How does the corpus callosum mediate interhemispheric transfer? A review
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[1] A. Pascual-Leone,et al. Neuronavigation Increases the Physiologic and Behavioral Effects of Low-Frequency rTMS of Primary Motor Cortex in Healthy Subjects , 2011, Brain Topography.
[2] Robert Chen,et al. Cortical excitability and interhemispheric inhibition after subcortical pediatric stroke: Plastic organization and effects of rTMS , 2010, Clinical Neurophysiology.
[3] David Hecht,et al. Depression and the hyperactive right-hemisphere , 2010, Neuroscience Research.
[4] G. Gualdi,et al. Corpus callosum abnormalities and potential age effect in men with schizophrenia: An MRI comparative study , 2010, Psychiatry Research: Neuroimaging.
[5] Y. Duan,et al. Detecting corpus callosum abnormalities in autism based on anatomical landmarks , 2010, Psychiatry Research: Neuroimaging.
[6] A. Toga,et al. The Development of the Corpus Callosum in the Healthy Human Brain , 2010, The Journal of Neuroscience.
[7] B. Xie,et al. Voxel-based analysis of white matter during adolescence and young adulthood , 2010, Brain and Development.
[8] C. Pantelis,et al. Corpus callosum morphology and relationship to orbitofrontal and lateral ventricular volume in teenagers with first-presentation borderline personality disorder , 2010, Psychiatry Research: Neuroimaging.
[9] S. Rombouts,et al. Frontiers in Systems Neuroscience Systems Neuroscience , 2022 .
[10] Kwang-Soo Lee,et al. Callosal alien hand sign following a right parietal lobe infarction , 2010, Journal of Clinical Neuroscience.
[11] Charles Raybaud,et al. The corpus callosum, the other great forebrain commissures, and the septum pellucidum: anatomy, development, and malformation , 2010, Neuroradiology.
[12] E. Müller-Oehring,et al. Contribution of Callosal Connections to the Interhemispheric Integration of Visuomotor and Cognitive Processes , 2010, Neuropsychology Review.
[13] Rachael D. Seidler,et al. Frontiers in Systems Neuroscience Systems Neuroscience , 2022 .
[14] Yufeng Zang,et al. The macrostructural and microstructural abnormalities of corpus callosum in children with attention deficit/hyperactivity disorder: A combined morphometric and diffusion tensor MRI study , 2010, Brain Research.
[15] A case of the corpus callosum and alien hand syndrome from a discrete paracallosal lesion , 2010, Neurocase.
[16] Masahito Kobayashi,et al. Effect of slow repetitive TMS of the motor cortex on ipsilateral sequential simple finger movements and motor skill learning. , 2010, Restorative neurology and neuroscience.
[17] Culum Brown,et al. Laterality enhances cognition in Australian parrots , 2009, Proceedings of the Royal Society B: Biological Sciences.
[18] S. Frangou,et al. Corpus callosum size and shape alterations in individuals with bipolar disorder and their first-degree relatives , 2009, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[19] M. Yücel,et al. Corpus Callosum Size and Shape in Established Bipolar Affective Disorder , 2009, The Australian and New Zealand journal of psychiatry.
[20] L. Martí-Bonmatí,et al. Corpus callosum function in verbal dichotic listening: Inferences from a longitudinal follow-up of Relapsing-Remitting Multiple Sclerosis patients , 2009, Brain and Language.
[21] David C. Reutens,et al. Corpus callosum size and shape in first-episode affective and schizophrenia-spectrum psychosis , 2009, Psychiatry Research: Neuroimaging.
[22] A. Pristerá,et al. Modulation of Caspase Activity Regulates Skeletal Muscle Regeneration and Function in Response to Vasopressin and Tumor Necrosis Factor , 2009, PloS one.
[23] Onur Güntürkün,et al. When One Hemisphere Takes Control: Metacontrol in Pigeons (Columba livia) , 2009, PloS one.
[24] A. Pfefferbaum,et al. Global-local interference is related to callosal compromise in alcoholism: a behavior-DTI association study. , 2009, Alcoholism, clinical and experimental research.
