Brain Stimulation

Papers
(The TQCC of Brain Stimulation is 2. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2020-04-01 to 2024-04-01.)
ArticleCitations
Disentangling EEG responses to TMS due to cortical and peripheral activations125
Safety and tolerability of transcranial magnetic and direct current stimulation in children: Prospective single center evidence from 3.5 million stimulations85
Large-scale analysis of interindividual variability in theta-burst stimulation data: Results from the ‘Big TMS Data Collaboration’78
Repeated stimulation of the dorsolateral-prefrontal cortex improves executive dysfunctions and craving in drug addiction: A randomized, double-blind, parallel-group study78
Electrical stimulation of cranial nerves in cognition and disease76
Sonication of the anterior thalamus with MRI-Guided transcranial focused ultrasound (tFUS) alters pain thresholds in healthy adults: A double-blind, sham-controlled study73
Supervised transcranial direct current stimulation (tDCS) at home: A guide for clinical research and practice73
Guidelines for TMS/tES clinical services and research through the COVID-19 pandemic73
The effects of direct brain stimulation in humans depend on frequency, amplitude, and white-matter proximity71
Exposure to gamma tACS in Alzheimer’s disease: A randomized, double-blind, sham-controlled, crossover, pilot study68
Modeling transcranial electrical stimulation in the aging brain64
Cortical plasticity is correlated with cognitive improvement in Alzheimer’s disease patients after rTMS treatment61
Ultrasonic thalamic stimulation in chronic disorders of consciousness61
Transcranial ultrasound stimulation in humans is associated with an auditory confound that can be effectively masked60
Stimulus frequency modulates brainstem response to respiratory-gated transcutaneous auricular vagus nerve stimulation60
Targeting repetitive transcranial magnetic stimulation in depression: do we really know what we are stimulating and how best to do it?59
Temporal interference stimulation targets deep brain regions by modulating neural oscillations58
The impact of individual electrical fields and anatomical factors on the neurophysiological outcomes of tDCS: A TMS-MEP and MRI study58
Induction of long-term potentiation-like plasticity in the primary motor cortex with repeated anodal transcranial direct current stimulation – Better effects with intensified protocols?58
Transcranial electrical stimulation motor threshold can estimate individualized tDCS dosage from reverse-calculation electric-field modeling56
Determination of anodal tDCS duration threshold for reversal of corticospinal excitability: An investigation for induction of counter-regulatory mechanisms54
A visual and narrative timeline of US FDA milestones for Transcranial Magnetic Stimulation (TMS) devices54
Histologic safety of transcranial focused ultrasound neuromodulation and magnetic resonance acoustic radiation force imaging in rhesus macaques and sheep53
Transcranial random noise stimulation is more effective than transcranial direct current stimulation for enhancing working memory in healthy individuals: Behavioural and electrophysiological evidence52
Quantitative estimation of nerve fiber engagement by vagus nerve stimulation using physiological markers52
LTP-like cortical plasticity predicts conversion to dementia in patients with memory impairment51
Transcranial focused ultrasound, pulsed at 40 Hz, activates microglia acutely and reduces Aβ load chronically, as demonstrated in vivo51
Reliability of targeting methods in TMS for depression: Beam F3 vs. 5.5 cm51
Age-related differences of motor cortex plasticity in adults: A transcranial direct current stimulation study49
Transcranial focused ultrasound stimulation with high spatial resolution49
Enhancing cognitive training effects in Alzheimer’s disease: rTMS as an add-on treatment47
Machine learning and individual variability in electric field characteristics predict tDCS treatment response47
Sonothermogenetics for noninvasive and cell-type specific deep brain neuromodulation46
Pinging the brain with transcranial magnetic stimulation reveals cortical reactivity in time and space46
Meta-analysis of the effects of transcranial direct current stimulation on inhibitory control46
Acute effects of adaptive Deep Brain Stimulation in Parkinson’s disease45
Reproducibility of cortical response modulation induced by intermittent and continuous theta-burst stimulation of the human motor cortex44
The sensitivity of ECG contamination to surgical implantation site in brain computer interfaces43
Effects of high-frequency repetitive transcranial magnetic stimulation over the contralesional motor cortex on motor recovery in severe hemiplegic stroke: A randomized clinical trial43
Safety of focused ultrasound neuromodulation in humans with temporal lobe epilepsy42
Gait-related frequency modulation of beta oscillatory activity in the subthalamic nucleus of parkinsonian patients42
