Non-invasive Brain Stimulation for the Rehabilitation of Children and Adolescents With Neurodevelopmental Disorders: A Systematic Review
暂无分享,去创建一个
[1] S. Vicari,et al. Long-lasting improvement following tDCS treatment combined with a training for reading in children and adolescents with dyslexia , 2019, Neuropsychologia.
[2] H. Ekhtiari,et al. Effect of Anodal and Cathodal Transcranial Direct Current Stimulation on DLPFC on Modulation of Inhibitory Control in ADHD , 2019, Journal of attention disorders.
[3] A. Antonietti,et al. tDCS Modulatory Effect on Reading Processes: A Review of Studies on Typical Readers and Individuals With Dyslexia , 2018, Front. Behav. Neurosci..
[4] M. Grados,et al. Transcranial Magnetic Stimulation in Tourette Syndrome: A Historical Perspective, Its Current Use and the Influence of Comorbidities in Treatment Response , 2018, Brain sciences.
[5] A. Hamm,et al. Effects of Transcutaneous Vagus Nerve Stimulation (tVNS) on the P300 and Alpha-Amylase Level: A Pilot Study , 2018, Front. Hum. Neurosci..
[6] Emily L. Casanova,et al. Exploratory Study of rTMS Neuromodulation Effects on Electrocortical Functional Measures of Performance in an Oddball Test and Behavioral Symptoms in Autism , 2018, Front. Syst. Neurosci..
[7] K. Rubia. Cognitive Neuroscience of Attention Deficit Hyperactivity Disorder (ADHD) and Its Clinical Translation , 2018, Front. Hum. Neurosci..
[8] Y. Bozzi,et al. Neurobiological bases of autism–epilepsy comorbidity: a focus on excitation/inhibition imbalance , 2018, The European journal of neuroscience.
[9] M. Marcolin,et al. Intermittent theta-burst transcranial magnetic stimulation for autism spectrum disorder: an open-label pilot study , 2017, Revista brasileira de psiquiatria.
[10] A. Posar,et al. Sensory abnormalities in children with autism spectrum disorder. , 2017, Jornal de pediatria.
[11] Transcranial magnetic and direct current stimulation in neuropsychiatric disorders: state of the art , 2018 .
[12] M. Nitsche,et al. Transcranial Direct Current Stimulation Improves Executive Dysfunctions in ADHD: Implications for Inhibitory Control, Interference Control, Working Memory, and Cognitive Flexibility , 2020, Journal of attention disorders.
[13] C. Maragoto,et al. Non-Invasive Brain Stimulation for Children with Autism Spectrum Disorders: A Short-Term Outcome Study , 2017, Behavioral sciences.
[14] R. Cohen Kadosh,et al. Transcranial random noise stimulation and cognitive training to improve learning and cognition of the atypically developing brain: A pilot study , 2017, Scientific Reports.
[15] G. Pino,et al. Transcutaneous and invasive vagal nerve stimulations engage the same neural pathways: In-vivo human evidence , 2017, Brain Stimulation.
[16] P. Szatmari,et al. Repetitive Transcranial Magnetic Stimulation for the Treatment of Executive Function Deficits in Autism Spectrum Disorder: Clinical Trial Approach. , 2017, Journal of child and adolescent psychopharmacology.
[17] Corey H. Allen,et al. Safety of Transcranial Magnetic Stimulation in Children: A Systematic Review of the Literature. , 2017, Pediatric neurology.
[18] Á. Pascual-Leone,et al. Transcranial Magnetic and Direct Current Stimulation in Children , 2017, Current Neurology and Neuroscience Reports.
[19] E. Tagliazucchi,et al. Transcranial Direct Current Stimulation Modulates Neuronal Networks in Attention Deficit Hyperactivity Disorder , 2017, Brain Topography.
[20] M. Nitsche,et al. Applications of transcranial direct current stimulation in children and pediatrics , 2017, Reviews in the neurosciences.
[21] J. Kong,et al. Transcutaneous Vagus Nerve Stimulation: A Promising Method for Treatment of Autism Spectrum Disorders , 2017, Front. Neurosci..
[22] Y. Levkovitz,et al. Deep TMS add-on treatment for intractable Tourette syndrome: A feasibility study , 2016, The world journal of biological psychiatry : the official journal of the World Federation of Societies of Biological Psychiatry.
[23] Leigh E. Charvet,et al. Safety of Transcranial Direct Current Stimulation: Evidence Based Update 2016 , 2016, Brain Stimulation.
