nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
A case of COVID-encephalopathy imaged with fMRI and treated with near infrared light
|
Haroon, Jonathan |
|
|
14 |
6 |
p. 1444-1446 |
artikel |
2 |
A Case of COVID-encephalopathy Imaged with fMRI and Treated with Near Infrared Light
|
Haroon, Jonathan |
|
|
14 |
6 |
p. 1706 |
artikel |
3 |
A case of successful treatment of intractable focal epilepsy with transcranial magnetic stimulation
|
Starnes, Donnie |
|
|
14 |
6 |
p. 1698 |
artikel |
4 |
A case study of low-intensity focused ultrasound for treatment-resistant generalized anxiety disorder and major depressive disorder
|
Zielinski, Maggie |
|
|
14 |
6 |
p. 1667 |
artikel |
5 |
Accelerated neuromodulation therapy for obsessive-compulsive disorder
|
Williams, Nolan |
|
|
14 |
6 |
p. 1718 |
artikel |
6 |
Accelerated rTMS and cognitive training in chronic stroke: a safety and feasibility study
|
Fleischmann, Holly |
|
|
14 |
6 |
p. 1625 |
artikel |
7 |
Accelerated rTMS for enhancing intact cognition: examining safety and the dose-response relationship
|
Cox, Claire |
|
|
14 |
6 |
p. 1705 |
artikel |
8 |
Accelerated rTMS for Intact and Impaired Cognition: Establishing Safety, Neurocircuit Effects, and the Dose-Response Relationship
|
McTeague, Lisa |
|
|
14 |
6 |
p. 1719 |
artikel |
9 |
A 28-channel receive-only imaging coil array for concurrent multichannel TMS and fMRI acquisition at 3T
|
Navarro de Lara, Lucia |
|
|
14 |
6 |
p. 1699 |
artikel |
10 |
A comparison of symptom-specific resting state functional connectivity biomarkers of 10 Hz and iTBS-rTMS in treatment-resistant depression
|
Dunlop, Katharine |
|
|
14 |
6 |
p. 1712 |
artikel |
11 |
A computational basal ganglia-thalamocortical circuitry model for Parkinson’s disease
|
Tortolero, Ivan Carmona |
|
|
14 |
6 |
p. 1617 |
artikel |
12 |
A computational comparison of the electrical fields induced by electrode montage types for transcranial direct current stimulation – a preliminary study
|
Lee, Jongseung |
|
|
14 |
6 |
p. 1648 |
artikel |
13 |
A computational model to guide the functional decoupling of two brain regions with transcranial alternating current stimulation
|
Cabrera-Álvarez, Jesús |
|
|
14 |
6 |
p. 1613 |
artikel |
14 |
Activation of specific vagus nerve fiber subsets to regulate immune responses
|
Chang, Eric |
|
|
14 |
6 |
p. 1708 |
artikel |
15 |
Acute effects of transcranial Direct Current Stimulation (tDCS) and Transcutaneous Electrical Spinal Stimulation (TESS) neuromodulation on post-stroke walking performance
|
Seamon, Bryant |
|
|
14 |
6 |
p. 1696 |
artikel |
16 |
Adaptive cross approximation for E-field-guided non-invasive magnetic brain stimulation
|
Wang, Dezhi |
|
|
14 |
6 |
p. 1653-1654 |
artikel |
17 |
Adaptive deep brain stimulation in real world: First observational data from the Japanese Early Adapter studies on adaptive deep brain stimulation (aDBS)
|
Oyama, Genko |
|
|
14 |
6 |
p. 1600-1601 |
artikel |
18 |
A deep learning approach to evaluating sex differences in antidepressant response to neuromodulation using EEG in major depressive disorder
|
Adamson, Maheen |
|
|
14 |
6 |
p. 1674 |
artikel |
19 |
A deep learning model for a priori estimation of spatiotemporal regions for neuroimaging guided non-invasive brain stimulation
|
Rahul, F.N.U. |
|
|
14 |
6 |
p. 1689 |
artikel |
20 |
A digital transcranial magnetic stimulator for generating arbitrary pulse-shapes and patterns
|
Sorkhabi, Majid Memarian |
|
|
14 |
6 |
p. 1613-1614 |
artikel |
21 |
Administration of 4 mA tDCS to a person with progressive supranuclear palsy leads to improved walking speed
|
Roncero, Carlos |
|
|
14 |
6 |
p. 1563-1565 |
artikel |
22 |
Adverse childhood experiences and repetitive transcranial magnetic stimulation outcomes for depression
|
Ng, Enoch |
|
|
14 |
6 |
p. 1624-1625 |
artikel |
23 |
Age-related alterations of task-related but not task-free TMS-EEG profile correspond to PET-derived GABAA receptor availability
|
Heise, Kirstin-Friederike |
|
|
14 |
6 |
p. 1651 |
artikel |
24 |
Agile TMS: A multi-locus system for rapid and automatic spatial targeting and mapping
|
Nieminen, Jaakko |
|
|
14 |
6 |
p. 1750 |
artikel |
25 |
A large open source neuromodulation dataset of concurrent EEG, ECG, behavior, and transcranial electrical stimulation
|
Gebodh, Nigel |
|
|
14 |
6 |
p. 1622 |
artikel |
26 |
A large, prospective, double-blind trial of vagus nerve stimulation in difficult to treat depression
|
CONWAY, CHARLES |
|
|
14 |
6 |
p. 1724-1725 |
artikel |
27 |
Alpha-peak power modulation with transcranial alternate current stimulation for Alzheimer’s Disease – A pilot study in healthy controls(tACS)
|
Gómez, Martín Carrasco |
|
|
14 |
6 |
p. 1691 |
artikel |
28 |
A 6-month naturalistic study of depression and insomnia using transcranial magnetic stimulation (TMS) in 100 patients with treatment-resistant depression demonstrating response and durability
|
Stultz, Debra |
|
|
14 |
6 |
p. 1655 |
artikel |
29 |
Amplitude and frequency modulation of subthalamic beta oscillations as biomarkers of the dopaminergic state in Parkinson’s disease
|
Averna, Alberto |
|
|
14 |
6 |
p. 1602 |
artikel |
30 |
Analysis of secondary behavioral outcomes in patients undergoing tDCS and CBT for pain and opioid misuse
