Consensus paper: Combining transcranial stimulation with neuroimaging
暂无分享,去创建一个
P. Rossini | M. Hallett | M. Rushworth | J. Rothwell | L. Cohen | Á. Pascual-Leone | R. Ilmoniemi | T. Paus | A. Strafella | C. Miniussi | H. Johansen-Berg | G. Frisoni | S. Bestmann | M. Massimini | J. Baudewig | S. Brandt | S. Kähkönen | R. Huber | T. Bergmann | D. Bohning | M. George | H. Siebner | E. Boorman | N. Ward | S. Klöppel | U. Ziemann | L. Gennaro | Y. Ugawa | P. Taylor | H. Mochizuki | S. Groppa
[1] J. Rothwell,et al. How does transcranial magnetic stimulation modify neuronal activity in the brain? Implications for studies of cognition , 2009, Cortex.
[2] R. Deichmann,et al. Image Artifacts in Concurrent Transcranial Magnetic Stimulation (TMS) and fMRI Caused by Leakage Currents: Modeling and Compensation , 2009, Journal of magnetic resonance imaging : JMRI.
[3] P Girlanda,et al. Paired associative stimulation of left and right human motor cortex shapes interhemispheric motor inhibition based on a Hebbian mechanism. , 2009, Cerebral cortex.
[4] Jyrki P. Mäkelä,et al. Reproducibility of TMS—Evoked EEG responses , 2009, Human brain mapping.
[5] Nikolaus Weiskopf,et al. Interhemispheric Effect of Parietal TMS on Somatosensory Response Confirmed Directly with Concurrent TMS–fMRI , 2008, The Journal of Neuroscience.
[6] J. Rothwell,et al. Mapping causal interregional influences with concurrent TMS–fMRI , 2008, Experimental Brain Research.
[7] A. Priori,et al. Myoinositol content in the human brain is modified by transcranial direct current stimulation in a matter of minutes: A 1H‐MRS study , 2008, Magnetic resonance in medicine.
[8] Á. Pascual-Leone,et al. Spontaneous fluctuations in posterior alpha-band EEG activity reflect variability in excitability of human visual areas. , 2008, Cerebral cortex.
[9] Martin Eimer,et al. Combining TMS and EEG to study cognitive function and cortico–cortico interactions , 2008, Behavioural Brain Research.
[10] G. Tononi,et al. Reduced evoked gamma oscillations in the frontal cortex in schizophrenia patients: a TMS/EEG study. , 2008, American Journal of Psychiatry.
[11] G. Tononi,et al. Measures of Cortical Plasticity after Transcranial Paired Associative Stimulation Predict Changes in Electroencephalogram Slow-Wave Activity during Subsequent Sleep , 2008, The Journal of Neuroscience.
[12] H. Johansen-Berg,et al. Imaging the functional and neurochemical effects of transcranial direct current stimulation: a rationale for rehabilitation , 2008, Brain Stimulation.
[13] K. Uludağ,et al. Interleaved TMS/CASL: A motor cortex study , 2008, Brain Stimulation.
[14] J. Rothwell,et al. Consensus: Motor cortex plasticity protocols , 2008, Brain Stimulation.
[15] P. Rossini,et al. Cortical Plasticity Induced by Transcranial Magnetic Stimulation during Wakefulness Affects Electroencephalogram Activity during Sleep , 2008, PloS one.
[16] P. Haggard,et al. Dorsal premotor cortex exerts state-dependent causal influences on activity in contralateral primary motor and dorsal premotor cortex. , 2008, Cerebral cortex.
[17] J. Born,et al. A local signature of LTP‐ and LTD‐like plasticity in human NREM sleep , 2008, The European journal of neuroscience.
[18] M. Rushworth,et al. Imaging causal interactions during sensorimotor processing , 2008, Cortex.
[19] Debora Brignani,et al. Modulation of cortical oscillatory activity during transcranial magnetic stimulation , 2008, Human brain mapping.