Enhancing cognitive control training with transcranial direct current stimulation: a systematic parameter study41
Two weeks of image-guided left dorsolateral prefrontal cortex repetitive transcranial magnetic stimulation improves smoking cessation: A double-blind, sham-controlled, randomized clinical trial41
Neurovascular-modulation: A review of primary vascular responses to transcranial electrical stimulation as a mechanism of action40
Clinical perspectives of adaptive deep brain stimulation40
Treatment of Executive Function Deficits in autism spectrum disorder with repetitive transcranial magnetic stimulation: A double-blind, sham-controlled, pilot trial40
TMS combined with EEG: Recommendations and open issues for data collection and analysis39
Transcranial Electrical Stimulation generates electric fields in deep human brain structures39
Neural selectivity, efficiency, and dose equivalence in deep brain stimulation through pulse width tuning and segmented electrodes39
Multi-locus transcranial magnetic stimulation system for electronically targeted brain stimulation39
Transcranial laser stimulation: Mitochondrial and cerebrovascular effects in younger and older healthy adults39
Bilateral nucleus basalis of Meynert deep brain stimulation for dementia with Lewy bodies: A randomised clinical trial39
Kilohertz-frequency stimulation of the nervous system: A review of underlying mechanisms39
Closed-loop optimization of transcranial magnetic stimulation with electroencephalography feedback39
Neural closed-loop deep brain stimulation for freezing of gait38
Evoked potentials reveal neural circuits engaged by human deep brain stimulation38
High-frequency rTMS over the dorsolateral prefrontal cortex on chronic and provoked pain: A systematic review and meta-analysis38
Induction of LTD-like corticospinal plasticity by low-frequency rTMS depends on pre-stimulus phase of sensorimotor μ-rhythm38
Human Studies of Transcranial Ultrasound neuromodulation: A systematic review of effectiveness and safety37
No effect of anodal tDCS on motor cortical excitability and no evidence for responders in a large double-blind placebo-controlled trial36
Transient ultrasound stimulation has lasting effects on neuronal excitability36
Bidirectional and state-dependent modulation of brain activity by transcranial focused ultrasound in non-human primates36
Accelerated theta burst stimulation for the treatment of depression: A randomised controlled trial36
Classification accuracy of TMS for the diagnosis of mild cognitive impairment35
Beneficial nonmotor effects of subthalamic and pallidal neurostimulation in Parkinson’s disease35
Neuromodulation effects of deep brain stimulation on beta rhythm: A longitudinal local field potential study34
Effectiveness of cathodal tDCS of the primary motor or sensory cortex in migraine: A randomized controlled trial34
Differential effects of vagus nerve stimulation paradigms guide clinical development for Parkinson’s disease34
Cortical responses to noninvasive perturbations enable individual brain fingerprinting34
Phase-specific manipulation of rhythmic brain activity by transcranial alternating current stimulation33
Deep brain stimulation of the nucleus accumbens for treatment-refractory anorexia nervosa: A long-term follow-up study33
Transcranial focused ultrasound induces sustained synaptic plasticity in rat hippocampus33
Targeted tDCS selectively improves motor adaptation with the proximal and distal upper limb33
Deep brain stimulation of terminating axons32
Source-based artifact-rejection techniques available in TESA, an open-source TMS–EEG toolbox32
Structural changes induced by electroconvulsive therapy are associated with clinical outcome31
A randomized, double blind, sham-controlled trial of repetitive transcranial magnetic stimulation (rTMS) in the treatment of negative symptoms in schizophrenia31
Effects of direct current stimulation on synaptic plasticity in a single neuron31
Sound comparison of seven TMS coils at matched stimulation strength30
Individualized tDCS modeling predicts functional connectivity changes within the working memory network in older adults30
tDCS-induced modulation of GABA concentration and dopamine release in the human brain: A combination study of magnetic resonance spectroscopy and positron emission tomography30
A systematic exploration of parameters affecting evoked intracranial potentials in patients with epilepsy30
NMDA receptor partial agonist, d-cycloserine, enhances 10 Hz rTMS-induced motor plasticity, suggesting long-term potentiation (LTP) as underlying mechanism29
Neuro-cardiac coupling predicts transcutaneous auricular vagus nerve stimulation effects29
Driving associative plasticity in premotor-motor connections through a novel paired associative stimulation based on long-latency cortico-cortical interactions29