|
Ault, Abagail |
|
|
14 |
6 |
p. 1625 |
artikel |
31 |
Anatomical determinants of individually induced electric fields in human participants
|
Antonenko, Daria |
|
|
14 |
6 |
p. 1738-1739 |
artikel |
32 |
An efficient algorithm for electrode optimization of transcranial temporal interference stimulation
|
Rampersad, Sumientra |
|
|
14 |
6 |
p. 1619 |
artikel |
33 |
An epilepsy network derived from human brain lesions and deep brain stimulation
|
Schaper, Frederic |
|
|
14 |
6 |
p. 1643-1644 |
artikel |
34 |
An improved system for simultaneous transcranial magnetic stimulation and single-unit recordings in non-human primates
|
Kothare, Raveena |
|
|
14 |
6 |
p. 1690 |
artikel |
35 |
An individualized Neural Mass Model of ictal activity based on GABA-A pathology for personalization of brain stimulation protocols in epilepsy
|
Lopez-Sola, Edmundo |
|
|
14 |
6 |
p. 1677 |
artikel |
36 |
An in-silico modeling approach to determine optimal electrode configurations for interferential deep brain stimulation using epicranial electrodes
|
Khatoun, Ahmad |
|
|
14 |
6 |
p. 1673-1674 |
artikel |
37 |
An open-source platform for robotized transcranial magnetic stimulation
|
Matsuda, Renan H. |
|
|
14 |
6 |
p. 1659 |
artikel |
38 |
A novel approach to closed-loop neuromodulation with machine learning
|
Gebodh, Nigel |
|
|
14 |
6 |
p. 1662 |
artikel |
39 |
A Novel Design of Electrode Holder for High-Definition Transcranial Electrical Stimulation
|
Solomons, Cassandra |
|
|
14 |
6 |
p. 1692 |
artikel |
40 |
A novel paired associative stimulation protocol with a high-frequency peripheral component: review of results in spinal cord injury rehabilitation. (Part of the symposium "Navigated TMS - based techniques in rehabilitation of motor function: diagnostics, prognostics, therapy", ID 14)
|
Shulga, Anastasia |
|
|
14 |
6 |
p. 1742 |
artikel |
41 |
Anterior posterior pad surround (APPS) tDCS for higher electric field intensity and focality in the primary motor cortex
|
Caulfield, Kevin |
|
|
14 |
6 |
p. 1618-1619 |
artikel |
42 |
A physical neural mass modeling framework for laminar cortical circuits in brain stimulation
|
Sanchez-Todo, Roser |
|
|
14 |
6 |
p. 1592 |
artikel |
43 |
A pilot study of low-intensity focused ultrasound for treatment-resistant generalized anxiety disorder
|
Mahdavi, Kennedy |
|
|
14 |
6 |
p. 1627 |
artikel |
44 |
A pilot trial applying 18-sessions of repetitive transcranial magnetic stimulation to the dorsolateral prefrontal cortex of participants undergoing acute medically-managed withdrawal from opioids over three-days
|
Sahlem, Gregory L. |
|
|
14 |
6 |
p. 1659 |
artikel |
45 |
A Pilot Trial Examining the Merits of Combining Amantadine and Repetitive Transcranial Magnetic Stimulation as an Intervention for Persons With Disordered Consciousness After TBI
|
Kletzel, Sandra |
|
|
14 |
6 |
p. 1720-1721 |
artikel |
46 |
A polygenic-informed approach to a predictive EEG signature empowers stratified antidepressant treatment
|
Meijs, Hannah |
|
|
14 |
6 |
p. 1694-1695 |
artikel |
47 |
App-based ecological momentary assessment and symptom-adaptive scheduling of TMS maintenance treatments to prevent depressive episode recurrence
|
Carpenter, Linda |
|
|
14 |
6 |
p. 1705 |
artikel |
48 |
App-based Psychological Interventions and Home-use Brain Stimulation for Depression (PSYLECT)
|
Brunoni, Andre |
|
|
14 |
6 |
p. 1731-1732 |
artikel |
49 |
Application of repetitive transcranial magnetic stimulation treatment benefits language performance in Alzheimer’s disease: a case study
|
Roumpea, Georgia |
|
|
14 |
6 |
p. 1607-1608 |
artikel |
50 |
Application of transcranial electrical stimulation in improving motor performance
|
Zhang, Na |
|
|
14 |
6 |
p. 1679-1680 |
artikel |
51 |
A prospective, multi-center randomized, controlled, blinded trial of vagus nerve stimulation for difficult to treat depression: A novel design for a novel treatment
|
Conway, Charles |
|
|
14 |
6 |
p. 1666 |
artikel |
52 |
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) study
|
Blumberger, Daniel M. |
|
|
14 |
6 |
p. 1447-1455 |
artikel |
53 |
A rat model to understand tDCS mechanistic underpinnings
|
van Boekholdt, Luuk |
|
|
14 |
6 |
p. 1671 |
artikel |
54 |
A regionally generalizable, image-guided strategy for stereotactic TMS targeting
|
Fox, Peter |
|
|
14 |
6 |
p. 1734 |
artikel |
55 |
A reliability study of anatomical landmark localization in computational brain model for transcranial direct current stimulation
|
Kim, TaeYeong |
|
|
14 |
6 |
p. 1606-1607 |
artikel |
56 |
A rodent model of acute vagus nerve stimulation for modulation of gastric function characterized by a gastric balloon
|
Tovbis, Daniel |
|
|
14 |
6 |
p. 1682 |
artikel |
57 |
ArTGen: An Arduino-based trigger generator to remotely handle pulse timing in TMS units
|
Varone, Giuseppe |
|
|
14 |
6 |
p. 1688 |
artikel |
58 |
Association between tDCS induced GABA change and estimated electric field in the cortex
|
Nandi, Tulika |
|
|
14 |
6 |
p. 1606 |
artikel |
59 |
A systematic review of the safety profile and key variables in accelerated rTMS
|
Caulfield, Kevin |
|
|
14 |
6 |
p. 1718-1719 |
artikel |
60 |
At-Home Telemedicine Controlled taVNS Twice Daily for 4 weeks is Feasible and Safe for Long COVID Symptoms.