[20] Stefan Klöppel,et al. The cortical motor threshold reflects microstructural properties of cerebral white matter , 2008, NeuroImage.
[21] Radoslaw Martin Cichy,et al. Transcranial cortex stimulation and fMRI: Electrophysiological correlates of dual-pulse BOLD signal modulation , 2008, NeuroImage.
[22] R. Deichmann,et al. Distinct causal influences of parietal versus frontal areas on human visual cortex: evidence from concurrent TMS-fMRI. , 2008, Cerebral cortex.
[23] J. Karhu,et al. Efficient reduction of stimulus artefact in TMS–EEG by epithelial short-circuiting by mini-punctures , 2008, Clinical Neurophysiology.
[24] Sven Bestmann,et al. Concurrent TMS and functional magnetic resonance imaging: methods and current advances , 2008 .
[25] Lucy Lee,et al. TMS and positron emission tomography: methods and current advances , 2008 .
[26] Enea F Pavone,et al. Acute modulation of cortical oscillatory activities during short trains of high‐frequency repetitive transcranial magnetic stimulation of the human motor cortex: A combined EEG and TMS study , 2008, Human brain mapping.
[27] R. Goebel,et al. Imaging the brain activity changes underlying impaired visuospatial judgments: simultaneous FMRI, TMS, and behavioral studies. , 2007, Cerebral cortex.
[28] J. Klein,et al. Human Motor Corpus Callosum: Topography, Somatotopy, and Link between Microstructure and Function , 2007, The Journal of Neuroscience.
[29] Björn N. S. Vlaskamp,et al. TMS pulses on the frontal eye fields break coupling between visuospatial attention and eye movements. , 2007, Journal of neurophysiology.
[30] Anna C Nobre,et al. Subsecond Changes in Top–Down Control Exerted by Human Medial Frontal Cortex during Conflict and Action Selection: A Combined Transcranial Magnetic Stimulation–Electroencephalography Study , 2007, The Journal of Neuroscience.
[31] H. Möller,et al. Acute prefrontal rTMS increases striatal dopamine to a similar degree as D-amphetamine. , 2007, Psychiatry Research.
[32] Heidi Johansen-Berg,et al. Individual Differences in White-Matter Microstructure Reflect Variation in Functional Connectivity during Choice , 2007, Current Biology.
[33] Vladimir Litvak,et al. Artifact correction and source analysis of early electroencephalographic responses evoked by transcranial magnetic stimulation over primary motor cortex , 2007, NeuroImage.
[34] Paolo Maria Rossini,et al. Neurophysiological correlates of sleepiness: A combined TMS and EEG study , 2007, NeuroImage.
[35] V. Walsh,et al. Diffusion tensor MRI-based estimation of the influence of brain tissue anisotropy on the effects of transcranial magnetic stimulation , 2007, NeuroImage.
[36] J. Rothwell,et al. Is there a future for therapeutic use of transcranial magnetic stimulation? , 2007, Nature Reviews Neuroscience.
[37] Gary W. Thickbroom,et al. Transcranial magnetic stimulation and synaptic plasticity: experimental framework and human models , 2007, Experimental Brain Research.
[38] Tharshan Vaithianathan,et al. Elevated haemoglobin levels in the motor cortex following 1 Hz transcranial magnetic stimulation: a preliminary study , 2007, Experimental Brain Research.
[39] G. Tononi,et al. Triggering sleep slow waves by transcranial magnetic stimulation , 2007, Proceedings of the National Academy of Sciences.
[40] M. Rushworth,et al. Functionally Specific Reorganization in Human Premotor Cortex , 2007, Neuron.
[41] G. Tononi,et al. TMS-Induced Cortical Potentiation during Wakefulness Locally Increases Slow Wave Activity during Sleep , 2007, PloS one.