[25] J. Gabrieli,et al. Hyperactivity and hyperconnectivity of the default network in schizophrenia and in first-degree relatives of persons with schizophrenia , 2009, Proceedings of the National Academy of Sciences.
[26] Á. Pascual-Leone,et al. A Review of Combined TMS-EEG Studies to Characterize Lasting Effects of Repetitive TMS and Assess Their Usefulness in Cognitive and Clinical Neuroscience , 2009, Brain Topography.
[27] X. Min,et al. A MRI quantitative study of corpus callosum in normal adults , 2008 .
[28] M. Glickstein,et al. K.M. Bykov and transfer between the hemispheres , 2008, Brain Research Bulletin.
[29] Mitchell Glickstein,et al. Classical disconnection studies of the corpus callosum , 2008, Cortex.
[30] Larry A. Kramer,et al. Diffusion tensor quantification of the human midsagittal corpus callosum subdivisions across the lifespan , 2008, Brain Research.
[31] Kenneth Hugdahl,et al. The corpus callosum in dichotic listening studies of hemispheric asymmetry: A review of clinical and experimental evidence , 2008, Neuroscience & Biobehavioral Reviews.
[32] G. Vingerhoets,et al. Diffusion weighted callosal integrity reflects interhemispheric communication efficiency in multiple sclerosis , 2008, Neuropsychologia.
[33] Suzanne E. Welcome,et al. How dynamic is interhemispheric interaction? Effects of task switching on the across-hemisphere advantage , 2008, Brain and Cognition.
[34] Dennis Velakoulis,et al. Morphology of the corpus callosum at different stages of schizophrenia: cross-sectional study in first-episode and chronic illness. , 2008, The British journal of psychiatry : the journal of mental science.
[35] M. Banich,et al. Corpus callosum morphology in children and adolescents with attention deficit hyperactivity disorder: a meta-analytic review. , 2008, Neuropsychology.
[36] Klaus P. Ebmeier,et al. Meta-analysis of magnetic resonance imaging studies of the corpus callosum in schizophrenia , 2008, Schizophrenia Research.
[37] Scott T. Grafton,et al. Structural Organization of the Corpus Callosum Predicts the Extent and Impact of Cortical Activity in the Nondominant Hemisphere , 2008, The Journal of Neuroscience.
[38] W. Perlstein,et al. Age-related changes in word retrieval: Role of bilateral frontal and subcortical networks , 2008, Neurobiology of Aging.
[39] E. Mooshagian,et al. Anatomy of the Corpus Callosum Reveals Its Function , 2008, The Journal of Neuroscience.
[40] Patrick Ragert,et al. Contribution of transcranial magnetic stimulation to the understanding of cortical mechanisms involved in motor control , 2008, The Journal of physiology.
[41] M. Glickstein. Paradoxical inter-hemispheric transfer after section of the cerebral commissures , 2008, Experimental Brain Research.
[42] J. Shim,et al. Hand digit control in children: motor overflow in multi-finger pressing force vector space during maximum voluntary force production , 2008, Experimental Brain Research.
[43] J. Klein,et al. Human Motor Corpus Callosum: Topography, Somatotopy, and Link between Microstructure and Function , 2007, The Journal of Neuroscience.
[44] J. R. Hughes. Autism: The first firm finding = underconnectivity? , 2007, Epilepsy & Behavior.
[45] A. Pfefferbaum,et al. Local–global interference is modulated by age, sex and anterior corpus callosum size , 2007, Brain Research.
[46] J. Bradshaw,et al. The effects of age and attention on motor overflow production—A review , 2007, Brain Research Reviews.
[47] M. Just,et al. Functional and anatomical cortical underconnectivity in autism: evidence from an FMRI study of an executive function task and corpus callosum morphometry. , 2007, Cerebral cortex.
[48] S. Scott,et al. Functional Integration across Brain Regions Improves Speech Perception under Adverse Listening Conditions , 2007, The Journal of Neuroscience.
[49] Ayse Aralasmak,et al. Association, Commissural, and Projection Pathways and Their Functional Deficit Reported in Literature , 2006, Journal of computer assisted tomography.
[50] Jens Frahm,et al. Topography of the human corpus callosum revisited—Comprehensive fiber tractography using diffusion tensor magnetic resonance imaging , 2006, NeuroImage.