|
Huffman, Sarah |
|
|
14 |
6 |
p. 1702-1703 |
artikel |
61 |
At-home telemedicine controlled taVNS twice daily for 4 weeks reduces long COVID symptoms of anxiety and fatigue
|
Austelle, Christopher |
|
|
14 |
6 |
p. 1703 |
artikel |
62 |
Attenuating anger and aggression with neuromodulation of the vmPFC: A simultaneous tDCS-fMRI study
|
Gilam, Gadi |
|
|
14 |
6 |
p. 1719-1720 |
artikel |
63 |
Automated deep brain stimulation programing with safety constraints for tremor suppression
|
Sarikhani, Parisa |
|
|
14 |
6 |
p. 1699-1700 |
artikel |
64 |
Baseline rumination levels as a predictor of response to repetitive transcranial magnetic stimulation in major depressive disorder
|
Chu, Tian Ren |
|
|
14 |
6 |
p. 1595 |
artikel |
65 |
Baseline symptom profile does not predict early response to electroconvulsive therapy (ECT) in major depressive disorder (MDD)
|
Zarrabi, Bijan |
|
|
14 |
6 |
p. 1625 |
artikel |
66 |
Best phase-forecasting method for brain-state dependent stimulation: A grid-search approach
|
Bigoni, Claudia |
|
|
14 |
6 |
p. 1641 |
artikel |
67 |
Best toolbox: brain electrophysiological recording & stimulation toolbox
|
Hassan, Umair |
|
|
14 |
6 |
p. 1597 |
artikel |
68 |
Bihemispheric motor oscillatory network states determine cortical responses to transcranial magnetic stimulation
|
Bai, Yang |
|
|
14 |
6 |
p. 1675 |
artikel |
69 |
Brain and vagus nerve stimulation: a neurovisceral integration perspective
|
Thayer, Julian |
|
|
14 |
6 |
p. 1750 |
artikel |
70 |
Brainmarker-I: a transdiagnostic EEG biomarker predicting remission to various depression and ADHD treatments
|
Voetterl, Helena |
|
|
14 |
6 |
p. 1676 |
artikel |
71 |
Brain plasticity in frontal traumatic brain injury. Biomarker of severity and intervention efficacy
|
Serradell-Ribé, Núria |
|
|
14 |
6 |
p. 1648-1649 |
artikel |
72 |
Brain-wide neural dynamics of post-stroke recovery induced by optogenetic stimulation
|
Vahdat, Shahabeddin |
|
|
14 |
6 |
p. 1656 |
artikel |
73 |
Can pallidal deep brain stimulation generate high-frequency oscillations in basal ganglia in dystonia? A case report
|
Vidmark, Jessica |
|
|
14 |
6 |
p. 1671-1672 |
artikel |
74 |
Can tDCS affect acquisition of a simple motor skill in neurotypical adults?
|
Lynn, McCane |
|
|
14 |
6 |
p. 1662 |
artikel |
75 |
Can topical application of numbing cream improve the efficacy of sham TDCS?
|
Liu, Marie Louise |
|
|
14 |
6 |
p. 1668 |
artikel |
76 |
Causal evidence for distinct mechanisms of prioritization and suppression in the control of working memory
|
Riddle, Justin |
|
|
14 |
6 |
p. 1596 |
artikel |
77 |
Cellular mechanisms of electromagnetic neuromodulation therapy
|
DiLazzaro, Vincenzo |
|
|
14 |
6 |
p. 1734 |
artikel |
78 |
Cerebellar rTMS for postural instability in progressive supranuclear palsy: preliminary results from a crossover study
|
Dale, Marian |
|
|
14 |
6 |
p. 1620 |
artikel |
79 |
Cerebello-cortical connectivity in essential tremor
|
Ammann, Claudia |
|
|
14 |
6 |
p. 1739 |
artikel |
80 |
Cerebrocortical signatures of cerebellar transcranial magnetic stimulation
|
Gaßmann, Lukas |
|
|
14 |
6 |
p. 1631 |
artikel |
81 |
Changes in brain functional connectivity following theta burst stimulation augmented with cognitive training for the treatment of youth depression
|
Schwartzmann, Benjamin |
|
|
14 |
6 |
p. 1660-1661 |
artikel |
82 |
Characterizing Direct Cortical Responses to TMS
|
Biabani, Mana |
|
|
14 |
6 |
p. 1750-1751 |
artikel |
83 |
Characterizing stimulus response curves in hand, postural, and lower-extremity corticomotor representations
|
Canino, Maria |
|
|
14 |
6 |
p. 1650 |
artikel |
84 |
Chemo/optogenetic stimulation and photometry monitoring of neuron activity in mice
|
Yang, Yunlei |
|
|
14 |
6 |
p. 1594 |
artikel |
85 |
Clinical effectiveness of 1 Hz/20 Hz bilateral rTMS treatment in adolescents with major depressive disorder
|
Croarkin, Paul |
|
|
14 |
6 |
p. 1613 |
artikel |
86 |
Clinical effects of immersive multimodal bci-vr training after bilateral stimulation with rtms on upper limb motor recovery after stroke
|
Sánchez Cuesta, Francisco José |
|
|
14 |
6 |
p. 1629 |
artikel |
87 |
Clinical TMS in veterans decreases measures that predict suicide risk
|
Forman, Steven |
|
|
14 |
6 |
p. 1694 |
artikel |
88 |
Clinical VIM targeting for deep brain stimulation based on an augmented intelligence. The RebrAIn solution
|
Engelhardt, Julien |
|
|
14 |
6 |
p. 1634-1635 |
artikel |
89 |
Closed-loop cortical network stimulation as a treatment for epilepsy arising from the primary motor cortex
|
van Blooijs, D. |
|
|
14 |
6 |
p. 1644-1645 |
artikel |
90 |
Closed-loop optimization of transcranial magnetic stimulation parameters with electroencephalography feedback
|
Tervo, Aino E. |
|
|
14 |
6 |
p. 1674 |
artikel |
91 |
Cognitively impaired older adults exhibit diminished rise in I/O curve with TMS
|
Sundman, Mark |
|
|
14 |
6 |
p. 1655 |
artikel |
92 |
Cognitive training with and without transcranial direct current stimulation in older adults with HIV-related cognitive deficits: Delayed impact on mood
|
Ownby, Raymond |
|
|
14 |
6 |
p. 1700 |
artikel |
93 |
Combined bilateral frontal + cerebellar tDCS as a potential intervention for treatment-resistant depression
|
Dini, Michelangelo |
|
|
14 |
6 |
p. 1647 |
artikel |
94 |
Combined rTMS/fMRI over the Motor and Prefrontal Brain Areas for Testing Therapeutic rTMS Protocols
|
Chang, Kai-Yen |
|
|
14 |
6 |
p. 1686 |
artikel |
95 |
Combining EEG and MRI data to personalize neurostimulation for focal epilepsy; an open-source software implementation
|
Beumer, Steven |
|
|
14 |
6 |
p. 1681 |
artikel |
96 |