[42] R. Hanajima,et al. Hemoglobin concentration changes in the contralateral hemisphere during and after theta burst stimulation of the human sensorimotor cortices , 2007, Brain Stimulation.
[43] Juha Heiskala,et al. Excitation threshold of the motor cortex estimated with transcranial magnetic stimulation electroencephalography , 2007, Neuroreport.
[44] P. Dechent,et al. Cortical correlates of TMS-induced phantom hand movements revealed with concurrent TMS-fMRI , 2006, Neuropsychologia.
[45] W. Byblow,et al. Functional potential in chronic stroke patients depends on corticospinal tract integrity. , 2006, Brain : a journal of neurology.
[46] Seppo Kähkönen,et al. The novelty value of the combined use of electroencephalography and transcranial magnetic stimulation for neuroscience research , 2006, Brain Research Reviews.
[47] R. Deichmann,et al. Concurrent TMS-fMRI and Psychophysics Reveal Frontal Influences on Human Retinotopic Visual Cortex , 2006, Current Biology.
[48] Gregor Thut,et al. Electroencephalographic recording during transcranial magnetic stimulation in humans and animals , 2006, Clinical Neurophysiology.
[49] P. Rossini,et al. Transcranial magnetic stimulation and cortical evoked potentials: A TMS/EEG co-registration study , 2006, Clinical Neurophysiology.
[50] Daniel Rueckert,et al. Tract-based spatial statistics: Voxelwise analysis of multi-subject diffusion data , 2006, NeuroImage.
[51] Ji Hyun Ko,et al. Therapeutic application of transcranial magnetic stimulation in Parkinson's disease: The contribution of expectation , 2006, NeuroImage.
[52] H. Möller,et al. Striatal dopamine release after prefrontal repetitive transcranial magnetic stimulation in major depression: preliminary results of a dynamic [123I] IBZM SPECT study. , 2006, Journal of psychiatric research.
[53] J. Lou,et al. Cortical excitability and age-related volumetric MRI changes , 2006, Clinical Neurophysiology.
[54] Martin Eimer,et al. Cortico-cortical interactions in spatial attention: A combined ERP/TMS study. , 2006, Journal of neurophysiology.
[55] Steven K. Esser,et al. A direct demonstration of cortical LTP in humans: A combined TMS/EEG study , 2006, Brain Research Bulletin.
[56] Anna C Nobre,et al. FEF TMS affects visual cortical activity. , 2006, Cerebral cortex.
[57] Kuniyoshi L. Sakai,et al. Cortical hemoglobin-concentration changes under the coil induced by single-pulse TMS in humans: a simultaneous recording with near-infrared spectroscopy , 2006, Experimental Brain Research.
[58] Karl J. Friston,et al. Repetitive Transcranial Magnetic Stimulation-Induced Changes in Sensorimotor Coupling Parallel Improvements of Somatosensation in Humans , 2006, The Journal of Neuroscience.
[59] Ji Hyun Ko,et al. Corticostriatal functional interactions in Parkinson's disease: a rTMS/[11C]raclopride PET study , 2005, The European journal of neuroscience.
[60] Patrick Ragert,et al. Improvement of Tactile Discrimination Performance and Enlargement of Cortical Somatosensory Maps after 5 Hz rTMS , 2005, PLoS biology.
[61] Hartwig R. Siebner,et al. BOLD MRI responses to repetitive TMS over human dorsal premotor cortex , 2005, NeuroImage.
[62] Giorgio Fuggetta,et al. Modulation of cortical oscillatory activities induced by varying single-pulse transcranial magnetic stimulation intensity over the left primary motor area: A combined EEG and TMS study , 2005, NeuroImage.
[63] G. Tononi,et al. Breakdown of Cortical Effective Connectivity During Sleep , 2005, Science.
[64] Sean L. Hill,et al. Modeling the effects of transcranial magnetic stimulation on cortical circuits. , 2005, Journal of neurophysiology.
