Increase of posterior connectivity in aging within the Ventral Attention Network: A functional connectivity analysis using independent component analysis
暂无分享,去创建一个
Guillaume Marrelec | Yves Joanette | Jennyfer Ansado | G. Marrelec | Y. Joanette | J. Provost | J. Deslauriers | J. Ansado | Jean-Sébastien Provost | Johnathan Deslauriers
[1] David J. Madden,et al. Functional brain connectivity and cognition: effects of adult age and task demands , 2013, Neurobiology of Aging.
[2] O. Monchi,et al. Coping with task demand in aging using neural compensation and neural reserve triggers primarily intra-hemispheric-based neurofunctional reorganization , 2013, Neuroscience Research.
[3] David J. Madden,et al. Brain Connectivity and Visual Attention , 2013, Brain Connect..
[4] Juan Lupiáñez,et al. Two cognitive and neural systems for endogenous and exogenous spatial attention , 2013, Behavioural Brain Research.
[5] Michele T. Diaz,et al. Age mediation of frontoparietal activation during visual feature search , 2014, NeuroImage.
[6] A. Fleisher,et al. Attention‐related networks in Alzheimer's disease: A resting functional MRI study , 2012, Human brain mapping.
[7] S. Rombouts,et al. Reduced resting-state brain activity in the "default network" in normal aging. , 2008, Cerebral cortex.
[8] R. Nathan Spreng,et al. The Fallacy of a “Task-Negative” Network , 2012, Front. Psychology.
[9] Shanbao Tong,et al. Reorganization of Brain Networks in Aging and Age-related Diseases. , 2012, Aging and disease.
[10] Jon Driver,et al. Integration of Goal- and Stimulus-Related Visual Signals Revealed by Damage to Human Parietal Cortex , 2010, The Journal of Neuroscience.
[11] J. Binder,et al. A Parametric Manipulation of Factors Affecting Task-induced Deactivation in Functional Neuroimaging , 2003, Journal of Cognitive Neuroscience.
[12] John A. E. Anderson,et al. A multivariate analysis of age-related differences in default mode and task-positive networks across multiple cognitive domains. , 2010, Cerebral cortex.
[13] Justin L. Vincent,et al. Disruption of Large-Scale Brain Systems in Advanced Aging , 2007, Neuron.
[14] Thomas J. Ross,et al. Neuroanatomical dissociation between bottom–up and top–down processes of visuospatial selective attention , 2006, NeuroImage.
[15] Gereon R. Fink,et al. Dorsal and Ventral Attention Systems , 2014, The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry.
[16] S. Folstein,et al. "Mini-mental state". A practical method for grading the cognitive state of patients for the clinician. , 1975, Journal of psychiatric research.
[17] Justin L. Vincent,et al. Spontaneous neuronal activity distinguishes human dorsal and ventral attention systems. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[18] R. Ptak. The Frontoparietal Attention Network of the Human Brain , 2012, The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry.
[19] David J Madden,et al. Overriding age differences in attentional capture with top-down processing. , 2007, Psychology and aging.
[20] G. Tononi. Reentry and the problem of cortical integration. , 1994, International review of neurobiology.
[21] George R. Mangun,et al. Right temporoparietal junction activation by a salient contextual cue facilitates target discrimination , 2011, NeuroImage.
[22] E. Macaluso,et al. Dissociation of stimulus relevance and saliency factors during shifts of visuospatial attention. , 2007, Cerebral cortex.
[23] Habib Benali,et al. Regions, systems, and the brain: Hierarchical measures of functional integration in fMRI , 2008, Medical Image Anal..
[24] Habib Benali,et al. Default-mode network functional connectivity in aphasia: Therapy-induced neuroplasticity , 2013, Brain and Language.
[25] Aaron Kucyi,et al. Hemispheric Asymmetry in White Matter Connectivity of the Temporoparietal Junction with the Insula and Prefrontal Cortex , 2012, PloS one.
[26] L. Swan,et al. Unilateral spatial neglect. , 2001, Physical therapy.
[27] Karl J. Friston,et al. Deconstructing the Architecture of Dorsal and Ventral Attention Systems with Dynamic Causal Modeling , 2012, The Journal of Neuroscience.
[28] M. Corbetta,et al. Spatial neglect and attention networks. , 2011, Annual review of neuroscience.
[29] M. Corbetta,et al. The Reorienting System of the Human Brain: From Environment to Theory of Mind , 2008, Neuron.
[30] Carl D. Hacker,et al. Clustering of Resting State Networks , 2012, PloS one.
[31] M. Corbetta,et al. An Event-Related Functional Magnetic Resonance Imaging Study of Voluntary and Stimulus-Driven Orienting of Attention , 2005, The Journal of Neuroscience.
[32] Iain D Gilchrist,et al. Stimulus onsets and distraction in younger and older adults. , 2012, Psychology and aging.