Transcranial direct current stimulation combined with exercise modulates the inflammatory profile and hyperalgesic response in rats subjected to a neuropathic pain model: Long-term effects28
The phase of sensorimotor mu and beta oscillations has the opposite effect on corticospinal excitability28
Accelerated intermittent theta-burst stimulation broadly ameliorates symptoms and cognition in Alzheimer's disease: A randomized controlled trial28
Decreased interhemispheric connectivity and increased cortical excitability in unmedicated schizophrenia: A prefrontal interleaved TMS fMRI study28
Intermittent theta burst stimulation (iTBS) versus 10 Hz high-frequency repetitive transcranial magnetic stimulation (rTMS) to alleviate treatment-resistant unipolar depression: A randomized controlle28
Wearable sensor-driven responsive deep brain stimulation for essential tremor27
A randomized sham controlled comparison of once vs twice-daily intermittent theta burst stimulation in depression: A Canadian rTMS treatment and biomarker network in depression (CARTBIND) study27
Non-invasive vagal nerve stimulation decreases brain activity during trauma scripts26
Direct comparison of efficacy of the motor cortical plasticity induction and the interindividual variability between TBS and QPS26
Anatomical and fMRI-network comparison of multiple DLPFC targeting strategies for repetitive transcranial magnetic stimulation treatment of depression26
Long term study of motivational and cognitive effects of low-intensity focused ultrasound neuromodulation in the dorsal striatum of nonhuman primates26
Targeting location relates to treatment response in active but not sham rTMS stimulation26
Individual differences in neuroanatomy and neurophysiology predict effects of transcranial alternating current stimulation26
Vasogenic edema versus neuroplasticity as neural correlates of hippocampal volume increase following electroconvulsive therapy25
Non-invasive neuromodulation using rTMS and the electromagnetic-perceptive gene (EPG) facilitates plasticity after nerve injury25
Replicable effects of deep brain stimulation for obsessive-compulsive disorder25
Meta-analysis of brain structural changes after electroconvulsive therapy in depression25
Treating the mental health effects of COVID-19: The need for at-home neurotherapeutics is now25
A direct comparison of neuronavigated and non-neuronavigated intermittent theta burst stimulation in the treatment of depression24
Electrical stimulation of the external ear acutely activates noradrenergic mechanisms in humans24
TMS with fast and accurate electronic control: Measuring the orientation sensitivity of corticomotor pathways24
A case study of weekly tACS for the treatment of major depressive disorder24
A theoretical framework for the site-specific and frequency-dependent neuronal effects of deep brain stimulation24
The differential roles of contralesional frontoparietal areas in cortical reorganization after stroke24
Local and distant cortical responses to single pulse intracranial stimulation in the human brain are differentially modulated by specific stimulation parameters24
External trigeminal nerve stimulation for drug resistant epilepsy: A randomized controlled trial24
Imaging-based programming of subthalamic nucleus deep brain stimulation in Parkinson's disease24
Accelerated neuromodulation therapy for Obsessive-Compulsive Disorder24
Comparison of clinical outcomes with two Transcranial Magnetic Stimulation treatment protocols for major depressive disorder24
Can transcranial electrical stimulation motor threshold estimate individualized tDCS doses over the prefrontal cortex? Evidence from reverse-calculation electric field modeling23
Non-invasive neuromodulation for tinnitus: A meta-analysis and modeling studies23
Deep brain stimulation of midbrain locomotor circuits in the freely moving pig23
Clinically-derived vagus nerve stimulation enhances cerebrospinal fluid penetrance23
Pulse width biases the balance of excitation and inhibition recruited by transcranial magnetic stimulation23
Real-time suppression and amplification of frequency-specific neural activity using stimulation evoked oscillations23
Intensified electrical stimulation targeting lateral and medial prefrontal cortices for the treatment of social anxiety disorder: A randomized, double-blind, parallel-group, dose-comparison study23
Sex difference in tDCS current mediated by changes in cortical anatomy: A study across young, middle and older adults23
Selective optogenetic stimulation of efferent fibers in the vagus nerve of a large mammal23
Image-based biophysical modeling predicts cortical potentials evoked with subthalamic deep brain stimulation23
A connectomic analysis of deep brain stimulation for treatment-resistant depression23
Stimulation of the right entorhinal white matter enhances visual memory encoding in humans23
Tolerability and feasibility of at-home remotely supervised transcranial direct current stimulation (RS-tDCS): Single-center evidence from 6,779 sessions22
