Differences in feedback- and inhibition-related neural activity in adult ADHD
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[1] V. Calhoun,et al. Brain network dynamics during error commission , 2009, Human brain mapping.
[2] S. A. R. B. Rombouts,et al. Separable neural mechanisms contribute to feedback processing in a rule-learning task , 2008, Neuropsychologia.
[3] Chaozhe Zhu,et al. Alerting deficits in children with attention deficit/hyperactivity disorder: Event-related fMRI evidence , 2008, Brain Research.
[4] J. Pekar,et al. Meta-analysis of Go/No-go tasks demonstrating that fMRI activation associated with response inhibition is task-dependent , 2008, Neuropsychologia.
[5] R. Schachar,et al. Dissociation of response inhibition and performance monitoring in the stop signal task using event‐related fMRI , 2007, Human brain mapping.
[6] M. Brammer,et al. Linear age‐correlated functional development of right inferior fronto‐striato‐cerebellar networks during response inhibition and anterior cingulate during error‐related processes , 2007, Human brain mapping.
[7] Brian Knutson,et al. Ventral Striatal Hyporesponsiveness During Reward Anticipation in Attention-Deficit/Hyperactivity Disorder , 2007, Biological Psychiatry.
[8] S. Pliszka,et al. Pharmacologic Treatment of Attention-Deficit/Hyperactivity Disorder: Efficacy, Safety and Mechanisms of Action , 2007, Neuropsychology Review.
[9] Eveline A. Crone,et al. Neural correlates of developmental differences in risk estimation and feedback processing , 2006, Neuropsychologia.
[10] B. J. Casey,et al. Activation in Ventral Prefrontal Cortex is Sensitive to Genetic Vulnerability for Attention-Deficit Hyperactivity Disorder , 2006, Biological Psychiatry.
[11] J. R. Wiersema,et al. ADHD and delay aversion: the influence of non-temporal stimulation on choice for delayed rewards. , 2006, Journal of child psychology and psychiatry, and allied disciplines.
[12] Mitsuo Kawato,et al. Heterarchical reinforcement-learning model for integration of multiple cortico-striatal loops: fMRI examination in stimulus-action-reward association learning , 2006, Neural Networks.
[13] J. Thome,et al. Anatomical and functional brain imaging in adult attention-deficit/hyperactivity disorder (ADHD)—A neurological view , 2006, European Archives of Psychiatry and Clinical Neuroscience.
[14] J. Schweitzer,et al. Is there evidence for neural compensation in attention deficit hyperactivity disorder? A review of the functional neuroimaging literature. , 2006, Clinical psychology review.
[15] J. Jolles,et al. The effect of acute tryptophan depletion on the BOLD response during performance monitoring and response inhibition in healthy male volunteers , 2006, Psychopharmacology.
[16] Gereon R. Fink,et al. Dysfunctional Attentional Networks in Children with Attention Deficit/Hyperactivity Disorder: Evidence from an Event-Related Functional Magnetic Resonance Imaging Study , 2006, Biological Psychiatry.
[17] D. Bridgett,et al. Intellectual functioning in adults with ADHD: a meta-analytic examination of full scale IQ differences between adults with and without ADHD. , 2006, Psychological assessment.
[18] M. Kawato,et al. Different neural correlates of reward expectation and reward expectation error in the putamen and caudate nucleus during stimulus-action-reward association learning. , 2006, Journal of neurophysiology.
[19] J. Sergeant,et al. Telling good from bad news: ADHD differentially affects processing of positive and negative feedback during guessing , 2005, Neuropsychologia.
[20] B. Pennington,et al. Validity of the Executive Function Theory of Attention-Deficit/Hyperactivity Disorder: A Meta-Analytic Review , 2005, Biological Psychiatry.
[21] G. Bush,et al. Functional Neuroimaging of Attention-Deficit/Hyperactivity Disorder: A Review and Suggested Future Directions , 2005, Biological Psychiatry.
[22] V. Russell,et al. A dynamic developmental theory of attention-deficit/hyperactivity disorder (ADHD) predominantly hyperactive/impulsive and combined subtypes. , 2005, The Behavioral and brain sciences.
[23] Jaap Oosterlaan,et al. The impact of reinforcement contingencies on AD/HD: a review and theoretical appraisal. , 2005, Clinical psychology review.
[24] K. R. Ridderinkhof,et al. Neurocognitive mechanisms of cognitive control: The role of prefrontal cortex in action selection, response inhibition, performance monitoring, and reward-based learning , 2004, Brain and Cognition.
[25] Vinod Menon,et al. Event-related FMRI evidence of frontotemporal involvement in aberrant response inhibition and task switching in attention-deficit/hyperactivity disorder. , 2004, Journal of the American Academy of Child and Adolescent Psychiatry.