[65] Richard S. J. Frackowiak,et al. How does transcranial DC stimulation of the primary motor cortex alter regional neuronal activity in the human brain? , 2005, The European journal of neuroscience.
[66] Stewart Denslow,et al. An Increased Precision Comparison of TMS-Induced Motor Cortex BOLD fMRI Response for Image-Guided Versus Function-Guided Coil Placement , 2005, Cognitive and behavioral neurology : official journal of the Society for Behavioral and Cognitive Neurology.
[67] Tomás Paus,et al. Inferring causality in brain images: a perturbation approach , 2005, Philosophical Transactions of the Royal Society B: Biological Sciences.
[68] Karl J. Friston,et al. Frequency specific changes in regional cerebral blood flow and motor system connectivity following rTMS to the primary motor cortex , 2005, NeuroImage.
[69] D. Bohning,et al. Cortical and subcortical brain effects of Transcranial Magnetic Stimulation (TMS)-induced movement: An interleaved TMS/functional magnetic resonance imaging study , 2005, Biological Psychiatry.
[70] Gregor Thut,et al. A new device and protocol for combining TMS and online recordings of EEG and evoked potentials , 2005, Journal of Neuroscience Methods.
[71] J. Rothwell,et al. Theta Burst Stimulation of the Human Motor Cortex , 2005, Neuron.
[72] M. Keck,et al. Repetitive Transcranial Magnetic Stimulation Increases the Release of Dopamine in the Nucleus Accumbens Shell of Morphine-Sensitized Rats During Abstinence , 2004, Neuropsychopharmacology.
[73] Hartwig R. Siebner,et al. Short-term modulation of regional excitability and blood flow in human motor cortex following rapid-rate transcranial magnetic stimulation , 2004, NeuroImage.
[74] Marcello Massimini,et al. A [17F]-fluoromethane PET/TMS study of effective connectivity , 2004, Brain Research Bulletin.
[75] Karl Herholz,et al. Positron emission tomography in clinical neurology. , 2004, Molecular imaging and biology : MIB : the official publication of the Academy of Molecular Imaging.
[76] J. Cohn,et al. Interleaved Transcranial Magnetic Stimulation/Functional MRI Confirms that Lamotrigine Inhibits Cortical Excitability in Healthy Young Men , 2004, Neuropsychopharmacology.
[77] Yoshikazu Ugawa,et al. Long‐term effect of motor cortical repetitive transcranial magnetic stimulation induces , 2004 .
[78] Paola Piccini,et al. Functional brain imaging in the differential diagnosis of Parkinson's disease , 2004, The Lancet Neurology.
[79] Xingbao Li,et al. Acute left prefrontal transcranial magnetic stimulation in depressed patients is associated with immediately increased activity in prefrontal cortical as well as subcortical regions , 2004, Biological Psychiatry.
[80] J. Rothwell,et al. Functional MRI of the immediate impact of transcranial magnetic stimulation on cortical and subcortical motor circuits , 2004, The European journal of neuroscience.
[81] J. Rothwell,et al. Preconditioning of Low-Frequency Repetitive Transcranial Magnetic Stimulation with Transcranial Direct Current Stimulation: Evidence for Homeostatic Plasticity in the Human Motor Cortex , 2004, The Journal of Neuroscience.
[82] Yoshikazu Ugawa,et al. Endogenous dopamine release induced by repetitive transcranial magnetic stimulation over the primary motor cortex: an [11C]raclopride positron emission tomography study in anesthetized macaque monkeys , 2004, Biological Psychiatry.
[83] Volkmar Glauche,et al. Diffusion tensor MRI of early upper motor neuron involvement in amyotrophic lateral sclerosis. , 2004, Brain : a journal of neurology.
[84] Yukio Mano,et al. Effects of acute repetitive transcranial magnetic stimulation on dopamine release in the rat dorsolateral striatum , 2004, Journal of the Neurological Sciences.
