Published in Nat Rev Neurosci on April 01, 2005
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Beta- and gamma-frequency coupling between olfactory and motor brain regions prior to skilled, olfactory-driven reaching. Exp Brain Res (2007) 0.92
Increased resting-state functional connectivity in obese adolescents; a magnetoencephalographic pilot study. PLoS One (2008) 0.91
Distinguishing the central drive to tremor in Parkinson's disease and essential tremor. J Neurosci (2015) 0.91
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The hypnotic zolpidem increases the synchrony of BOLD signal fluctuations in widespread brain networks during a resting paradigm. Neuroimage (2013) 0.85
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Insulin modulation of magnetoencephalographic resting state dynamics in lean and obese subjects. Front Syst Neurosci (2010) 0.84
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Traumatic brain injury detection using electrophysiological methods. Front Hum Neurosci (2015) 0.82
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A computational role for bistability and traveling waves in motor cortex. Front Comput Neurosci (2012) 0.81
Dopamine replacement modulates oscillatory coupling between premotor and motor cortical areas in Parkinson's disease. Cereb Cortex (2013) 0.81
Source connectivity analysis with MEG and EEG. Hum Brain Mapp (2009) 2.91
On the role of prestimulus alpha rhythms over occipito-parietal areas in visual input regulation: correlation or causation? J Neurosci (2010) 2.56
The cerebral oscillatory network of parkinsonian resting tremor. Brain (2003) 2.22
Sounds reset rhythms of visual cortex and corresponding human visual perception. Curr Biol (2012) 2.16
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Rhythmic TMS causes local entrainment of natural oscillatory signatures. Curr Biol (2011) 1.77
Phase-locked responses to speech in human auditory cortex are enhanced during comprehension. Cereb Cortex (2012) 1.71
The functional importance of rhythmic activity in the brain. Curr Biol (2012) 1.40
Ten-Hertz stimulation of subthalamic nucleus deteriorates motor symptoms in Parkinson's disease. Mov Disord (2004) 1.40
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Steady-state visual evoked potentials can be explained by temporal superposition of transient event-related responses. PLoS One (2011) 1.29
The role of α oscillations in temporal attention. Brain Res Rev (2011) 1.22
Oscillatory activity reflects the excitability of the human somatosensory system. Neuroimage (2006) 1.21
Cortical representation of first and second pain sensation in humans. Proc Natl Acad Sci U S A (2002) 1.20
The effect of filtering on Granger causality based multivariate causality measures. Neuroimage (2009) 1.20
How the brain blinks: towards a neurocognitive model of the attentional blink. Psychol Res (2005) 1.17
Frequency-dependent reciprocal modulation of verbal fluency and motor functions in subthalamic deep brain stimulation. Arch Neurol (2006) 1.16
Synchronized brain network associated with essential tremor as revealed by magnetoencephalography. Mov Disord (2009) 1.13
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The cerebral oscillatory network associated with auditorily paced finger movements. Neuroimage (2004) 1.04
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Oscillatory coupling in writing and writer's cramp. J Physiol Paris (2005) 0.96
Gamma oscillations as a neuronal correlate of the attentional effects of pain. Pain (2010) 0.96
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Localization of correlated network activity at the cortical level with MEG. Neuroimage (2007) 0.92
Differential effects of levodopa and subthalamic nucleus deep brain stimulation on bradykinesia in Parkinson's disease. Mov Disord (2008) 0.91
Target consolidation under high temporal processing demands as revealed by MEG. Neuroimage (2005) 0.90
Levodopa affects functional brain networks in Parkinsonian resting tremor. Mov Disord (2009) 0.89
Functional integration within the human pain system as revealed by Granger causality. Hum Brain Mapp (2009) 0.89
Wilson's disease tremor is associated with magnetic resonance imaging lesions in basal ganglia structures. Mov Disord (2006) 0.89
Alpha entrainment is responsible for the attentional blink phenomenon. Neuroimage (2012) 0.87
Functional connectivity analysis in magnetoencephalography. Int Rev Neurobiol (2005) 0.87
The oscillatory network of simple repetitive bimanual movements. Brain Res Cogn Brain Res (2005) 0.87
Dissociated α-band modulations in the dorsal and ventral visual pathways in visuospatial attention and perception. Cereb Cortex (2012) 0.87
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The early spatio-temporal correlates and task independence of cerebral voice processing studied with MEG. Cereb Cortex (2012) 0.84
How the brain controls repetitive finger movements. J Physiol Paris (2005) 0.84
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Ten Hertz thalamus stimulation increases tremor activity in the subthalamic nucleus in a patient with Parkinson's disease. Clin Neurophysiol (2008) 0.82
Synchronized brain network underlying postural tremor in Wilson's disease. Mov Disord (2006) 0.81
Recurrent activity in higher order, modality non-specific brain regions: a Granger causality analysis of autobiographic memory retrieval. PLoS One (2011) 0.80
Pain processing is faster than tactile processing in the human brain. J Neurosci (2006) 0.80
Making sense: Dopamine activates conscious self-monitoring through medial prefrontal cortex. Hum Brain Mapp (2015) 0.80
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Improving the interpretability of all-to-all pairwise source connectivity analysis in MEG with nonhomogeneous smoothing. Hum Brain Mapp (2011) 0.79
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Investigating causality between interacting brain areas with multivariate autoregressive models of MEG sensor data. Hum Brain Mapp (2012) 0.78
Causality between local field potentials of the subthalamic nucleus and electromyograms of forearm muscles in Parkinson's disease. Eur J Neurosci (2010) 0.77
Postural tremor in Wilson's disease: a magnetoencephalographic study. Mov Disord (2004) 0.76
Coupling between cerebellar hemispheres: behavioural, anatomic, and functional data. Cerebellum (2006) 0.76
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Spatiotemporal smoothing of single trial MEG data. J Neurosci Methods (2011) 0.75
The isotropic-nematic phase transition of tangent hard-sphere chain fluids--pure components. J Chem Phys (2013) 0.75
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Nonequilibrium thermodynamics of interfaces using classical density functional theory. J Chem Phys (2008) 0.75
Determining force field parameters using a physically based equation of state. J Phys Chem B (2011) 0.75
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Evoked response amplitudes from somatosensory cortices do not determine reaction times to tactile stimuli. Eur J Neurosci (2007) 0.75