Comparative effectiveness of multisession transcranial direct current stimulation and peripheral nerve somatosensory stimulation for enhancing corticospinal excitability and improving hand function in individuals with chronic cervical spinal cord injury
|
Zarkou, Anastasia |
|
|
14 |
6 |
p. 1649 |
artikel |
97 |
Comparing temporal interference stimulation and other kilohertz stimulation modalities using computational models
|
Wang, Boshuo |
|
|
14 |
6 |
p. 1679 |
artikel |
98 |
Comparing the efficacy of unihemispheric and bihemispheric transcranial pulsed current stimulation for enhancing corticospinal excitability and improving hand function in individuals with cervical spinal cord injury
|
Iddings, Jennifer |
|
|
14 |
6 |
p. 1610 |
artikel |
99 |
Comparing Therapeutic Focused Ultrasound (tfUS) in Conjunction with Bosutinib versus Independent tfUS Administration Among Alzheimer’s Patients
|
Zielinski, Margaret |
|
|
14 |
6 |
p. 1627 |
artikel |
100 |
Comparing two deliveries of non-invasive vagus nerve stimulation to enhance auditory category learning: Benefits for priming over peristimulus stimulation
|
Pandža, Nick |
|
|
14 |
6 |
p. 1658 |
artikel |
101 |
Comparison of clinical outcomes with left unilateral and sequential bilateral transcranial magnetic stimulation treatment of major depressive disorder in a large patient registry
|
Sackeim, Harold |
|
|
14 |
6 |
p. 1717-1718 |
artikel |
102 |
Comparison of transcranial focused ultrasound (tFUS) and transcranial pulsed stimulation (TPS) for neuromodulation: a computational study
|
Truong, Dennis |
|
|
14 |
6 |
p. 1595 |
artikel |
103 |
Computational modelling of individualised E-I balance post lesion using noninvasive Brain-State-Dependent electrical (BSDE) stimulation therapy
|
Roy, Dipanjan |
|
|
14 |
6 |
p. 1714 |
artikel |
104 |
Computational model of electroconvulsive therapy considering electric field dependent skin conductivity
|
Unal, Gozde |
|
|
14 |
6 |
p. 1700 |
artikel |
105 |
Computational targeting and dosing in navigated multichannel TMS arrays
|
Daneshzand, Mohammad |
|
|
14 |
6 |
p. 1701-1702 |
artikel |
106 |
Concurrent conventional & high-definition transcranial direct current stimulation for treatment of schizophrenia with co-morbid obsessive-compulsive disorder: A case report
|
Nayok, Swarna Buddha |
|
|
14 |
6 |
p. 1483-1485 |
artikel |
107 |
Concurrent Intracranial and Extracranial Electrophysiological Recordings in Humans: relevance for deep brain stimulation in psychiatric disorders
|
Denys, D. |
|
|
14 |
6 |
p. 1728 |
artikel |
108 |
Concurrent TMS/fMRI validates MDD target network engagement
|
Tik, Martin |
|
|
14 |
6 |
p. 1710 |
artikel |
109 |
Concurrent TMS/fMRI with high sensitivity and accelerated image acquisition
|
Windischberger, Christian |
|
|
14 |
6 |
p. 1723 |
artikel |
110 |
Configuring intracortical microelectrode arrays and stimulus parameters to minimize neuron loss during prolonged intracortical electrical stimulation
|
McCreery, Douglas |
|
|
14 |
6 |
p. 1553-1562 |
artikel |
111 |
Connectome DBS for psychiatric disorders
|
Choi, Ki Sueng |
|
|
14 |
6 |
p. 1735-1736 |
artikel |
112 |
Connectome-targeted neuromodulation across symptoms and disorders
|
Siddiqi, Shan |
|
|
14 |
6 |
p. 1712 |
artikel |
113 |
Connectomic deep brain stimulation for obsessive compulsive disorder
|
Horn, Andreas |
|
|
14 |
6 |
p. 1711 |
artikel |
114 |
Conscious perception of movement parameters and content of the primary motor cortex – A Transcranial magnetic stimulation study
|
Brandt, Ida Marie |
|
|
14 |
6 |
p. 1631-1632 |
artikel |
115 |
Consequences of Prefrontal Brain Stimulation on Impulsivity – a Simultaneous tDCS-fMRI Study
|
Müller, Dario |
|
|
14 |
6 |
p. 1690 |
artikel |
116 |
Cover 1
|
|
|
|
14 |
6 |
p. OFC |
artikel |
117 |
Covid effects on clinical outcomes of TMS treatment: a naturalistic study
|
SONMEZ, A.IREM |
|
|
14 |
6 |
p. 1678 |
artikel |
118 |
COVID-encephalopathy treatment with transcranial near infrared laser stimulation
|
Huang, Li-Da |
|
|
14 |
6 |
p. 1660 |
artikel |
119 |
Cranial electrotherapy stimulation after transcranial magnetic stimulation for maintenance of improvement in treatment-resistant depression: a pilot study
|
Vaishnavi, Sandeep |
|
|
14 |
6 |
p. 1632 |
artikel |
120 |
Current Progress of the Global ECT MRI Research Collaboration (GEMRIC)
|
Leaver, Amber |
|
|
14 |
6 |
p. 1738 |
artikel |
121 |
Current state of electromagnetic neuromodulation therapy
|
George, Mark S. |
|
|
14 |
6 |
p. 1735 |
artikel |
122 |
Current state of ultrasound neuromodulation therapy
|
Beisteiner, Roland |
|
|
14 |
6 |
p. 1734 |
artikel |
123 |
Customizing rTMS treatment targeting for co-occurring alcohol use disorder and mild traumatic brain injury using multi-modal neuroimaging data as neurobiological markers
|
Herrold, Amy |
|
|
14 |
6 |
p. 1721 |
artikel |
124 |
Data-driven optimization of multi-spectral hippocampal activity
|
Cole, Eric |
|
|
14 |
6 |
p. 1644 |
artikel |
125 |
Deciphering the dynamics of neuronal activity evoked by transcranial magnetic stimulation
|
Benali, Alia |
|
|
14 |
6 |
p. 1745 |
artikel |
126 |
Deep brain stimulation normalizes amygdala responsivity in major depressive disorder
|
Runia, Nora |
|
|
14 |
6 |
p. 1685-1686 |
artikel |
127 |
Deep brain stimulation of the internal capsule for obsessive-compulsive disorder
|
Figee, Martijn |
|
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14 |
6 |
p. 1735 |
artikel |
128 |
Deep brain stimulation of the medial forebrain bundle in depression
|
Bergfeld, Isidoor O. |
|
|
14 |
6 |
p. 1735 |
artikel |
129 |
Deep brain stimulation of the subgenual cingulate cortex for the treatment of chronic low back pain
|
Tsolaki, Evangelia |
|
|
14 |
6 |
p. 1730 |
artikel |
130 |
Deep brain stimulation of the ventral anterior limb of the capsula interna in patients with treatment-refractory anorexia nervosa