[85] Richard S. J. Frackowiak,et al. Patients with focal arm dystonia have increased sensitivity to slow-frequency repetitive TMS of the dorsal premotor cortex. , 2003, Brain : a journal of neurology.
[86] T. Paus,et al. ß Federation of European Neuroscience Societies Transcranial magnetic stimulation of the human frontal eye ®eld facilitates visual awareness , 2022 .
[87] T. Paus,et al. Striatal dopamine release induced by repetitive transcranial magnetic stimulation of the human motor cortex. , 2003, Brain : a journal of neurology.
[88] Jens Frahm,et al. Subthreshold high-frequency TMS of human primary motor cortex modulates interconnected frontal motor areas as detected by interleaved fMRI-TMS , 2003, NeuroImage.
[89] M. Daube-Witherspoon,et al. Intensity-dependent regional cerebral blood flow during 1-Hz repetitive transcranial magnetic stimulation (rTMS) in healthy volunteers studied with H2 15O positron emission tomography: i. effects of primary motor cortex rTMS , 2003, Biological Psychiatry.
[90] Peter Herscovitch,et al. Intensity-dependent regional cerebral blood flow during 1-Hz repetitive transcranial magnetic stimulation (rTMS) in healthy volunteers studied with h2 15o positron emission tomography: II. effects of prefrontal cortex rTMS , 2003, Biological Psychiatry.
[91] Philippe A. Chouinard,et al. Modulating neural networks with transcranial magnetic stimulation applied over the dorsal premotor and primary motor cortices. , 2003, Journal of neurophysiology.
[92] Karl J. Friston,et al. Acute Remapping within the Motor System Induced by Low-Frequency Repetitive Transcranial Magnetic Stimulation , 2003, The Journal of Neuroscience.
[93] Kuniyoshi L. Sakai,et al. An event-related optical topography study of cortical activation induced by single-pulse transcranial magnetic stimulation , 2003, NeuroImage.
[94] R. Goebel,et al. Tracking cognitive processes with functional MRI mental chronometry , 2003, Current Opinion in Neurobiology.
[95] Seppo Kähkönen,et al. Alcohol Reduces Prefrontal Cortical Excitability in Humans: A Combined TMS and EEG Study , 2003, Neuropsychopharmacology.
[96] S. Bestmann,et al. On the synchronization of transcranial magnetic stimulation and functional echo‐planar imaging , 2003, Journal of magnetic resonance imaging : JMRI.
[97] Á. Pascual-Leone,et al. Transcranial magnetic stimulation in neurology , 2003, The Lancet Neurology.
[98] Nick C Fox,et al. Computer-assisted imaging to assess brain structure in healthy and diseased brains , 2003, The Lancet Neurology.
[99] Felix M Mottaghy,et al. Modulation of a brain-behavior relationship in verbal working memory by rTMS. , 2003, Brain research. Cognitive brain research.
[100] Alexander Gerhard,et al. In vivo imaging of neuroinflammation , 2002, European Neuropsychopharmacology.
[101] K. Heilman,et al. Cerebral blood flow changes in depressed patients after treatment with repetitive transcranial magnetic stimulation: evidence of individual variability. , 2002, Neuropsychiatry, neuropsychology, and behavioral neurology.
[102] N. Logothetis. The neural basis of the blood-oxygen-level-dependent functional magnetic resonance imaging signal. , 2002, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[103] Marianne B. Müller,et al. Repetitive transcranial magnetic stimulation increases the release of dopamine in the mesolimbic and mesostriatal system , 2002, Neuropharmacology.
[104] Klaus P. Ebmeier,et al. Left dorso-lateral repetitive transcranial magnetic stimulation affects cortical excitability and functional connectivity, but does not impair cognition in major depression , 2002, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[105] Sauli Savolainen,et al. Ipsi- and contralateral EEG reactions to transcranial magnetic stimulation , 2002, Clinical Neurophysiology.