[33] A. Zalesky,et al. Competitive and cooperative dynamics of large-scale brain functional networks supporting recollection , 2012, Proceedings of the National Academy of Sciences.
[34] N. Foldi,et al. The effect of attentional dysfunction in Alzheimer's disease: theoretical and practical implications. , 2002, Seminars in speech and language.
[35] David J. Madden,et al. Aging and Visual Attention , 2007, Current directions in psychological science.
[36] David J. Madden,et al. Age-related changes in visual attention , 2003 .
[37] Natasha M. Maurits,et al. Brain mechanisms underlying the effects of aging on different aspects of selective attention , 2014, NeuroImage.
[38] Erlend Hodneland,et al. Cortico-striatal connectivity and cognition in normal aging: A combined DTI and resting state fMRI study , 2011, NeuroImage.
[39] Argye E. Hillis,et al. Right hemispatial neglect: Frequency and characterization following acute left hemisphere stroke , 2007, Brain and Cognition.
[40] Matthew Rizzo,et al. Spatial attention: normal processes and their breakdown. , 2003, Neurologic clinics.
[41] R. Buxton,et al. Detection Power, Estimation Efficiency, and Predictability in Event-Related fMRI , 2001, NeuroImage.
[42] Eswar Damaraju,et al. Tracking whole-brain connectivity dynamics in the resting state. , 2014, Cerebral cortex.
[43] R. Cabeza,et al. Que PASA? The posterior-anterior shift in aging. , 2008, Cerebral cortex.
[44] Emiliano Macaluso,et al. Attention and predictions: control of spatial attention beyond the endogenous-exogenous dichotomy , 2013, Front. Hum. Neurosci..
[45] Guillaume Marrelec,et al. Contribution of Exploratory Methods to the Investigation of Extended Large-Scale Brain Networks in Functional MRI: Methodologies, Results, and Challenges , 2008, Int. J. Biomed. Imaging.
[46] Christine Bastin,et al. Cognitive reserve impacts on inter-individual variability in resting-state cerebral metabolism in normal aging , 2012, NeuroImage.
[47] Jessica R. Andrews-Hanna,et al. The Brain’s Default Network and Its Adaptive Role in Internal Mentation , 2012, The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry.
[48] M. Corbetta,et al. Control of goal-directed and stimulus-driven attention in the brain , 2002, Nature Reviews Neuroscience.
[49] Aapo Hyvärinen,et al. Independent component analysis of fMRI group studies by self-organizing clustering , 2005, NeuroImage.
[50] Rui Li,et al. Large-scale directional connections among multi resting-state neural networks in human brain: A functional MRI and Bayesian network modeling study , 2011, NeuroImage.
[51] N. Volkow,et al. Aging and Functional Brain Networks , 2011, Molecular Psychiatry.
[52] M. Corbetta,et al. Quantitative analysis of attention and detection signals during visual search. , 2003, Journal of neurophysiology.
[53] Faith M. Gunning-Dixon,et al. Neuroanatomical correlates of cognitive aging: evidence from structural magnetic resonance imaging. , 1998, Neuropsychology.
[54] Alejandro Lleras,et al. Trial History Effects in the Ventral Attentional Network , 2014, Journal of Cognitive Neuroscience.
[55] Michael Satosi Watanabe,et al. Information Theoretical Analysis of Multivariate Correlation , 1960, IBM J. Res. Dev..
[56] B. T. Thomas Yeo,et al. Estimates of segregation and overlap of functional connectivity networks in the human cerebral cortex , 2014, NeuroImage.
[57] A. Pfefferbaum,et al. Visual search and the aging brain: discerning the effects of age-related brain volume shrinkage on alertness, feature binding, and attentional control. , 2013, Neuropsychology.
[58] Yong He,et al. Aging-related changes in the default mode network and its anti-correlated networks: A resting-state fMRI study , 2011, Neuroscience Letters.
[59] Joaquín Goñi,et al. Changes in structural and functional connectivity among resting-state networks across the human lifespan , 2014, NeuroImage.
[60] X Hu,et al. Retrospective estimation and correction of physiological fluctuation in functional MRI , 1995, Magnetic resonance in medicine.
[61] D. Schacter,et al. The Brain's Default Network , 2008, Annals of the New York Academy of Sciences.
[62] F. Alary,et al. The adaptive aging brain: evidence from the preservation of communication abilities with age , 2013, The European journal of neuroscience.
[63] Biyu J. He,et al. Breakdown of Functional Connectivity in Frontoparietal Networks Underlies Behavioral Deficits in Spatial Neglect , 2007, Neuron.
[64] M. Corbetta,et al. Right Hemisphere Dominance during Spatial Selective Attention and Target Detection Occurs Outside the Dorsal Frontoparietal Network , 2010, The Journal of Neuroscience.