[51] Paul M. Thompson,et al. Mapping Corpus Callosum Deficits in Autism: An Index of Aberrant Cortical Connectivity , 2006, Biological Psychiatry.
[52] Jonas Persson,et al. Structure-function correlates of cognitive decline in aging. , 2006, Cerebral cortex.
[53] Paul M. Matthews,et al. Loss of interhemispheric inhibition in patients with multiple sclerosis is related to corpus callosum atrophy , 2006, Experimental Brain Research.
[54] M. Corballis,et al. Sound lateralization in subjects with callosotomy, callosal agenesis, or hemispherectomy. , 2005, Brain research. Cognitive brain research.
[55] E. Sullivan,et al. Corpus callosal microstructural integrity influences interhemispheric processing: a diffusion tensor imaging study. , 2005, Cerebral cortex.
[56] M. Gazzaniga. Forty-five years of split-brain research and still going strong , 2005, Nature Reviews Neuroscience.
[57] C. Urgesi,et al. Hemispheric metacontrol and cerebral dominance in healthy individuals investigated by means of chimeric faces. , 2005, Brain research. Cognitive brain research.
[58] Gabriele Polonara,et al. Contribution of posterior corpus callosum to the interhemispheric transfer of tactile information. , 2005, Brain research. Cognitive brain research.
[59] G. Hynd,et al. The Role of the Corpus Callosum in Interhemispheric Transfer of Information: Excitation or Inhibition? , 2005, Neuropsychology Review.
[60] S. Buklina. The corpus callosum, interhemisphere interactions, and the function of the right hemisphere of the brain , 2005, Neuroscience and Behavioral Physiology.
[61] Michael S. Gazzaniga,et al. Functional Connectivity: Integrating Behavioral, Diffusion Tensor Imaging, and Functional Magnetic Resonance Imaging Data Sets , 2005, Journal of Cognitive Neuroscience.
[62] Y. Kawaguchi. Receptor subtypes involved in callosally-induced postsynaptic potentials in rat frontal agranular cortex in vitro , 2005, Experimental Brain Research.
[63] A Pfefferbaum,et al. Parallel interhemispheric processing in aging and alcoholism: relation to corpus callosum size , 2004, Neuropsychologia.
[64] John L. Bradshaw,et al. Investigating the cortical origins of motor overflow , 2004, Brain Research Reviews.
[65] M. Just,et al. Cortical activation and synchronization during sentence comprehension in high-functioning autism: evidence of underconnectivity. , 2004, Brain : a journal of neurology.
[66] Geoff J. M. Parker,et al. Characterizing function–structure relationships in the human visual system with functional MRI and diffusion tensor imaging , 2004, NeuroImage.
[67] Y. Hirashima,et al. Determination of indices of the corpus callosum associated with normal aging in Japanese individuals , 2003, Neuroradiology.
[68] F. Aboitiz,et al. One hundred million years of interhemispheric communication: the history of the corpus callosum. , 2003, Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas.
[69] Á. Pascual-Leone,et al. Transcranial magnetic stimulation in neurology , 2003, The Lancet Neurology.
[70] Robert Chen,et al. Interactions between inhibitory and excitatory circuits in the human motor cortex , 2003, Experimental Brain Research.
[71] N. Minshew,et al. Corpus callosum size in autism , 2000, Neurology.
[72] P. Matthews,et al. Regional axonal loss in the corpus callosum correlates with cerebral white matter lesion volume and distribution in multiple sclerosis. , 2000, Brain : a journal of neurology.
[73] L. Galli-Resta,et al. The Dynamics of Neuronal Death: A Time-Lapse Study in the Retina , 2000, The Journal of Neuroscience.
[74] M. Gazzaniga. Cerebral specialization and interhemispheric communication: does the corpus callosum enable the human condition? , 2000, Brain : a journal of neurology.
[75] Michael B. Miller,et al. The Left Hemisphere's Role in Hypothesis Formation , 2000, The Journal of Neuroscience.
[76] M. Gazzaniga,et al. Reflexive Joint Attention Depends on Lateralized Cortical Connections , 2000, Psychological science.
[77] Michael S. Gazzaniga,et al. Direction information coordinated via the posterior third of the corpus callosum during bimanual movements , 1999, Experimental Brain Research.