|
Oudijn, M.S. |
|
|
14 |
6 |
p. 1528-1530 |
artikel |
131 |
Default mode network connectivity and brain derived neurotrophic factor in brain stimulation of traumatic brain injury patients
|
Adamson, Maheen |
|
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14 |
6 |
p. 1633 |
artikel |
132 |
Designs of Composite TMS Coils with the Best Depth-Spread Tradeoff
|
Bagherzadeh, Hedyeh |
|
|
14 |
6 |
p. 1603 |
artikel |
133 |
Developing rules to change rTMS protocol during an index course in light of early non-response
|
Vila-Rodriguez, Fidel |
|
|
14 |
6 |
p. 1736 |
artikel |
134 |
Development of new deep neural network architecture based on hodgkin huxley model
|
Im, Cheolki |
|
|
14 |
6 |
p. 1691 |
artikel |
135 |
Development of novel tDCS stimulation condition to investigate tDCS neurophysiological mechanisms
|
Kerstens, Silke |
|
|
14 |
6 |
p. 1634 |
artikel |
136 |
Different effects of dopaminergic medications on subthalamic beta bursts and non-oscillatory fractal components in parkinson’s disease: a longitudinal study
|
Darmani, Ghazaleh |
|
|
14 |
6 |
p. 1676-1677 |
artikel |
137 |
Different global, network, and local response to single pulse electrical stimulation during unconsciousness in the human brain
|
Zelmann, Rina |
|
|
14 |
6 |
p. 1626 |
artikel |
138 |
Diffusional kurtosis imaging reveals taVNS facilitates microstructural changes in the developing neonatal brain
|
Moss, Hunter |
|
|
14 |
6 |
p. 1665-1666 |
artikel |
139 |
Direct current stimulation of the entire visual pathway does not affect the full field electroretinogram
|
Blum, Maren-Christina |
|
|
14 |
6 |
p. 1674-1675 |
artikel |
140 |
Disentangling the transcranially evoked BOLD response from re-afferent sensory feedback during concurrent TMS-fMRI of the human motor cortex using an ischemic nerve block
|
Radetz, Angela |
|
|
14 |
6 |
p. 1723 |
artikel |
141 |
Disparities surrounding DBS surgery for Parkinson’s disease and essential tremor in Hawaii
|
Watanabe, Gina |
|
|
14 |
6 |
p. 1617-1618 |
artikel |
142 |
Disrupted cerebellar-M1 connectivity at the acute and chronic stage after stroke
|
Mooney, Ronan |
|
|
14 |
6 |
p. 1739 |
artikel |
143 |
Dissecting the neural underpinnings of the short-latency response to transcranial magnetic stimulation of motor cortex: A computational modeling study
|
Kumaravelu, Karthik |
|
|
14 |
6 |
p. 1611 |
artikel |
144 |
Dissociating theta and beta TACS effects on local field potentials and working memory in epilepsy patients
|
Alekseichuk, Ivan |
|
|
14 |
6 |
p. 1682-1683 |
artikel |
145 |
Distinct hemispherical responsiveness to transcranial static magnetic field stimulation?
|
Pagge, Cristina |
|
|
14 |
6 |
p. 1680 |
artikel |
146 |
Do effects of prefrontal tDCS on working memory last and transfer to stress regulation? A study in healthy military personnel
|
Smits, Fenne |
|
|
14 |
6 |
p. 1642 |
artikel |
147 |
Does Synchronizing TMS pulses with EEG alpha Phase improve the Antidepressant Efficacy of Prefrontal TMS?
|
Huffman, Sarah |
|
|
14 |
6 |
p. 1624 |
artikel |
148 |
Dopaminergic mechanisms of VNS-induced motor system plasticity
|
Thorn, Catherine |
|
|
14 |
6 |
p. 1709-1710 |
artikel |
149 |
Dose and location dependent effects of single-pulse TMS in invasive electrophysiological recordings in a non-human primate model
|
Opitz, Alexander |
|
|
14 |
6 |
p. 1744-1745 |
artikel |
150 |
Drug-device pairing in noninvasive brain stimulation
|
Rotenberg, Alexander |
|
|
14 |
6 |
p. 1748 |
artikel |
151 |
Dual transcranial direct current stimulation for subacute stroke patients with compromised corticospinal integrity: a randomized, double-blind, sham-controlled study
|
Hsu, Shih-Pin |
|
|
14 |
6 |
p. 1702 |
artikel |
152 |
Early subacute cTBS of the contralesional motor cortex for the promotion of upper limb recovery after stroke – a randomized controlled trial
|
Vink, Jord JT. |
|
|
14 |
6 |
p. 1687 |
artikel |
153 |
Editorial Board
|
|
|
|
14 |
6 |
p. A2 |
artikel |
154 |
EEG Guided Personalized rTMS (PrTMS®) for Post Traumatic Stress Disorder (PTSD)
|
Abbasi, Shaghayegh |
|
|
14 |
6 |
p. 1645 |
artikel |
155 |
EEG-guided TMS to maximize cortical activation and minimize artifacts
|
Casarotto, Silvia |
|
|
14 |
6 |
p. 1750 |
artikel |
156 |
EEG microstates changes in schizophrenia patients with negative symptoms after accelerated repetitive transcranial magnetic stimulation
|
Sverak, Tomas |
|
|
14 |
6 |
p. 1686 |
artikel |
157 |
Effectiveness of unilateral vs. bilateral rTMS treatment on suicidal ideation in patients with depression and comorbid anxiety
|
Middleton, Victoria |
|
|
14 |
6 |
p. 1632-1633 |
artikel |
158 |
Effect of brain target and stimulation paradigm on response to deep brain stimulation in obsessive-compulsive disorder
|
Graat, Ilse |
|
|
14 |
6 |
p. 1727-1728 |
artikel |
159 |
Effect of E-field based sgACC connectivity on rTMS outcome in the THREE-D trial
|
Elbau, Immanuel G. |
|
|
14 |
6 |
p. 1650-1651 |
artikel |
160 |
Effect of neuroanatomy on motor evoked potentials after intermittent theta burst stimulation
|
Mittal, Neil |
|
|
14 |
6 |
p. 1601 |
artikel |
161 |
Effect of neuroanatomy on transcranial magnetic stimulation resting motor thresholds
|
Thakkar, Bhushan |
|
|
14 |
6 |
p. 1694 |
artikel |
162 |
Effect of non-invasive neuromodulation on neural and behavioural signatures of cognitive control
|
Mandali, Alekhya |
|
|
14 |
6 |
p. 1649-1650 |
artikel |
163 |
Effect of rTMS on fractional anisotropy, radial diffusivity, and axonal volume in select fiber tracts in patients with traumatic brain injury
|
Kang, Xiaojian |
|
|
14 |
6 |
p. 1639 |
artikel |
164 |