Neuronavigation maximizes accuracy and precision in TMS positioning: Evidence from 11,230 distance, angle, and electric field modeling measurements22
Day-to-day variability in motor threshold during rTMS treatment for depression: Clinical implications22
Short-interval intracortical inhibition as a function of inter-stimulus interval: Three methods compared22
VNS parameters for clinical response in Epilepsy22
Cortico-cortical connectivity between the superior and inferior parietal lobules and the motor cortex assessed by intraoperative dual cortical stimulation22
Entrainment of cerebellar purkinje cells with directional AC electric fields in anesthetized rats22
Does pericentral mu-rhythm “power” corticomotor excitability? – A matter of EEG perspective21
Tract-based analysis of target engagement by subcallosal cingulate deep brain stimulation for treatment resistant depression21
Multi-scale modeling toolbox for single neuron and subcellular activity under Transcranial Magnetic Stimulation21
Motor cortex transcranial direct current stimulation effects on knee osteoarthritis pain in elderly subjects with dysfunctional descending pain inhibitory system: A randomized controlled trial21
Probing responses to deep brain stimulation with functional magnetic resonance imaging21
Accelerated iTBS treatment applied to the left DLPFC in depressed patients results in a rapid volume increase in the left hippocampal dentate gyrus, not driven by brain perfusion20
Transcranial direct current stimulation over the visual cortex facilitates awake consolidation of visual perceptual learning20
Effect of cerebellum stimulation on cognitive recovery in patients with Alzheimer disease: A randomized clinical trial20
Subthreshold repetitive transcranial magnetic stimulation drives structural synaptic plasticity in the young and aged motor cortex20
Utilizing transcranial direct current stimulation to enhance laparoscopic technical skills training: A randomized controlled trial20
Stoney vs. Histed: Quantifying the spatial effects of intracortical microstimulation20
Evidence of state-dependence in the effectiveness of responsive neurostimulation for seizure modulation20
Navigated repetitive transcranial magnetic stimulation improves the outcome of postsurgical paresis in glioma patients – A randomized, double-blinded trial20
Investigating high- and low-frequency neuro-cardiac-guided TMS for probing the frontal vagal pathway19
Subcortical atrophy correlates with the perturbational complexity index in patients with disorders of consciousness19
Task-dependent effects of intracranial hippocampal stimulation on human memory and hippocampal theta power19
Transcutaneous auricular vagus nerve stimulation enhances learning of novel letter-sound relationships in adults19
Transcranial direct current stimulation combined with alcohol cue inhibitory control training reduces the risk of early alcohol relapse: A randomized placebo-controlled clinical trial19
Frequency-dependent modulation of cerebellar excitability during the application of non-invasive alternating current stimulation19
Non-invasive brain stimulation for speech in Parkinson’s disease: A randomized controlled trial19
Age-dependent non-linear neuroplastic effects of cathodal tDCS in the elderly population: a titration study19
Exploring and optimizing the neuroplastic effects of anodal transcranial direct current stimulation over the primary motor cortex of older humans19
Evidence for a modulating effect of transcutaneous auricular vagus nerve stimulation (taVNS) on salivary alpha-amylase as indirect noradrenergic marker: A pooled mega-analysis19
Asymmetric transcallosal conduction delay leads to finer bimanual coordination18
Theta-burst stimulation entrains frequency-specific oscillatory responses18
A preliminary study of Parkinson’s gene therapy via sono-magnetic sensing gene vector for conquering extra/intracellular barriers in mice18
Dual-site TMS demonstrates causal functional connectivity between the left and right posterior temporal sulci during facial expression recognition18
Single-pulse stimulation of cerebellar nuclei stops epileptic thalamic activity18
Early transcranial direct current stimulation treatment exerts neuroprotective effects on 6-OHDA-induced Parkinsonism in rats18
Thalamic deep brain stimulation for Tourette Syndrome: A naturalistic trial with brief randomized, double-blinded sham-controlled periods18
Prefrontal transcranial direct-current stimulation improves early technical skills in surgery18
A two-site, open-label, non-randomized trial comparing Focal Electrically-Administered Seizure Therapy (FEAST) and right unilateral ultrabrief pulse electroconvulsive therapy (RUL-UBP ECT)18
Design and validation of a closed-loop, motor-activated auricular vagus nerve stimulation (MAAVNS) system for neurorehabilitation18