[24] N. Koutsouleris,et al. Transcranial direct current stimulation in children and adolescents: a comprehensive review , 2016, Journal of Neural Transmission.
[25] Nicole Wenderoth,et al. Transcranial Random Noise Stimulation of Visual Cortex: Stochastic Resonance Enhances Central Mechanisms of Perception , 2016, The Journal of Neuroscience.
[26] R. Hauger,et al. Noninvasive Transcutaneous Vagus Nerve Stimulation Decreases Whole Blood Culture‐Derived Cytokines and Chemokines: A Randomized, Blinded, Healthy Control Pilot Trial , 2016, Neuromodulation : journal of the International Neuromodulation Society.
[27] Giacomo Koch,et al. Reading changes in children and adolescents with dyslexia after transcranial direct current stimulation , 2016, Neuroreport.
[28] T. Zaehle,et al. Improving Interference Control in ADHD Patients with Transcranial Direct Current Stimulation (tDCS) , 2016, Front. Cell. Neurosci..
[29] M. Casanova,et al. Heart Rate Variability and Skin Conductance During Repetitive TMS Course in Children with Autism , 2016, Applied psychophysiology and biofeedback.
[30] I. D. Bandeira,et al. Transcranial Direct Current Stimulation in Children and Adolescents With Attention-Deficit/Hyperactivity Disorder (ADHD) , 2016, Journal of child neurology.
[31] Yang Wang,et al. Transcutaneous Vagus Nerve Stimulation Modulates Default Mode Network in Major Depressive Disorder , 2016, Biological Psychiatry.
[32] M. Siniatchkin,et al. Transcranial direct current stimulation improves clinical symptoms in adolescents with attention deficit hyperactivity disorder , 2016, Journal of Neural Transmission.
[33] M. Oliveri,et al. Evidence for reading improvement following tDCS treatment in children and adolescents with Dyslexia. , 2016, Restorative neurology and neuroscience.
[34] U. Ziemann,et al. [Non-invasive brain stimulation]. , 2015, Der Nervenarzt.
[35] S. Vicari,et al. Transcranial Direct Current Stimulation Treatment in an Adolescent with Autism and Drug-Resistant Catatonia , 2015, Brain Stimulation.
[36] P. Boggio,et al. Promoting social plasticity in developmental disorders with non-invasive brain stimulation techniques , 2015, Front. Neurosci..
[37] A. Prehn-Kristensen,et al. Slow oscillating transcranial direct current stimulation during non-rapid eye movement sleep improves behavioral inhibition in attention-deficit/hyperactivity disorder , 2015, Front. Cell. Neurosci..
[38] J. Ellrich,et al. Non-invasive Access to the Vagus Nerve Central Projections via Electrical Stimulation of the External Ear: fMRI Evidence in Humans , 2015, Brain Stimulation.
[39] P. Glasziou,et al. Prevalence of Attention-De fi cit/ Hyperactivity Disorder: A Systematic Review and Meta-analysis , 2022 .
[40] E. Rolls,et al. Autism: reduced connectivity between cortical areas involved in face expression, theory of mind, and the sense of self , 2015, Brain : a journal of neurology.
[41] M. Jensen,et al. The Short-Term Effects of Transcranial Direct Current Stimulation on Electroencephalography in Children with Autism: A Randomized Crossover Controlled Trial , 2015, Behavioural neurology.
[42] J. Buitelaar,et al. Cognitive Training for Attention-Deficit/Hyperactivity Disorder: Meta-Analysis of Clinical and Neuropsychological Outcomes From Randomized Controlled Trials , 2015, Journal of the American Academy of Child and Adolescent Psychiatry.
[43] D. Gilbert,et al. Safety and tolerability of theta burst stimulation vs. single and paired pulse transcranial magnetic stimulation: a comparative study of 165 pediatric subjects , 2015, Front. Hum. Neurosci..
[44] G. di Pino,et al. The effect of transcutaneous vagus nerve stimulation on cortical excitability , 2015, Journal of Neural Transmission.
[45] R. Cohen Kadosh,et al. Brain stimulation for treatment and enhancement in children: an ethical analysis , 2014, Front. Hum. Neurosci..
[46] Manuel Munz,et al. Transcranial Oscillatory Direct Current Stimulation During Sleep Improves Declarative Memory Consolidation in Children With Attention-deficit/hyperactivity Disorder to a Level Comparable to Healthy Controls , 2014, Brain Stimulation.
[47] S. Rossi,et al. Evidence-based guidelines on the therapeutic use of repetitive transcranial magnetic stimulation (rTMS) , 2014, Clinical Neurophysiology.