[106] K. Kubota,et al. Cortical Mapping of Gait in Humans: A Near-Infrared Spectroscopic Topography Study , 2001, NeuroImage.
[107] T. Paus,et al. Synchronization of neuronal activity in the human primary motor cortex by transcranial magnetic stimulation: an EEG study. , 2001, Journal of neurophysiology.
[108] A. Drzezga,et al. Continuous Transcranial Magnetic Stimulation during Positron Emission Tomography: A Suitable Tool for Imaging Regional Excitability of the Human Cortex , 2001, NeuroImage.
[109] M. Petrides,et al. Cortico‐cortical connectivity of the human mid‐dorsolateral frontal cortex and its modulation by repetitive transcranial magnetic stimulation , 2001 .
[110] M Schulzer,et al. Expectation and Dopamine Release: Mechanism of the Placebo Effect in Parkinson's Disease , 2001, Science.
[111] T. Paus,et al. Repetitive Transcranial Magnetic Stimulation of the Human Prefrontal Cortex Induces Dopamine Release in the Caudate Nucleus , 2001, The Journal of Neuroscience.
[112] C. J. Ploner,et al. In Vivo Assessment of Human Visual System Connectivity with Transcranial Electrical Stimulation during Functional Magnetic Resonance Imaging , 2001, NeuroImage.
[113] J. Kulisevsky,et al. SPECT mapping of cerebral activity changes induced by repetitive transcranial magnetic stimulation in depressed patients. A pilot study , 2001, Psychiatry Research: Neuroimaging.
[114] M. Schwaiger,et al. Activation of frontal premotor areas during suprathreshold transcranial magnetic stimulation of the left primary sensorimotor cortex: A glucose metabolic PET study , 2001, Human brain mapping.
[115] R. Post,et al. Opposite effects of high and low frequency rTMS on regional brain activity in depressed patients , 2000, Biological Psychiatry.
[116] A. Cowey,et al. Transcranial magnetic stimulation and cognitive neuroscience , 2000, Nature Reviews Neuroscience.
[117] A Villringer,et al. Saccadic Suppression Induces Focal Hypooxygenation in the Occipital Cortex , 2000, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[118] Karl J. Friston,et al. Voxel-Based Morphometry—The Methods , 2000, NeuroImage.
[119] E M Wassermann,et al. BOLD‐f MRI response to single‐pulse transcranial magnetic stimulation (TMS) , 2000, Journal of magnetic resonance imaging : JMRI.
[120] Risto J. Ilmoniemi,et al. Ethanol modulates cortical activity: Direct evidence with combined TMS and EEG , 2000, NeuroImage.
[121] J. Baudewig,et al. Artifacts caused by transcranial magnetic stimulation coils and EEG electrodes in T(2)*-weighted echo-planar imaging. , 2000, Magnetic resonance imaging.
[122] J. Rothwell,et al. Transcranial magnetic stimulation in cognitive neuroscience – virtual lesion, chronometry, and functional connectivity , 2000, Current Opinion in Neurobiology.
[123] Lutz Tellmann,et al. Modulation of the neuronal circuitry subserving working memory in healthy human subjects by repetitive transcranial magnetic stimulation , 2000, Neuroscience Letters.
[124] A. Oliviero,et al. Cerebral blood flow and metabolic changes produced by repetitive magnetic brain stimulation , 1999, Journal of Neurology.
[125] V. Nikouline,et al. The role of the coil click in TMS assessed with simultaneous EEG , 1999, Clinical Neurophysiology.
[126] O Josephs,et al. Event-related functional magnetic resonance imaging: modelling, inference and optimization. , 1999, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[127] Frode Willoch,et al. Imaging functional activation of the auditory cortex during focal repetitive transcranial magnetic stimulation of the primary motor cortex in normal subjects , 1999, Neuroscience Letters.
[128] R. Nelson,et al. Cerebral near infrared spectroscopy: emitter-detector separation must be increased. , 1999, British journal of anaesthesia.