Intermittent theta-burst stimulation moderates interaction between increment of N-Acetyl-Aspartate in anterior cingulate and improvement of unipolar depression18
The influence of high-frequency repetitive transcranial magnetic stimulation on endogenous estrogen in patients with disorders of consciousness18
Organ- and function-specific anatomical organization of vagal fibers supports fascicular vagus nerve stimulation18
Multi-electrode stimulation evokes consistent spatial patterns of phosphenes and improves phosphene mapping in blind subjects18
Evoked potentials generated by deep brain stimulation for Parkinson's disease18
Low intensity repetitive magnetic stimulation reduces expression of genes related to inflammation and calcium signalling in cultured mouse cortical astrocytes17
Rapid, Dose-Dependent Enhancement of Cerebral Blood Flow by transcranial AC Stimulation in Mouse17
Four electric field modeling methods of Dosing Prefrontal Transcranial Magnetic Stimulation (TMS): Introducing APEX MT dosimetry17
Brain-derived neurotrophic factor (BDNF) polymorphism may influence the efficacy of tACS to modulate neural oscillations17
Multi-modal investigation of transcranial ultrasound-induced neuroplasticity of the human motor cortex17
Depressive symptom trajectories associated with standard and accelerated rTMS17
The efficacy and safety of transcutaneous auricular vagus nerve stimulation in patients with mild cognitive impairment: A double blinded randomized clinical trial17
Database of 25 validated coil models for electric field simulations for TMS17
Brain functional effects of electroconvulsive therapy during emotional processing in major depressive disorder17
Entrainment of cerebellar Purkinje cell spiking activity using pulsed ultrasound stimulation17
The ictal EEG in ECT: A systematic review of the relationships between ictal features, ECT technique, seizure threshold and outcomes17
Electrified microglia: Impact of direct current stimulation on diverse properties of the most versatile brain cell17
Microstimulation-evoked neural responses in visual cortex are depth dependent16
Subthreshold stimulation intensity is associated with greater clinical efficacy of intermittent theta-burst stimulation priming for Major Depressive Disorder16
A minimum effective dose for (transcranial) alternating current stimulation16
NMDA-receptor agonist reveals LTP-like properties of 10-Hz rTMS in the human motor cortex16
Estimation of individually induced e-field strength during transcranial electric stimulation using the head circumference16
Changes in seizure duration during acute course electroconvulsive therapy16
Two forms of short-interval intracortical inhibition in human motor cortex16
Vagus nerve stimulation increases stomach-brain coupling via a vagal afferent pathway16
Randomized double-blind sham-controlled trial of thalamic versus GPi stimulation in patients with severe medically refractory Gilles de la Tourette syndrome16
Neurophysiological and behavioral effects of multisession prefrontal tDCS and concurrent cognitive remediation training in patients with autism spectrum disorder (ASD): A double-blind, randomized cont16
A range of pulses commonly used for human transcranial ultrasound stimulation are clearly audible15
Prefrontal theta phase-dependent rTMS-induced plasticity of cortical and behavioral responses in human cortex15
Transcranial direct current stimulation: A novel approach in the treatment of vascular depression15
Non-invasive optogenetics with ultrasound-mediated gene delivery and red-light excitation15
The impact of electroconvulsive therapy on brain grey matter volume: What does it mean?15
Daily prefrontal closed-loop repetitive transcranial magnetic stimulation (rTMS) produces progressive EEG quasi-alpha phase entrainment in depressed adults15
Long-term update of the effect of spinal cord stimulation in advanced Parkinson’s disease patients15
Measuring latency distribution of transcallosal fibers using transcranial magnetic stimulation15
Imaging versus electrographic connectivity in human mood-related fronto-temporal networks15
Neuromodulatory treatments for psychiatric disease: A comprehensive survey of the clinical trial landscape15
Phase- targeted stimulation modulates phase-amplitude coupling in the motor cortex of the human brain15
Seizure risk with repetitive TMS: Survey results from over a half-million treatment sessions14
Transcutaneous auricular vagus nerve stimulation influences gastric motility: A randomized, double-blind trial in healthy individuals14
Disruption of hippocampal rhythms via optogenetic stimulation during the critical period for memory development impairs spatial cognition14
Alternate sessions of transcranial direct current stimulation (tDCS) reduce chronic pain in women affected by chikungunya. A randomized clinical trial14
Targeting the frontoparietal network using bifocal transcranial alternating current stimulation during a motor sequence learning task in healthy older adults14