Effect of the combined use of vagus nerve stimulation and antiepileptic drugs in an experimental model of audiogenic epilepsy, the GASH/Sal
|
Gonçalves-Sánchez, Jaime |
|
|
14 |
6 |
p. 1605 |
artikel |
165 |
Effects of auditory binaural beats on consciousness and the human nervous system: a transdisciplinary review of the evidence
|
Krasnoff, Elizabeth |
|
|
14 |
6 |
p. 1702 |
artikel |
166 |
Effects of cerebellar tDCS on glycometabolic control
|
Maiorana, Natale |
|
|
14 |
6 |
p. 1607 |
artikel |
167 |
Effects of cerebello-spinal stimulation in neurodegenerative ataxia on motor and cognitive outcomes: a randomized, double-blind, sham-controlled trial followed by an open-label phase
|
Benussi, Alberto |
|
|
14 |
6 |
p. 1589 |
artikel |
168 |
Effects of modifying the electrode placement and pulse width on cognitive side effects with unilateral ECT: A pilot randomised controlled study with computational modelling
|
Martin, Donel M. |
|
|
14 |
6 |
p. 1489-1497 |
artikel |
169 |
Effects of prefrontal tDCS on brain metabolites in the DLPFC of healthy subjects - a double-blind placebo-controlled MRS study
|
Soldini, Aldo |
|
|
14 |
6 |
p. 1677-1678 |
artikel |
170 |
Effects of tDCS and HD-tDCS Enhanced Motor Learning on Robotic TMS Motor Maps in Children
|
Giuffre, Adrianna |
|
|
14 |
6 |
p. 1635-1636 |
artikel |
171 |
Effects of TMS at the single neuron level in non-human primates
|
Sommer, Marc |
|
|
14 |
6 |
p. 1745 |
artikel |
172 |
Effects of transcranial direct current stimulation associated with an aerobic exercise bout on blood pressure and autonomic modulation of hypertensive patients: a pilot randomized clinical trial
|
Silva-Filho, Edson |
|
|
14 |
6 |
p. 1706 |
artikel |
173 |
Effects of transcutaneous spinal direct current stimulation (tsDCS) in a patient with unresponsive wakefulness syndrome (UWS) post diffuse axonal injury: a case report
|
da Silva Jr., Hercílio |
|
|
14 |
6 |
p. 1670 |
artikel |
174 |
Effects of VNS paired with rehabilitation for chronic upper limb recovery post stroke: cross-over response
|
Kimberley, Teresa |
|
|
14 |
6 |
p. 1715-1716 |
artikel |
175 |
Efficacy and safety of transcranial pulse stimulation (TPS) in older adults with mild neurocognitive disorder – an open-label trial
|
Calvin Cheng, Pak Wing |
|
|
14 |
6 |
p. 1636 |
artikel |
176 |
Efficacy of add-on bilateral transcranial magnetic stimulation with a double-cone coil in patients with treatment resistant depression and comorbid anxiety: Evidence from real-world clinical practice.
|
Kabar, Michael |
|
|
14 |
6 |
p. 1603 |
artikel |
177 |
Efficacy of Transcranial Alternating Current Stimulation (tACS) in the Enhancement of Working Memory Performance in Healthy Adults: an Exploratory Meta-Analysis
|
Nissim, Nicole |
|
|
14 |
6 |
p. 1635 |
artikel |
178 |
Efficacy of Transcranial Direct Current Stimulation (tDCS) To Decrease Disgust and Moral Rigidity. Implications For the Treatment of Obsessive-Compulsive Disorder (OCD).
|
Di Bello, Maria |
|
|
14 |
6 |
p. 1595-1596 |
artikel |
179 |
Electrical field measurements and simulations of the H7 and D-B80 coils: Non-equivalence of the TMS coils for obsessive compulsive disorder
|
Tzirini, Marietta |
|
|
14 |
6 |
p. 1525-1527 |
artikel |
180 |
Electrical optic nerve stimulation halts progression of visual field loss in glaucoma patients
|
Erb, Carl |
|
|
14 |
6 |
p. 1640 |
artikel |
181 |
Electrical stimulation of the intralaminar thalamus induces behavioral arrest and reveals differential thalamocortical feedback
|
Contreras, April |
|
|
14 |
6 |
p. 1663 |
artikel |
182 |
Electric field distribution in deep brain structures during transcranial direct current stimulation (tDCS) with extracephalic montages: a computational study
|
Guidetti, Matteo |
|
|
14 |
6 |
p. 1607 |
artikel |
183 |
Electroconvulsive therapy in catatonic patient infected with Sars-Cov-2
|
Bustamante, Jose |
|
|
14 |
6 |
p. 1604 |
artikel |
184 |
Electronic targeting of brain stimulation: design and validation of a 5-coil multi-locus TMS transducer
|
Souza, Victor H. |
|
|
14 |
6 |
p. 1752 |
artikel |
185 |
Electrophysiological and behavioral effects of bilateral and unilateral rTMS on rumination and depression
|
Kazemi, Reza |
|
|
14 |
6 |
p. 1605-1606 |
artikel |
186 |
Evaluation of 1 Hz/20 Hz bilateral rTMS effects on cognitive performance in patients with major depressive disorder using thinc-it
|
Monira, Naima |
|
|
14 |
6 |
p. 1707 |
artikel |
187 |
Evidence for NIBS in facilitating rehabilitation of cognitive function after stroke
|
Hara, Takatoshi |
|
|
14 |
6 |
p. 1716 |
artikel |
188 |
Evidence for NIBS in post-stroke and Vascular depression
|
Burhan, Amer |
|
|
14 |
6 |
p. 1716 |
artikel |
189 |
Evidence for rTMS and TDCS in facilitating rehabilitation of spasticity post stroke
|
McIntyre, Amanda |
|
|
14 |
6 |
p. 1717 |
artikel |
190 |
Evidence for temporal interference (TI) stimulation effects on motor striatum
|
Wessel, Maximilian Jonas |
|
|
14 |
6 |
p. 1684 |
artikel |
191 |
Evidences for LTP Induction by 10 Hz rTMS in Human Motor Cortex
|
Brown, Joshua |
|
|
14 |
6 |
p. 1677 |
artikel |
192 |
Experimental suppression of TMS-EEG sensory potentials requires an optimal combination of techniques due to the multisensory experience of TMS
|
Ross, Jessica M. |
|
|
14 |
6 |
p. 1663 |
artikel |
193 |
Exploring the role of Polygenetic risk scores for MDD treatment outcome in sex and different antidepressants groups
|
Lin, Bochao |
|
|
14 |
6 |
p. 1600 |
artikel |
194 |
Extracting connectivity data from published papers: challenges and decisions
|
Wittenberg, George |
|
|
14 |
6 |
p. 1712-1713 |
artikel |
195 |
Feasibility and Potential Value of Transcranial Magnetic Stimulation for Upper Extremity Motor Assessment at the Bedside During Acute Stroke Hospitalization
