Structural Neuroplastic Responses Preserve Functional Connectivity and Neurobehavioural Outcomes in Children Born Without Corpus Callosum.
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D. Van de Ville | A. Wood | M. Spencer-Smith | V. Anderson | M. Preti | V. Kebets | R. Leventer | A. McIlroy | V. Siffredi | S. Obertino | A. Mcilroy
[1] P. Vuilleumier,et al. Anterior and posterior commissures in agenesis of the corpus callosum: Alternative pathways for attention processes? , 2019, Cortex.
[2] L. Uddin,et al. Brain functional connectivity in individuals with callosotomy and agenesis of the corpus callosum: A systematic review , 2019, Neuroscience & Biobehavioral Reviews.
[3] R. Poldrack,et al. Somatosensory-Motor Dysconnectivity Spans Multiple Transdiagnostic Dimensions of Psychopathology , 2019, Biological Psychiatry.
[4] F. I. Karahanoğlu,et al. Large-scale brain network dynamics provide a measure of psychosis and anxiety in 22q11.2 deletion syndrome , 2019, bioRxiv.
[5] W. Brown,et al. The Neuropsychological Syndrome of Agenesis of the Corpus Callosum , 2019, Journal of the International Neuropsychological Society.
[6] A. Wood,et al. A Neuropsychological Profile for Agenesis of the Corpus Callosum? Cognitive, Academic, Executive, Social, and Behavioral Functioning in School-Age Children , 2018, Journal of the International Neuropsychological Society.
[7] M. Raichle,et al. On the role of the corpus callosum in interhemispheric functional connectivity in humans , 2017, Proceedings of the National Academy of Sciences.
[8] Maria Giulia Preti,et al. Dynamics of functional connectivity at high spatial resolution reveal long-range interactions and fine-scale organization , 2017, Scientific Reports.
[9] P. Barrouillet,et al. Examining distinct working memory processes in children and adolescents using fMRI: Results and validation of a modified Brown-Peterson paradigm , 2017, PloS one.
[10] Kaarin J Anstey,et al. More highly myelinated white matter tracts are associated with faster processing speed in healthy adults , 2017, NeuroImage.
[11] W. Brown,et al. Emotional Intelligence in Agenesis of the Corpus Callosum , 2017, Archives of clinical neuropsychology : the official journal of the National Academy of Neuropsychologists.
[12] M. Shiflett,et al. Functions of Neuropilins in Wiring the Nervous System and Their Role in Neurological Disorders , 2017 .
[13] E. Adiguzel,et al. Partial corpus callosum agenesis and colpocephaly: a case report* , 2016 .
[14] C. Milleret,et al. Interhemispheric Connections between the Primary Visual Cortical Areas via the Anterior Commissure in Human Callosal Agenesis , 2016, Frontiers in Systems Neuroscience.
[15] Yu Zhang,et al. The Human Brainnetome Atlas: A New Brain Atlas Based on Connectional Architecture , 2016, Cerebral cortex.
[16] W. Brown,et al. Learning and memory in individuals with agenesis of the corpus callosum , 2016, Neuropsychologia.
[17] Mohamed Thahir,et al. Schizophrenia interactome with 504 novel protein–protein interactions , 2016, npj Schizophrenia.
[18] Georg Langs,et al. Disrupted developmental organization of the structural connectome in fetuses with corpus callosum agenesis , 2015, NeuroImage.
[19] C. C. Wolf,et al. Functional cerebral lateralization and interhemispheric interaction in patients with callosal agenesis. , 2015, Neuropsychology.
[20] Shun-ying Yu,et al. Synaptic proteins and receptors defects in autism spectrum disorders , 2014, Front. Cell. Neurosci..
[21] W. Brown,et al. Verbal learning and memory in agenesis of the corpus callosum , 2014, Neuropsychologia.
[22] Timothy E. J. Behrens,et al. Structural and functional brain rewiring clarifies preserved interhemispheric transfer in humans born without the corpus callosum , 2014, Proceedings of the National Academy of Sciences.
[23] A James Barkovich,et al. Clinical, genetic and imaging findings identify new causes for corpus callosum development syndromes. , 2014, Brain : a journal of neurology.
[24] Timothy O. Laumann,et al. Methods to detect, characterize, and remove motion artifact in resting state fMRI , 2014, NeuroImage.
[25] Julia P. Owen,et al. Resting-State Networks and the Functional Connectome of the Human Brain in Agenesis of the Corpus Callosum , 2013, Brain Connect..
[26] J. Fletcher,et al. Age, plasticity, and homeostasis in childhood brain disorders , 2013, Neuroscience & Biobehavioral Reviews.
[27] Lucina Q. Uddin,et al. Complex relationships between structural and functional brain connectivity , 2013, Trends in Cognitive Sciences.