[48] Chanyut Suphakunpinyo,et al. Effect of Anodal Transcranial Direct Current Stimulation on Autism: A Randomized Double-Blind Crossover Trial , 2014, Behavioural neurology.
[49] M. Casanova,et al. Effects of weekly low-frequency rTMS on autonomic measures in children with autism spectrum disorder , 2014, Front. Hum. Neurosci..
[50] F. Fregni,et al. Feasibility of Transcranial Direct Current Stimulation Use in Children Aged 5 to 12 Years , 2014, Journal of child neurology.
[51] M. Casanova,et al. Neuromodulation Integrating rTMS and Neurofeedback for the Treatment of Autism Spectrum Disorder: An Exploratory Study , 2014, Applied psychophysiology and biofeedback.
[52] C. Maragoto,et al. Low Frequency Repetitive Transcranial Magnetic Stimulation in Children With Attention Deficit/Hyperactivity Disorder. Preliminary Results , 2014, Brain Stimulation.
[53] Vincenza Tarantino,et al. Low-frequency rTMS inhibitory effects in the primary motor cortex: Insights from TMS-evoked potentials , 2014, NeuroImage.
[54] Manuel F. Casanova,et al. rTMS neuromodulation improves electrocortical functional measures of information processing and behavioral responses in autism , 2014, Front. Syst. Neurosci..
[55] N. J. Davis. Transcranial stimulation of the developing brain: a plea for extreme caution , 2014, Front. Hum. Neurosci..
[56] R. Ferri,et al. Effects of repetitive transcranial magnetic stimulation in performing eye–hand integration tasks: Four preliminary studies with children showing low-functioning autism , 2014, Autism : the international journal of research and practice.
[57] P. Thuras,et al. Downregulation of GABAA Receptor Protein Subunits α6, β2, δ, ε, γ2, θ, and ρ2 in Superior Frontal Cortex of Subjects with Autism , 2014, Journal of autism and developmental disorders.
[58] Jennifer Vannest,et al. Functional MRI-navigated Repetitive Transcranial Magnetic Stimulation Over Supplementary Motor Area in Chronic Tic Disorders , 2014, Brain Stimulation.
[59] Michael A. Nitsche,et al. Non-invasive brain stimulation for the treatment of brain diseases in childhood and adolescence: state of the art, current limits and future challenges , 2013, Front. Syst. Neurosci..
[60] Ralph-Axel Müller,et al. Pervasive rightward asymmetry shifts of functional networks in autism spectrum disorder. , 2013, JAMA psychiatry.
[61] Adam Kirton,et al. Non-invasive brain stimulation in children: Applications and future directions , 2013, Translational neuroscience.
[62] F. Fregni,et al. Transcranial direct current stimulation (tDCS) for catatonic schizophrenia: A case study , 2013, Schizophrenia Research.
[63] M. Nitsche,et al. Transcranial direct current stimulation: a remediation tool for the treatment of childhood congenital dyslexia? , 2013, Front. Hum. Neurosci..
[64] R. Cohen Kadosh,et al. Can transcranial electrical stimulation improve learning difficulties in atypical brain development? A future possibility for cognitive training , 2013, Developmental Cognitive Neuroscience.
[65] M. Nitsche,et al. Partially non‐linear stimulation intensity‐dependent effects of direct current stimulation on motor cortex excitability in humans , 2013, The Journal of physiology.
[66] Nong Xiao,et al. Transcranial magnetic stimulation at 1Hertz improves clinical symptoms in children with Tourette syndrome for at least 6 months , 2013, Journal of Clinical Neuroscience.
[67] D. Brandeis,et al. Topography of sleep slow wave activity in children with attention-deficit/hyperactivity disorder , 2013, Cortex.
[68] Jochen Roeper,et al. Monitoring Cortical Excitability during Repetitive Transcranial Magnetic Stimulation in Children with ADHD: A Single-Blind, Sham-Controlled TMS-EEG Study , 2012, PloS one.
[69] Berthold Langguth,et al. Transcutaneous Vagus Nerve Stimulation: Retrospective Assessment of Cardiac Safety in a Pilot Study , 2012, Front. Psychiatry.
[70] J. Ellrich,et al. Transcutaneous vagus nerve stimulation (t‐VNS) in pharmacoresistant epilepsies: A proof of concept trial , 2012, Epilepsia.
[71] L. Merabet,et al. Clinical research with transcranial direct current stimulation (tDCS): Challenges and future directions , 2012, Brain Stimulation.