[26] K. R. Ridderinkhof,et al. The Role of the Medial Frontal Cortex in Cognitive Control , 2004, Science.
[27] Jin Fan,et al. Response inhibition in adolescents diagnosed with attention deficit hyperactivity disorder during childhood: an event-related FMRI study. , 2004, The American journal of psychiatry.
[28] J. Epstein,et al. Neuropsychology of adults with attention-deficit/hyperactivity disorder: a meta-analytic review. , 2004, Neuropsychology.
[29] Karl J. Friston,et al. Dissociable Roles of Ventral and Dorsal Striatum in Instrumental Conditioning , 2004, Science.
[30] M. Delgado,et al. Modulation of Caudate Activity by Action Contingency , 2004, Neuron.
[31] E. Sonuga-Barke,et al. The dual pathway model of AD/HD: an elaboration of neuro-developmental characteristics , 2003, Neuroscience & Biobehavioral Reviews.
[32] H. Geurts,et al. The top and the bottom of ADHD: a neuropsychological perspective , 2003, Neuroscience & Biobehavioral Reviews.
[33] M. Ernst,et al. Neural substrates of decision making in adults with attention deficit hyperactivity disorder. , 2003, The American journal of psychiatry.
[34] R. Gomez. Underlying processes in the poor response inhibition of children with Attention-Deficit/Hyperactivity Disorder , 2003, Journal of attention disorders.
[35] 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.
[36] Brian Knutson,et al. Anticipation of Increasing Monetary Reward Selectively Recruits Nucleus Accumbens , 2001, The Journal of Neuroscience.
[37] G. Glover,et al. Error‐related brain activation during a Go/NoGo response inhibition task , 2001, Human brain mapping.
[38] E. Bullmore,et al. Mapping Motor Inhibition: Conjunctive Brain Activations across Different Versions of Go/No-Go and Stop Tasks , 2001, NeuroImage.
[39] Karl J. Friston,et al. Dissociable Neural Responses in Human Reward Systems , 2000, The Journal of Neuroscience.
[40] R. Barkley,et al. Genetics of Childhood Disorders: XVII. ADHD, Part 1: The Executive Functions and ADHD , 2000 .
[41] A. Sirigu,et al. Differential amygdala responses to winning and losing: a functional magnetic resonance imaging study in humans , 2000, The European journal of neuroscience.
[42] E. Stein,et al. Right hemispheric dominance of inhibitory control: an event-related functional MRI study. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[43] S. Rauch,et al. Anterior cingulate cortex dysfunction in attention-deficit/hyperactivity disorder revealed by fMRI and the counting stroop , 1999, Biological Psychiatry.
[44] Alan S. Kaufman,et al. Essentials of WAIS -III Assessment , 1999 .
[45] G H Glover,et al. Selective effects of methylphenidate in attention deficit hyperactivity disorder: a functional magnetic resonance study. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[46] S. Faraone,et al. Neuropsychological function in adults with attention-deficit hyperactivity disorder , 1998, Biological Psychiatry.
[47] E. Braaten,et al. Emotional reactions in adults with symptoms of attention deficit hyperactivity disorder , 1997 .
[48] V. Douglas,et al. Effects of reward and nonreward on frustration and attention in attention deficit disorder , 1994, Journal of abnormal child psychology.
[49] M. Torrens. Co-Planar Stereotaxic Atlas of the Human Brain—3-Dimensional Proportional System: An Approach to Cerebral Imaging, J. Talairach, P. Tournoux. Georg Thieme Verlag, New York (1988), 122 pp., 130 figs. DM 268 , 1990 .
[50] W. F. Caul,et al. Attention deficit disorder with hyperactivity: a specific hypothesis of reward dysfunction. , 1987, Journal of the American Academy of Child and Adolescent Psychiatry.
[51] Jinhu Xiong,et al. Neuroimaging of inhibitory control areas in children with attention deficit hyperactivity disorder who were treatment naive or in long-term treatment. , 2006, The American journal of psychiatry.
[52] Sarah Durston,et al. A review of the biological bases of ADHD: what have we learned from imaging studies? , 2003, Mental retardation and developmental disabilities research reviews.
[53] Kevin R. Murphy,et al. Attention-deficit hyperactivity disorder: A clinical workbook, 2nd ed. , 1998 .
[54] R. Barkley. Behavioral inhibition, sustained attention, and executive functions: constructing a unifying theory of ADHD. , 1997, Psychological bulletin.
[55] Dc Washington. Diagnostic and Statistical Manual of Mental Disorders, 4th Ed. , 1994 .
[56] Kevin R. Murphy,et al. Attention-deficit hyperactivity disorder : a clinical workbook , 1991 .