[28] Philip G. F. Browning,et al. Causal effect of disconnection lesions on interhemispheric functional connectivity in rhesus monkeys , 2013, Proceedings of the National Academy of Sciences.
[29] M. Austin,et al. Gene expression analysis of novel genes in the prefrontal cortex of major depressive disorder subjects , 2013, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[30] Eric J. Friedman,et al. The structural connectome of the human brain in agenesis of the corpus callosum , 2013, NeuroImage.
[31] Alan Connelly,et al. SIFT: Spherical-deconvolution informed filtering of tractograms , 2013, NeuroImage.
[32] M. Spencer-Smith,et al. Neuropsychological Profile of Agenesis of the Corpus Callosum: A Systematic Review , 2013, Developmental neuropsychology.
[33] J. Borst,et al. How Do Short-Term Changes at Synapses Fine-Tune Information Processing? , 2012, The Journal of Neuroscience.
[34] A. Farmer,et al. White matter abnormalities and illness severity in major depressive disorder , 2012, British Journal of Psychiatry.
[35] Li-Huei Tsai,et al. Autism spectrum disorder susceptibility gene TAOK2 affects basal dendrite formation in the neocortex , 2012, Nature Neuroscience.
[36] Joel H Kramer,et al. Processing Speed Delays Contribute to Executive Function Deficits in Individuals with Agenesis of the Corpus Callosum , 2012, Journal of the International Neuropsychological Society.
[37] Abraham Z. Snyder,et al. Spurious but systematic correlations in functional connectivity MRI networks arise from subject motion , 2012, NeuroImage.
[38] Daniel P. Kennedy,et al. Intact Bilateral Resting-State Networks in the Absence of the Corpus Callosum , 2011, The Journal of Neuroscience.
[39] Amanda Wood,et al. Do children really recover better? Neurobehavioural plasticity after early brain insult. , 2011, Brain : a journal of neurology.
[40] Anthony Randal McIntosh,et al. Partial Least Squares (PLS) methods for neuroimaging: A tutorial and review , 2011, NeuroImage.
[41] Andrei I Holodny,et al. Investigating Agenesis of the Corpus Callosum Using Functional MRI: A Study Examining Interhemispheric Coordination of Motor Control , 2011, Journal of neuroimaging : official journal of the American Society of Neuroimaging.
[42] Lynn K. Paul,et al. Developmental malformation of the corpus callosum: a review of typical callosal development and examples of developmental disorders with callosal involvement , 2010, Journal of Neurodevelopmental Disorders.
[43] L. Richards,et al. Molecular regulation of the developing commissural plate , 2010, The Journal of comparative neurology.
[44] M. Behen,et al. Alterations in frontal lobe tracts and corpus callosum in young children with autism spectrum disorder. , 2010, Cerebral cortex.
[45] Tomáš Paus,et al. Population neuroscience: Why and how , 2010, Human brain mapping.
[46] E. Müller-Oehring,et al. Contribution of Callosal Connections to the Interhemispheric Integration of Visuomotor and Cognitive Processes , 2010, Neuropsychology Review.
[47] Matcheri S. Keshavan,et al. Corpus callosum volume in children with autism , 2009, Psychiatry Research: Neuroimaging.
[48] N. Jovanov-Milošević,et al. Growth of the Human Corpus Callosum: Modular and Laminar Morphogenetic Zones , 2009, Front. Neuroanat..
[49] M. Miller,et al. Anatomical Characterization of Human Fetal Brain Development with Diffusion Tensor Magnetic Resonance Imaging , 2009, The Journal of Neuroscience.
[50] Uwe Heinrich,et al. Agenesis and dysgenesis of the corpus callosum: Clinical, genetic and neuroimaging findings in a series of 41 patients , 2008, American journal of medical genetics. Part A.
[51] L. Richards,et al. Nuclear factor I gene expression in the developing forebrain , 2008, The Journal of comparative neurology.
[52] Paul M. Thompson,et al. Positive correlations between corpus callosum thickness and intelligence , 2007, NeuroImage.
[53] R. Adolphs,et al. Agenesis of the corpus callosum: genetic, developmental and functional aspects of connectivity , 2007, Nature Reviews Neuroscience.
[54] Dante M. Pirouz. An Overview of Partial Least Squares , 2006 .
[55] N. Šestan,et al. Midline radial glia translocation and corpus callosum formation require FGF signaling , 2006, Nature Neuroscience.
[56] Ivica Kostović,et al. Transient cellular structures in developing corpus callosum of the human brain. , 2006, Collegium antropologicum.
[57] Roberto Lent,et al. Neuroplasticity in human callosal dysgenesis: a diffusion tensor imaging study. , 2006, Cerebral cortex.
[58] P. Poulet,et al. Brain dysmyelination and recovery assessment by noninvasive in vivo diffusion tensor magnetic resonance imaging , 2006, Journal of neuroscience research.