|
Vora, Isha |
|
|
14 |
6 |
p. 1643 |
artikel |
196 |
Feasibility of at-home tACS to facilitate cognitive control
|
Zanto, Theodore |
|
|
14 |
6 |
p. 1616 |
artikel |
197 |
Five for the price of one: A multi-directional micro-electrode recordings for DBS Surgery
|
Socher, Achinoam Faust- |
|
|
14 |
6 |
p. 1688-1689 |
artikel |
198 |
fMRI-guided methods for rTMS targeting and treatment prediction
|
Liston, Conor |
|
|
14 |
6 |
p. 1737 |
artikel |
199 |
Focal stimulation of movement related cortical potentials in mice using a novel TMS circuit design
|
Strong, Haley |
|
|
14 |
6 |
p. 1622 |
artikel |
200 |
Focal TMS coils for small targets of the motor cortex with increased penetration depth and oriented control of the electric field
|
Carmona, Ivan |
|
|
14 |
6 |
p. 1704-1705 |
artikel |
201 |
Frequency-dependent response to intracranial theta-burst stimulation of anterior-temporal and posterior-medial divisions of the human hippocampal-cortical network
|
Hermiller, Molly |
|
|
14 |
6 |
p. 1616-1617 |
artikel |
202 |
Frequency-specific transcranial alternating current stimulation for steady-state visual evoked potential illiteracy
|
Kim Kim, Sang-Su |
|
|
14 |
6 |
p. 1599-1600 |
artikel |
203 |
From neural mass models to stereotactic-EEG recordings
|
Mercadal, Borja |
|
|
14 |
6 |
p. 1645-1646 |
artikel |
204 |
Functional brain tractography
|
David, Olivier |
|
|
14 |
6 |
p. 1729 |
artikel |
205 |
Functional near-infrared spectroscopy (fNIRS) of posterolateral cerebellum and prefrontal cortex for fNIRS-driven cerebellar tES – a case report
|
Singh, Shubh Mohan |
|
|
14 |
6 |
p. 1692 |
artikel |
206 |
Galvanic Vestibular Stimulation effects on LSTM-based EEG neuro-markers of Motor Vigor in Parkinson's Disease
|
Mirian, Maryam S. |
|
|
14 |
6 |
p. 1645 |
artikel |
207 |
GENET - A novel international research collaboration for the standardized collection and sharing of ECT treatment data and associated biosignals – Implementation, Application, and Findings
|
Kiebs, Maximilian |
|
|
14 |
6 |
p. 1737-1738 |
artikel |
208 |
Genomics of severe depression and ECT treatment response: scientific rationale, large scale standardised assessment and implementation of a world-wide effort
|
Baune, Bernhard |
|
|
14 |
6 |
p. 1737 |
artikel |
209 |
Global brain network modularity dynamics after local optic nerve damage: an EEG-tracking study
|
Wu, Zheng |
|
|
14 |
6 |
p. 1609-1610 |
artikel |
210 |
Group level montage optimization in transcranial electrical stimulation
|
Salvador, Ricardo |
|
|
14 |
6 |
p. 1646 |
artikel |
211 |
Guiding individual tract activations in the subcallosal cingulate region using image-based biophysical modeling
|
Howell, Bryan |
|
|
14 |
6 |
p. 1744 |
artikel |
212 |
Heartbeat evoked potential in major depressive disorder: Differential treatment prediction for antidepressant medication and rTMS
|
Zwienenberg, Lauren |
|
|
14 |
6 |
p. 1749 |
artikel |
213 |
Heart rate deceleration (HRD) as a low cost scalable indicator of target engagement during SAINT for treatment resistant depression (TRD)
|
Coetzee, John |
|
|
14 |
6 |
p. 1693 |
artikel |
214 |
Heart rate variability as a predictive biomarker to accelerated repetitive transcranial magnetic stimulation in major depression
|
Miron, Jean-Philippe |
|
|
14 |
6 |
p. 1675 |
artikel |
215 |
Hemodynamic changes in response to excitatory and inhibitory modulations by transcranial magnetic stimulation at the human sensorimotor cortex
|
Lee, Hsin-Ju |
|
|
14 |
6 |
p. 1611-1612 |
artikel |
216 |
High-definition transcranial direct current stimulation enhances network segregation during spatial navigation in mild cognitive impairment
|
Iordan, Alexandru |
|
|
14 |
6 |
p. 1654-1655 |
artikel |
217 |
High fidelity finite element models to predict changes in functional connectivity of the working memory networks in older adults
|
Indahlastari, Aprinda |
|
|
14 |
6 |
p. 1652 |
artikel |
218 |
High Frequency rTMS Dosing for Smoking Cessation: Preliminary Findings
|
Sheffer, Christine |
|
|
14 |
6 |
p. 1732 |
artikel |
219 |
High-resolution computational modeling of the current flow in the outer ear during transcutaneous auricular Vagus Nerve Stimulation (taVNS)
|
Kreisberg, Erica |
|
|
14 |
6 |
p. 1419-1430 |
artikel |
220 |
Hindbrain TMS in mice elicits structural and functional changes related to improvements in processing speed
|
McNerney, M. Windy |
|
|
14 |
6 |
p. 1605 |
artikel |
221 |
Hippocampal-ANT connectivity and ANT DBS: Circadian trends and response to stimulation
|
Balzekas, Irena |
|
|
14 |
6 |
p. 1654 |
artikel |
222 |
Hippocampal potentials evoked by network-targeted stimulation vary by theta phase
|
Lurie, Sarah M. |
|
|
14 |
6 |
p. 1656 |
artikel |
223 |
Histological examination of focused ultrasound effects on human brain tissue
|
Spivak, Norman M. |
|
|
14 |
6 |
p. 1486-1488 |
artikel |
224 |
History and recent advancements and changes in computational modeling methods for transcranial electrical stimulation
|
Bikson, Marom |
|
|
14 |
6 |
p. 1739 |
artikel |
225 |
How does functional connectivity relate to induced TMS effects on brain activity?
|
Duprat, Romain |
|
|
14 |
6 |
p. 1722 |
artikel |
226 |
How does the Alzheimer’s disease brain respond to optomechanical stimuli? A narrative review
|
Monteiro, Francisca |
|
|
14 |
6 |
p. 1667-1668 |
artikel |
227 |
How does TMS “engage” the human cortex? Insights from structural and functional mapping of the precentral motor hand knob
|
Siebner, Hartwig |
|
|
14 |
6 |
p. 1733-1734 |
artikel |
228 |
How focal and quiet can TMS be?
|
Peterchev, Angel |
|
|
14 |
6 |
p. 1751 |
artikel |
229 |
How to explain heterogeneous findings across transcranial magnetic stimulation biomarker studies in depression?