[129] R. J. Ilmoniemi,et al. Instrumentation for the measurement of electric brain responses to transcranial magnetic stimulation , 1999, Medical & Biological Engineering & Computing.
[130] Ziad Nahas,et al. A combined TMS/fMRI study of intensity-dependent TMS over motor cortex , 1999, Biological Psychiatry.
[131] M. Jahanshahi,et al. The left dorsolateral prefrontal cortex and random generation of responses: studies with transcranial magnetic stimulation , 1998, Neuropsychologia.
[132] J. Lorberbaum,et al. Echoplanar BOLD fMRI of brain activation induced by concurrent transcranial magnetic stimulation. , 1998, Investigative radiology.
[133] A. Cowey,et al. Task–specific impairments and enhancements induced by magnetic stimulation of human visual area V5 , 1998, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[134] R. Ilmoniemi,et al. Neuronal responses to magnetic stimulation reveal cortical reactivity and connectivity , 1997, Neuroreport.
[135] T. Paus,et al. Magnetic shielding requirements for PET detectors during transcranial magnetic stimulation , 1997, 1997 IEEE Nuclear Science Symposium Conference Record.
[136] A. Villringer,et al. Non-invasive optical spectroscopy and imaging of human brain function , 1997, Trends in Neurosciences.
[137] M. Hallett,et al. Functional relevance of cross-modal plasticity in blind humans , 1997, Nature.
[138] C. Epstein,et al. Mapping transcranial magnetic stimulation (TMS) fields in vivo with MRI , 1997, Neuroreport.
[139] Alan C. Evans,et al. Transcranial Magnetic Stimulation during Positron Emission Tomography: A New Method for Studying Connectivity of the Human Cerebral Cortex , 1997, The Journal of Neuroscience.
[140] Mark Hallett,et al. Daily repetitive transcranial magnetic stimulation (rTMS) improves mood in depression , 1995, Neuroreport.
[141] M Hallett,et al. The heating of metal electrodes during rapid-rate magnetic stimulation: a possible safety hazard. , 1992, Electroencephalography and clinical neurophysiology.
[142] A. Barker,et al. NON-INVASIVE MAGNETIC STIMULATION OF HUMAN MOTOR CORTEX , 1985, The Lancet.
[143] D. Lehmann,et al. Reference-free identification of components of checkerboard-evoked multichannel potential fields. , 1980, Electroencephalography and clinical neurophysiology.
[144] A. May,et al. Structural brain alterations following 5 days of intervention: dynamic aspects of neuroplasticity. , 2007, Cerebral cortex.
[145] Yoshikazu Ugawa,et al. Long-term effect of motor cortical repetitive transcranial magnetic stimulation [correction]. , 2004, Annals of neurology.
[146] Lucy Lee,et al. Applications of combined TMS-PET studies in clinical and basic research. , 2003, Supplements to Clinical neurophysiology.
[147] K. H. Grobman,et al. Degeneracy and redundancy in cognitive anatomy , 2003 .
[148] Lucy Lee,et al. Chapter 7 Applications of combined TMS-PET studies in clinical and basic research , 2003 .
[149] J. Rothwell,et al. Transcranial magnetic stimulation: new insights into representational cortical plasticity , 2002, Experimental Brain Research.
[150] R. Ilmoniemi,et al. Optical measurement of hemodynamic changes in the contralateral motor cortex induced by transcranial magnetic stimulation , 2002 .
[151] D. Bohning,et al. Performance of a system for interleaving transcranial magnetic stimulation with steady-state magnetic resonance imaging. , 1999, Electroencephalography and clinical neurophysiology. Supplement.
[152] R J Ilmoniemi,et al. Modeling of the stimulating field generation in TMS. , 1999, Electroencephalography and clinical neurophysiology. Supplement.
[153] T. Paus,et al. Transcranial magnetic stimulation during PET: Reaching and verifying the target site , 1998, Human brain mapping.