the journal of the European College of Neuropsychopharmacology.
[37] Robert Leech,et al. Salience network integrity predicts default mode network function after traumatic brain injury , 2012, Proceedings of the National Academy of Sciences.
[38] H Shibasaki,et al. Cognitive motor control in human pre-supplementary motor area studied by subdural recording of discrimination/selection-related potentials. , 1999, Brain : a journal of neurology.
[39] C. Adler,et al. The neurobiological basis of cognitive impairment in Parkinson's disease , 2014, Movement disorders : official journal of the Movement Disorder Society.
[40] A. Bonnet,et al. Nonmotor Symptoms in Parkinson's Disease in 2012: Relevant Clinical Aspects , 2012, Parkinson's disease.
[41] Oury Monchi,et al. Function of basal ganglia in bridging cognitive and motor modules to perform an action , 2014, Front. Neurosci..
[42] A. Engel,et al. Intrinsic Coupling Modes: Multiscale Interactions in Ongoing Brain Activity , 2013, Neuron.
[43] C. Grady. The cognitive neuroscience of ageing , 2012, Nature Reviews Neuroscience.
[44] V. Menon,et al. Saliency, switching, attention and control: a network model of insula function , 2010, Brain Structure and Function.
[45] O. Sporns,et al. Network hubs in the human brain , 2013, Trends in Cognitive Sciences.
[46] O. Sporns,et al. Complex brain networks: graph theoretical analysis of structural and functional systems , 2009, Nature Reviews Neuroscience.
[47] Jonathan D. Power,et al. Prediction of Individual Brain Maturity Using fMRI , 2010, Science.
[48] M. V. D. Heuvel,et al. Exploring the brain network: A review on resting-state fMRI functional connectivity , 2010, European Neuropsychopharmacology.
[49] Mark D'Esposito,et al. The salience network causally influences default mode network activity during moral reasoning. , 2013, Brain : a journal of neurology.
[50] O. Sporns. Contributions and challenges for network models in cognitive neuroscience , 2014, Nature Neuroscience.
[51] B. Miller,et al. Neurodegenerative Diseases Target Large-Scale Human Brain Networks , 2009, Neuron.
[52] S. Houle,et al. Contribution of insula in Parkinson's disease: A quantitative meta‐analysis study , 2016, Human brain mapping.
[53] Kuncheng Li,et al. Changes of functional connectivity of the motor network in the resting state in Parkinson's disease , 2009, Neuroscience Letters.
[54] S. Houle,et al. Salience network and parahippocampal dopamine dysfunction in memory‐impaired Parkinson disease , 2015, Annals of neurology.
[55] Alan C. Evans,et al. Age- and Gender-Related Differences in the Cortical Anatomical Network , 2009, The Journal of Neuroscience.
[56] C. Caltagirone,et al. Functional changes in the activity of cerebellum and frontostriatal regions during externally and internally timed movement in Parkinson's disease , 2006, Brain Research Bulletin.
[57] C. Stam. Modern network science of neurological disorders , 2014, Nature Reviews Neuroscience.
[58] K. Zilles,et al. A link between the systems: functional differentiation and integration within the human insula revealed by meta-analysis , 2010, Brain Structure and Function.
[59] Christophe Aubé,et al. The Presupplementary Area Within the Language Network: A Resting State Functional Magnetic Resonance Imaging Functional Connectivity Analysis , 2014, Brain Connect..
[60] J. Tanji,et al. Spatial distribution of cingulate cells projecting to the primary, supplementary, and pre-supplementary motor areas: a retrograde multiple labeling study in the macaque monkey , 2001, Neuroscience Research.
[61] H. Berendse,et al. Impaired planning in Parkinson's disease is reflected by reduced brain activation and connectivity , 2015, Human brain mapping.
[62] Adeel Razi,et al. Selective vulnerability of Rich Club brain regions is an organizational principle of structural connectivity loss in Huntington’s disease , 2015, Brain : a journal of neurology.
[63] R. Passingham,et al. Medial frontal cortex: from self-generated action to reflection on one's own performance , 2010, Trends in Cognitive Sciences.
[64] Thomas Foltynie,et al. Parkinson’s disease dementia: a neural networks perspective , 2015, Brain : a journal of neurology.
[65] S. Houle,et al. Combined insular and striatal dopamine dysfunction are associated with executive deficits in Parkinson's disease with mild cognitive impairment. , 2014, Brain : a journal of neurology.
[66] L. Timmermann,et al. A systematic review on the applications of resting-state fMRI in Parkinson's disease: Does dopamine replacement therapy play a role? , 2015, Cortex.
[67] O. Sporns,et al. Identification and Classification of Hubs in Brain Networks , 2007, PloS one.