[72] M. Casanova,et al. Repetitive transcanial magnetic stimulation (RTMS) modulates event-related potential (ERP) indices of attention in autism , 2012, Translational neuroscience.
[73] J. O'reardon,et al. Transcranial Magnetic Stimulation (TMS) in the Treatment of Attention-Deficit/Hyperactivity Disorder in Adolescents and Young Adults: A Pilot Study , 2012, The journal of ECT.
[74] Vicente L. Malave,et al. Autism as a neural systems disorder: A theory of frontal-posterior underconnectivity , 2012, Neuroscience & Biobehavioral Reviews.
[75] N. Shea,et al. The neuroethics of non-invasive brain stimulation , 2012, Current Biology.
[76] N. Rinehart,et al. Repetitive transcranial magnetic stimulation (rTMS) improves movement-related cortical potentials in autism spectrum disorders , 2012, Brain Stimulation.
[77] F. Fregni,et al. A systematic review on reporting and assessment of adverse effects associated with transcranial direct current stimulation. , 2011, The international journal of neuropsychopharmacology.
[78] D. Raju,et al. Successful treatment of refractory organic catatonic disorder with repetitive transcranial magnetic stimulation (rTMS) therapy. , 2011, The Journal of neuropsychiatry and clinical neurosciences.
[79] Harry D. Schneider,et al. The use of the Bilingual Aphasia Test for assessment and transcranial direct current stimulation to modulate language acquisition in minimally verbal children with autism , 2011, Clinical linguistics & phonetics.
[80] J. Chae,et al. 1-Hz low frequency repetitive transcranial magnetic stimulation in children with Tourette's syndrome , 2011, Neuroscience Letters.
[81] Paula Krakowiak,et al. Elevated plasma cytokines in autism spectrum disorders provide evidence of immune dysfunction and are associated with impaired behavioral outcome , 2011, Brain, Behavior, and Immunity.
[82] Jens Ellrich,et al. Transcutaneous vagus nerve stimulation , 2011 .
[83] E. Willcutt,et al. Inhibitory control of memory retrieval and motor processing associated with the right lateral prefrontal cortex: Evidence from deficits in individuals with ADHD , 2010, Neuropsychologia.
[84] J. Leckman,et al. Tourette syndrome in children: an updated review. , 2010, Pediatrics and neonatology.
[85] Ayman El-Baz,et al. Low-Frequency Repetitive Transcranial Magnetic Stimulation (rTMS) Modulates Evoked-Gamma Frequency Oscillations in Autism Spectrum Disorder (ASD). , 2010, Journal of neurotherapy.
[86] M. Casanova,et al. Low-Frequency Repetitive Transcranial Magnetic Stimulation (rTMS) Affects Event-Related Potential Measures of Novelty Processing in Autism , 2010, Applied psychophysiology and biofeedback.
[87] Ayman El-Baz,et al. A Topographic Study of Minicolumnar Core Width by Lamina Comparison between Autistic Subjects and Controls: Possible Minicolumnar Disruption due to an Anatomical Element In‐Common to Multiple Laminae , 2010, Brain pathology.
[88] S. Grimm,et al. Lorazepam modulates orbitofrontal signal changes during emotional processing in catatonia , 2010, Human psychopharmacology.
[89] M. Casanova,et al. Effects of Low Frequency Repetitive Transcranial Magnetic Stimulation (rTMS) on Gamma Frequency Oscillations and Event-Related Potentials During Processing of Illusory Figures in Autism , 2009, Journal of autism and developmental disorders.
[90] A. Antal,et al. Increasing Human Brain Excitability by Transcranial High-Frequency Random Noise Stimulation , 2008, The Journal of Neuroscience.
[91] Ralph-Axel Müller,et al. Atypical functional lateralization of language in autism spectrum disorders , 2008, Brain Research.
[92] S. Dietrich,et al. A novel transcutaneous vagus nerve stimulation leads to brainstem and cerebral activations measured by functional MRI / Funktionelle Magnetresonanztomographie zeigt Aktivierungen des Hirnstamms und weiterer zerebraler Strukturen unter transkutaner Vagusnervstimulation , 2008, Biomedizinische Technik. Biomedical engineering.
[93] David M. Lane,et al. Fronto-limbic functioning in children and adolescents with and without autism , 2008, Neuropsychologia.
[94] J. Kornhuber,et al. BOLD fMRI deactivation of limbic and temporal brain structures and mood enhancing effect by transcutaneous vagus nerve stimulation , 2007, Journal of Neural Transmission.
