Altered Global Signal Topography and Its Different Regional Localization in Motor Cortex and Hippocampus in Mania and Depression.
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Georg Northoff | Zhiguo Hu | Matilde Inglese | Matteo Martino | Zirui Huang | G. Northoff | M. Amore | M. Inglese | B. Conio | M. Martino | P. Magioncalda | Zhiguo Hu | Zirui Huang | Jianfeng Zhang | Zhonglin Tan | Benedetta Conio | Paola Magioncalda | Mario Amore | Jianfeng Zhang | Zhonglin Tan | Xiwen Hu | Xiwen Hu | Matteo Martino
[1] Robert Leech,et al. Functional connectivity measures after psilocybin inform a novel hypothesis of early psychosis. , 2013, Schizophrenia bulletin.
[2] J. Gore,et al. Amygdala and hippocampal volumes in adolescents and adults with bipolar disorder. , 2003, Archives of general psychiatry.
[3] Anderson M. Winkler,et al. Global Prefrontal and Fronto-Amygdala Dysconnectivity in Bipolar I Disorder with Psychosis History , 2013, Biological Psychiatry.
[4] G. Northoff. Spatiotemporal psychopathology I: No rest for the brain's resting state activity in depression? Spatiotemporal psychopathology of depressive symptoms. , 2016, Journal of affective disorders.
[5] G. Pearlson,et al. Ventral anterior cingulate connectivity distinguished nonpsychotic bipolar illness from psychotic bipolar disorder and schizophrenia. , 2015, Schizophrenia bulletin.
[6] John H Krystal,et al. Functional hierarchy underlies preferential connectivity disturbances in schizophrenia , 2015, Proceedings of the National Academy of Sciences.
[7] Georg Northoff,et al. Contrasting variability patterns in the default mode and sensorimotor networks balance in bipolar depression and mania , 2016, Proceedings of the National Academy of Sciences.
[8] Kevin Murphy,et al. Towards a consensus regarding global signal regression for resting state functional connectivity MRI , 2017, NeuroImage.
[9] G. Pearlson,et al. Altered Global Signal Topography in Schizophrenia , 2016, Cerebral cortex.
[10] Georg Northoff,et al. Is subcortical–cortical midline activity in depression mediated by glutamate and GABA? A cross-species translational approach , 2010, Neuroscience & Biobehavioral Reviews.
[11] Flávio Kapczinski,et al. The role of hippocampus in the pathophysiology of bipolar disorder , 2007, Behavioural pharmacology.
[12] M. Schölvinck,et al. Neural basis of global resting-state fMRI activity , 2010, Proceedings of the National Academy of Sciences.
[13] N. Kanwisher,et al. The Fusiform Face Area: A Module in Human Extrastriate Cortex Specialized for Face Perception , 1997, The Journal of Neuroscience.
[14] J. Panksepp,et al. The ‘resting-state hypothesis’ of major depressive disorder—A translational subcortical–cortical framework for a system disorder , 2011, Neuroscience & Biobehavioral Reviews.
[15] Martin P Paulus,et al. The quantitative assessment of motor activity in mania and schizophrenia. , 2010, Journal of affective disorders.
[16] Danielle S Bassett,et al. The Role of Intrinsic Brain Functional Connectivity in Vulnerability and Resilience to Bipolar Disorder. , 2017, The American journal of psychiatry.
[17] Georg Northoff,et al. Psychopathology and pathophysiology of the self in depression - neuropsychiatric hypothesis. , 2007, Journal of affective disorders.
[18] G. Northoff,et al. Abnormal functional–structural cingulum connectivity in mania: combined functional magnetic resonance imaging‐diffusion tensor imaging investigation in different phases of bipolar disorder , 2016, Acta psychiatrica Scandinavica.
[19] M. Fox,et al. The global signal and observed anticorrelated resting state brain networks. , 2009, Journal of neurophysiology.
[20] Matteo Pardini,et al. Functional connectivity and neuronal variability of resting state activity in bipolar disorder—reduction and decoupling in anterior cortical midline structures , 2015, Human brain mapping.
[21] J. Andrews-Hanna,et al. Large-Scale Network Dysfunction in Major Depressive Disorder: A Meta-analysis of Resting-State Functional Connectivity. , 2015, JAMA psychiatry.