Transcranial magnetic stimulation and functional magnet resonance imaging evaluation of adductor spasmodic dysphonia during phonation14
Dissociating the causal role of left and right dorsal premotor cortices in planning and executing bimanual movements – A neuro-navigated rTMS study14
Low frequency centromedian thalamic nuclei deep brain stimulation for the treatment of super refractory status epilepticus: A case report and a review of the literature14
Biophysical mechanisms of electroconvulsive therapy-induced volume expansion in the medial temporal lobe: A longitudinal in vivo human imaging study14
Comparison of clinical outcomes with left unilateral and sequential bilateral Transcranial Magnetic Stimulation (TMS) treatment of major depressive disorder in a large patient registry14
Weak DCS causes a relatively strong cumulative boost of synaptic plasticity with spaced learning13
Sonogenetics: Recent advances and future directions13
Efficacy and safety of simultaneous rTMS–tDCS over bilateral angular gyrus on neuropsychiatric symptoms in patients with moderate Alzheimer's disease: A prospective, randomized, sham-controlled pilot 13
No risk of skin lesion or burn with transcranial direct current stimulation (tDCS) using standardized protocols13
The effect of meninges on the electric fields in TES and TMS. Numerical modeling with adaptive mesh refinement13
Acute low frequency dorsal subthalamic nucleus stimulation improves verbal fluency in Parkinson's disease13
Reliable use of silver chloride HD-tDCS electrodes13
High resolution ultrasonic neural modulation observed via in vivo two-photon calcium imaging13
Effects of stimulus pulse rate on somatosensory adaptation in the human cortex13
Transcranial direct current stimulation over the tongue motor cortex reduces appetite in healthy humans13
Adaptive Deep Brain Stimulation for sleep stage targeting in Parkinson’s disease13
The benefits and costs of changing treatment technique in electroconvulsive therapy due to insufficient improvement of a major depressive episode13
Eye movements and the perceived location of phosphenes generated by intracranial primary visual cortex stimulation in the blind13
Mechanistic insights into ultrasonic neurostimulation of disconnected neurons using single short pulses13
Neuronal oscillations predict deep brain stimulation outcome in Parkinson's disease13
Telehealth transcranial direct current stimulation for recovery from Post-Acute Sequelae of SARS-CoV-2 (PASC)13
On the importance of using both T1-weighted and T2-weighted structural magnetic resonance imaging scans to model electric fields induced by non-invasive brain stimulation in SimNIBS13
Lack of clinical response to deep brain stimulation of the medial forebrain bundle in depression13
How I became myself after merging with a computer: Does human-machine symbiosis raise human rights issues?13
Structural and functional correlates of subthalamic deep brain stimulation-induced apathy in Parkinson’s disease13
Ictal connectivity changes induced by pulvinar stimulation correlate with improvement of awareness12
Transcranial direct current stimulation for fatigue in patients with Sjogren’s syndrome: A randomized, double-blind pilot study12
Magnetic-field-synchronized wireless modulation of neural activity by magnetoelectric nanoparticles12
How structural and functional MRI can inform dual-site tACS parameters: A case study in a clinical population and its pragmatic implications12
Evoking highly focal percepts in the fingertips through targeted stimulation of sulcal regions of the brain for sensory restoration12
Inverse associations between cerebellar inhibition and motor impairment in spinocerebellar ataxia type 312
Personalized TMS helmets for quick and reliable TMS administration outside of a laboratory setting12
The role of low-frequency repetitive transcranial magnetic stimulation in major depression: A call to increase the evidence base12
Generating artificial sensations with spinal cord stimulation in primates and rodents12
Normal component of TMS-induced electric field is correlated with depressive symptom relief in treatment-resistant depression12
1Hz rTMS over left DLPFC rewired the coordination with hippocampus in insomnia patients: A pilot study12
Can individually targeted and optimized multi-channel tDCS outperform standard bipolar tDCS in stimulating the primary somatosensory cortex?12
External induction and stabilization of brain oscillations in the human12
Moving to accelerated protocols of tDCS in schizophrenia: A case report12
The therapeutic potential of personalized connectivity-guided transcranial magnetic stimulation target over group-average target for depression12
Boosting visual perceptual learning by transcranial alternating current stimulation over the visual cortex at alpha frequency12
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