[59] Susumu Mori,et al. Imaging, anatomical, and molecular analysis of callosal formation in the developing human fetal brain. , 2006, The anatomical record. Part A, Discoveries in molecular, cellular, and evolutionary biology.
[60] Giorgio M. Innocenti,et al. Exuberance in the development of cortical networks , 2005, Nature Reviews Neuroscience.
[61] Anthony Randal McIntosh,et al. Partial least squares analysis of neuroimaging data: applications and advances , 2004, NeuroImage.
[62] C. Plachez,et al. Mechanisms regulating the development of the corpus callosum and its agenesis in mouse and human , 2004, Clinical genetics.
[63] L. Lotspeich,et al. White matter structure in autism: preliminary evidence from diffusion tensor imaging , 2004, Biological Psychiatry.
[64] L. Richards,et al. Development of midline glial populations at the corticoseptal boundary. , 2003, Journal of neurobiology.
[65] C. Beaulieu,et al. The basis of anisotropic water diffusion in the nervous system – a technical review , 2002, NMR in biomedicine.
[66] V. Haughton,et al. Diffusion tensor MR imaging in diffuse axonal injury. , 2002, AJNR. American journal of neuroradiology.
[67] S. Christman,et al. Superior episodic memory is associated with interhemispheric processing. , 2001, Neuropsychology.
[68] L. Richards,et al. A role for cingulate pioneering axons in the development of the corpus callosum , 2001, The Journal of comparative neurology.
[69] L. Richards,et al. Cortical Axon Guidance by the Glial Wedge during the Development of the Corpus Callosum , 2001, The Journal of Neuroscience.
[70] D. Le Bihan,et al. Diffusion tensor imaging: Concepts and applications , 2001, Journal of magnetic resonance imaging : JMRI.
[71] J. Foong,et al. Neuropathological abnormalities of the corpus callosum in schizophrenia: a diffusion tensor imaging study , 2000, Journal of neurology, neurosurgery, and psychiatry.
[72] M. Jeeves,et al. Bilateral field advantage and evoked potential interhemispheric transmission in commissurotomy and callosal agenesis , 1999, Neuropsychologia.
[73] C. Truwit,et al. The normal and abnormal genu of the corpus callosum: an evolutionary, embryologic, anatomic, and MR analysis. , 1996, AJNR. American journal of neuroradiology.
[74] M. Gulisano,et al. Emx and Otx homeobox genes in the developing mouse brain. , 1993, Journal of neurobiology.
[75] P Evrard,et al. Formation, maturation, and disorders of white matter. , 1992, AJNR. American journal of neuroradiology.
[76] Heikki Lyytinen,et al. Corpus Callosum Morphology in Attention Deficit-Hyperactivity Disorder: Morphometric Analysis of MRI , 1991, Journal of learning disabilities.
[77] P. Rakić,et al. Developmental history of the transient subplate zone in the visual and somatosensory cortex of the macaque monkey and human brain , 1990, The Journal of comparative neurology.
[78] P. Rakić,et al. Axon overproduction and elimination in the corpus callosum of the developing rhesus monkey , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[79] P. Rakić,et al. Cytological and quantitative characteristics of four cerebral commissures in the rhesus monkey , 1990, The Journal of comparative neurology.
[80] G M Innocenti,et al. Forms and measures of adult and developing human corpus callosum: Is there sexual dimorphism? , 1989, The Journal of comparative neurology.
[81] Christine Chiarello,et al. A house divided? Cognitive functioning with callosal agenesis , 1980, Brain and Language.
[82] Joseph E LeDoux,et al. The anterior commissure in man: Functional variation in a multisensory system , 1978, Neuropsychologia.
[83] Maureen Dennis,et al. Impaired sensory and motor differentiation with corpus callosum agenesis: A lack of callosal inhibition during ontogeny? , 1976, Neuropsychologia.
[84] P. Rakić,et al. Development of the corpus callosum and cavum septi in man , 1968, The Journal of comparative neurology.
[85] M. Kennard. REORGANIZATION OF MOTOR FUNCTION IN THE CEREBRAL CORTEX OF MONKEYS DEPRIVED OF MOTOR AND PREMOTOR AREAS IN INFANCY , 1938 .
[86] R. Domínguez,et al. Asymptomatic colpocephaly and partial agenesis of corpus callosum. , 2016, Neurologia.
[87] Ryan Remedios,et al. Development of midline cell types and commissural axon tracts requires Fgfr1 in the cerebrum. , 2006, Developmental Biology.
[88] Y. Benjamini,et al. Controlling the false discovery rate: a practical and powerful approach to multiple testing , 1995 .
[89] F. Andermann,et al. Callosal Agenesis , 1994, Advances in Behavioral Biology.