[95] S. Porges. The polyvagal perspective , 2007, Biological Psychology.
[96] M Hallett,et al. Neural correlates of tic generation in Tourette syndrome: an event-related functional MRI study. , 2006, Brain : a journal of neurology.
[97] R. Iansek,et al. Movement‐related potentials in high‐functioning autism and Asperger's disorder , 2006, Developmental medicine and child neurology.
[98] Jie Zhang,et al. Comparison of the Inhibitory and Excitatory Effects of ADHD Medications Methylphenidate and Atomoxetine on Motor Cortex , 2006, Neuropsychopharmacology.
[99] Xue Ming,et al. Reduced cardiac parasympathetic activity in children with autism , 2005, Brain and Development.
[100] Thomas Kammer,et al. Electroencephalographic response to transcranial magnetic stimulation in children: Evidence for giant inhibitory potentials , 2005, Annals of neurology.
[101] Edmund J. S. Sonuga-Barke,et al. Causal Models of Attention-Deficit/Hyperactivity Disorder: From Common Simple Deficits to Multiple Developmental Pathways , 2005, Biological Psychiatry.
[102] Humberto Quintana,et al. Transcranial Magnetic Stimulation in Persons Younger Than the Age of 18 , 2005, The journal of ECT.
[103] J. Rothwell,et al. Theta Burst Stimulation of the Human Motor Cortex , 2005, Neuron.
[104] F. Scott,et al. Autism: Explaining the Enigma, 2nd edn. By U. Frith. (Pp. 249; £50.00 hb, £15.99 pb.) Blackwell: Oxford. 2003. , 2004, Psychological Medicine.
[105] E. Hill. Executive dysfunction in autism , 2004, Trends in Cognitive Sciences.
[106] E. Kunesch,et al. Disturbed transcallosally mediated motor inhibition in children with attention deficit hyperactivity disorder (ADHD) , 2003, Clinical Neurophysiology.
[107] B. Peterson,et al. Developmental processes and brain imaging studies in Tourette syndrome. , 2003, Journal of Psychosomatic Research.
[108] C. Frith,et al. Development and neurophysiology of mentalizing. , 2003, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[109] J. Rothwell,et al. Repetitive transcranial magnetic stimulation for Tourette syndrome , 2002, Neurology.
[110] K. Perry,et al. Atomoxetine Increases Extracellular Levels of Norepinephrine and Dopamine in Prefrontal Cortex of Rat: A Potential Mechanism for Efficacy in Attention Deficit/Hyperactivity Disorder , 2002, Neuropsychopharmacology.
[111] G. Northoff. What catatonia can tell us about “top-down modulation”: A neuropsychiatric hypothesis , 2002, Behavioral and Brain Sciences.
[112] Caroline C Brown,et al. The temporal binding deficit hypothesis of autism , 2002, Development and Psychopathology.
[113] Andrew E. Switala,et al. Minicolumnar pathology in autism , 2002, Neurology.
[114] S. Porges. The polyvagal theory: phylogenetic substrates of a social nervous system. , 2001, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[115] M. Nitsche,et al. Excitability changes induced in the human motor cortex by weak transcranial direct current stimulation , 2000, The Journal of physiology.
[116] Á. Pascual-Leone,et al. Modulation of corticospinal excitability by repetitive transcranial magnetic stimulation , 2000, Clinical Neurophysiology.
[117] J. Rothwell,et al. Transcranial magnetic stimulation in cognitive neuroscience – virtual lesion, chronometry, and functional connectivity , 2000, Current Opinion in Neurobiology.
[118] Mustafa M. Husain,et al. Vagus nerve stimulation: a new tool for brain research and therapy∗ , 2000, Biological Psychiatry.
[119] E. G. Ventureyra,et al. Transcutaneous vagus nerve stimulation for partial onset seizure therapy , 2000, Child's Nervous System.
[120] A. Kramer,et al. Task Switching and Attention Deficit Hyperactivity Disorder , 2000, Journal of abnormal child psychology.
[121] N Accornero,et al. Polarization of the human motor cortex through the scalp , 1998, Neuroreport.
[122] J C Rothwell,et al. Short latency facilitation between pairs of threshold magnetic stimuli applied to human motor cortex. , 1996, Electroencephalography and clinical neurophysiology.
[123] C. Marsden,et al. Corticocortical inhibition in human motor cortex. , 1993, The Journal of physiology.
[124] M. Hallett,et al. Human motor evoked responses to paired transcranial magnetic stimuli. , 1992, Electroencephalography and clinical neurophysiology.