[78] Mitchell Glickstein,et al. Visual control of the arm, the wrist and the fingers: pathways through the brain , 1998, Neuropsychologia.
[79] Jacqueline Liederman,et al. The Dynamics of Interhemispheric Collaboration and Hemispheric Control , 1998, Brain and Cognition.
[80] M. Banich. The Missing Link: The Role of Interhemispheric Interaction in Attentional Processing , 1998, Brain and Cognition.
[81] L. Harrison,et al. Mirror movements in X-linked Kallmann's syndrome. I. A neurophysiological study. , 1997, Brain : a journal of neurology.
[82] D. Salat,et al. Sex Differences in the Corpus Callosum With Aging , 1997, Neurobiology of Aging.
[83] Edward E. Smith,et al. A Parametric Study of Prefrontal Cortex Involvement in Human Working Memory , 1996, NeuroImage.
[84] M. Gazzaniga,et al. Dissociation of Spatial and Temporal Coupling in the Bimanual Movements of Callosotomy Patients , 1996 .
[85] J. Jonides,et al. Dissociating verbal and spatial working memory using PET. , 1996, Cerebral cortex.
[86] M. Lassonde,et al. Extent and limits of callosal plasticity: Presence of disconnection symptoms in callosal agenesis , 1995, Neuropsychologia.
[87] B. Peterson,et al. Functional significance of individual variations in callosal area , 1995, Neuropsychologia.
[88] M. Lezak. Neuropsychological assessment, 3rd ed. , 1995 .
[89] E. Zaidel,et al. Anatomical-behavioral relationships: Corpus callosum morphometry and hemispheric specialization , 1994, Behavioural Brain Research.
[90] G. Geffen,et al. Interhemispheric control of manual motor activity , 1994, Behavioural Brain Research.
[91] F. Conti,et al. The neurotransmitters and postsynaptic actions of callosally projecting neurons , 1994, Behavioural Brain Research.
[92] A. David,et al. Schizophrenia and the corpus callosum: Developmental, structural and functional relationships , 1994, Behavioural Brain Research.
[93] C. Marsden,et al. Corticocortical inhibition in human motor cortex. , 1993, The Journal of physiology.
[94] A. Scheibel,et al. Fiber composition of the human corpus callosum , 1992, Brain Research.
[95] A. Scheibel,et al. Individual differences in brain asymmetries and fiber composition in the human corpus callosum , 1992, Brain Research.
[96] B. Day,et al. Interhemispheric inhibition of the human motor cortex. , 1992, The Journal of physiology.
[97] N C Andreasen,et al. Developmental abnormalities of the corpus callosum in schizophrenia. , 1990, Archives of neurology.
[98] Interhemispheric interaction when both hemispheres have access to the same stimulus information , 1989 .
[99] S. F. Witelson. Hand and sex differences in the isthmus and genu of the human corpus callosum. A postmortem morphological study. , 1989, Brain : a journal of neurology.
[100] M. Lassonde,et al. Intra- and interhemispheric processing of visual information in callosal agenesis , 1983, Neuropsychologia.
[101] C. Trevarthen,et al. Metacontrol of hemispheric function in human split-brain patients. , 1976, Journal of experimental psychology. Human perception and performance.
[102] R W Sperry,et al. Reception of bilateral chimeric figures following hemispheric deconnexion. , 1972, Brain : a journal of neurology.
[103] M. Gazzaniga. Interhemispheric communication of visual learning , 1966 .
[104] Michael S. Gazzaniga,et al. Laterality effects in somesthesis following cerebral commissurotomy in man , 1963 .
[105] R. Sperry,et al. Intermanual somesthetic transfer in split-brain Rhesus monkeys. , 1960, Journal of comparative and physiological psychology.
[106] R. Sperry,et al. Function of corpus callosum in contralateral transfer of somesthetic discrimination in cats. , 1957, Journal of comparative and physiological psychology.
[107] William P. Van Wagenen,et al. SURGICAL DIVISION OF COMMISSURAL PATHWAYS IN THE CORPUS CALLOSUM: RELATION TO SPREAD OF AN EPILEPTIC ATTACK , 1940 .