[22] S. Whitfield-Gabrieli,et al. Dynamic Resting-State Functional Connectivity in Major Depression , 2016, Neuropsychopharmacology.
[23] Georg Northoff,et al. The brain's spontaneous activity and its psychopathological symptoms – “Spatiotemporal binding and integration” , 2018, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[24] Michael W. Cole,et al. Altered global brain signal in schizophrenia , 2014, Proceedings of the National Academy of Sciences.
[25] Timothy O. Laumann,et al. Sources and implications of whole-brain fMRI signals in humans , 2017, NeuroImage.
[26] M. Bar,et al. Cortical Mechanisms Specific to Explicit Visual Object Recognition , 2001, Neuron.
[27] Kevin Murphy,et al. Neural correlates of the LSD experience revealed by multimodal neuroimaging , 2016, Proceedings of the National Academy of Sciences.
[28] Xi-Nian Zuo,et al. REST: A Toolkit for Resting-State Functional Magnetic Resonance Imaging Data Processing , 2011, PloS one.
[29] C. Brewin,et al. Autobiographical memory processes and the course of depression. , 1999, Journal of abnormal psychology.
[30] G. Northoff. Spatiotemporal Psychopathology II: How does a psychopathology of the brain's resting state look like? Spatiotemporal approach and the history of psychopathology. , 2016, Journal of affective disorders.
[31] Hang Joon Jo,et al. The perils of global signal regression for group comparisons: a case study of Autism Spectrum Disorders , 2013, Front. Hum. Neurosci..
[32] Abraham Z. Snyder,et al. Spurious but systematic correlations in functional connectivity MRI networks arise from subject motion , 2012, NeuroImage.
[33] R W Cox,et al. AFNI: software for analysis and visualization of functional magnetic resonance neuroimages. , 1996, Computers and biomedical research, an international journal.
[34] Jacob Cohen. Statistical Power Analysis , 1992 .
[35] G. Dragoi,et al. Impaired Tuning of Neural Ensembles and the Pathophysiology of Schizophrenia: A Translational and Computational Neuroscience Perspective , 2017, Biological Psychiatry.
[36] C. Lake. Disorders of Thought Are Severe Mood Disorders: the Selective Attention Defect in Mania Challenges the Kraepelinian Dichotomy—A Review , 2007 .
[37] Hang Joon Jo,et al. Trouble at Rest: How Correlation Patterns and Group Differences Become Distorted After Global Signal Regression , 2012, Brain Connect..
[38] Nancy Kanwisher,et al. A cortical representation of the local visual environment , 1998, Nature.
[39] L. Parsons,et al. Reciprocal limbic-cortical function and negative mood: converging PET findings in depression and normal sadness. , 1999, The American journal of psychiatry.
[40] Georg Northoff,et al. How do abnormalities in the brain’s spontaneous activity translate into symptoms in schizophrenia? From an overview of resting state activity findings to a proposed spatiotemporal psychopathology , 2016, Progress in Neurobiology.
[41] G. Northoff,et al. Altered temporal variance and neural synchronization of spontaneous brain activity in anesthesia , 2014, Human brain mapping.
[42] A. Wells,et al. Intrusive images and memories in major depression. , 2007, Behaviour research and therapy.
[43] M. Schölvinck,et al. Subcortical evidence for a contribution of arousal to fMRI studies of brain activity , 2018, Nature Communications.
[44] Ann K. Shinn,et al. Default mode network abnormalities in bipolar disorder and schizophrenia , 2010, Psychiatry Research: Neuroimaging.
[45] Walter Schneider,et al. Identifying the brain's most globally connected regions , 2010, NeuroImage.
[46] Arno Villringer,et al. Identifying the perfusion deficit in acute stroke with resting‐state functional magnetic resonance imaging , 2013, Annals of neurology.
[47] H. Eichenbaum. Time cells in the hippocampus: a new dimension for mapping memories , 2014, Nature Reviews Neuroscience.
[48] Troy A. Smith,et al. Human hippocampus represents space and time during retrieval of real-world memories , 2015, Proceedings of the National Academy of Sciences.