|
Hopman, Helene |
|
|
14 |
6 |
p. 1722 |
artikel |
230 |
How to use multimodal neuroimaging to personalize rTMS parameters for depression treatment
|
Klooster, Debby |
|
|
14 |
6 |
p. 1722 |
artikel |
231 |
Human in-vivo magnetic resonance current density imaging of the brain by optimizing head tissue conductivities
|
Eroglu, Hasan H. |
|
|
14 |
6 |
p. 1591-1592 |
artikel |
232 |
Identification of a Personalized Intracranial Biomarker of Depression and Response to DBS Therapy
|
Frank, Adam |
|
|
14 |
6 |
p. 1591 |
artikel |
233 |
Identification of beta burst patterns underlying simultaneous transcranial alternating current stimulation
|
Yan, Xuanteng |
|
|
14 |
6 |
p. 1598 |
artikel |
234 |
Identifying Resonant Frequencies for Treatment of Major Depressive Disorder (MDD) using repetitive Transcranial Magnetic Stimulation (rTMS)
|
Corlier, Juliana |
|
|
14 |
6 |
p. 1695 |
artikel |
235 |
Identifying the neurophysiological effects of memory-enhancing amygdala stimulation using interpretable machine learning
|
Sendi, Mohammad S.E. |
|
|
14 |
6 |
p. 1511-1519 |
artikel |
236 |
Identifying translational electrophysiological biomarkers of compulsivity for deep brain stimulation
|
Arbab, Tara |
|
|
14 |
6 |
p. 1727 |
artikel |
237 |
Imaged-guided Transcranial focused ultrasound on the right thalamus modulates ascending pain pathway to somatosensory cortex in healthy participants
|
Li, Xingbao |
|
|
14 |
6 |
p. 1638 |
artikel |
238 |
Improvement on a working memory task is more generalized and longer lasting when people with dementia practice this task with 4mA tDCS.
|
Roncero, Carlos |
|
|
14 |
6 |
p. 1664 |
artikel |
239 |
Improving closed-loop TMS timing using the Wavenet model
|
Pankka, Hanna |
|
|
14 |
6 |
p. 1636-1637 |
artikel |
240 |
Improving smoking cessation in schizophrenia by functional connectivity-guided TMS
|
Du, Xiaoming |
|
|
14 |
6 |
p. 1732 |
artikel |
241 |
Improving social cognition and skills in adult ASD: a tDCS pilot study
|
Tesche, Claudia |
|
|
14 |
6 |
p. 1590-1591 |
artikel |
242 |
Improving speech and upper limb motor reaction times through high-definition transcranial direct current stimulation of the left ventral motor cortex
|
Gill, Aideen |
|
|
14 |
6 |
p. 1657 |
artikel |
243 |
Increased migraine-free intervals with multifocal repetitive transcranial magnetic stimulation
|
Leahu, Pavel |
|
|
14 |
6 |
p. 1544-1552 |
artikel |
244 |
Increasing the number of daily stimulation sessions administered during taVNS-paired bottle feeding speeds response time in newborns with feeding difficulty
|
Adams, Lauren |
|
|
14 |
6 |
p. 1703 |
artikel |
245 |
Individual interregional perfusion patterns predict response and remission to aiTBS treatment in medication resistant depression: the influence of Behavioral Inhibition
|
Wu, Guo-Rong |
|
|
14 |
6 |
p. 1719 |
artikel |
246 |
Individualized decoding of cortical excitability states using single-trial TMS responses analyzed by machine learning
|
Metsomaa, Johanna |
|
|
14 |
6 |
p. 1751 |
artikel |
247 |
Induction and quantification of excitability changes in human cortical networks
|
Keller, Corey |
|
|
14 |
6 |
p. 1729 |
artikel |
248 |
Induction of human motor cortex plasticity by theta burst transcranial ultrasound stimulation
|
Zeng, Ke |
|
|
14 |
6 |
p. 1592 |
artikel |
249 |
Influence of different transcranial magnetic stimulation current directions on the corticomotor control of lumbar erector spinae muscles during a static task
|
Desmons, Mikaël |
|
|
14 |
6 |
p. 1594 |
artikel |
250 |
Influence of study-related factors on rTMS treatment fidelity during research
|
Carl, Ellen |
|
|
14 |
6 |
p. 1621 |
artikel |
251 |
In-silico exploration of mouse brain dynamics by focal stimulation reflects the organization of functional networks and sensory processing
|
Spiegler, Andreas |
|
|
14 |
6 |
p. 1714 |
artikel |
252 |
In-situ multi-locus transcranial magnetic stimulation with concurrent functional magnetic resonance imaging at 9.4 T for small-animal studies
|
Korhonen, Juuso T. |
|
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14 |
6 |
p. 1637 |
artikel |
253 |
Integrating electrical field maps and alcohol cue-reactivity patterns to improve TMS treatment outcome in Alcohol Use Disorder: a retrospective analysis
|
McCalley, Daniel |
|
|
14 |
6 |
p. 1623-1624 |
artikel |
254 |
Interactions of transcranial magnetic stimulation and peripheral sensory stimulation from the human lower limbs
|
Kato, Tatsuya |
|
|
14 |
6 |
p. 1599 |
artikel |
255 |
Interhemispheric functional connectivity of sensorimotor cortex predicts responsiveness of transcranial magnetic stimulation in older adults
|
Liu, Yilin |
|
|
14 |
6 |
p. 1683 |
artikel |
256 |
Interhemispheric inhibition (IHI) findings using ipsilateral silent period (iSP) in two stroke patients during acute and subacute phases after stroke
|
Chhatbar, Pratik |
|
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14 |
6 |
p. 1698 |
artikel |
257 |
Inter-individual differences in baseline dynamic functional connectivity predict cognitive aftereffects of tDCS
|
Pupíková, Monika |
|
|
14 |
6 |
p. 1685 |
artikel |
258 |
Intermittent theta-burst stimulation reduces amygdala activation during perception of negative picture stimuli in depression
|
Struckmann, Wiebke |
|
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14 |
6 |
p. 1603 |
artikel |
259 |
Interpreting neurophysiology: Prof. Rothwell's influence on neuroimaging
|
Stagg, Charlotte |
|
|
14 |
6 |
p. 1741 |
artikel |
260 |
Interslice TMS/fMRI enables continuous EPI during clinical rTMS and iTBS protocols
|
Tik, Martin |
|
|
14 |
6 |
p. 1723-1724 |
artikel |
261 |
Intracortical facilitation as a potential biomarker of post-stroke fatigue severity
|
Kindred, John |
|
|
14 |
6 |
p. 1681 |
artikel |
262 |
Intraoperative brain stimulation during awake craniotomy in aphasia prevention
|
Olejnik, Agnieszka |
|
|
14 |
6 |
p. 1611 |
artikel |
263 |
Intrinsic motor network connectivity predicts corticospinal excitability
|
Marzetti, Laura |
|
|
14 |
6 |
p. 1642 |
artikel |
264 |
Investigating early neural responses during transcranial magnetic stimulation in non-human primates
|
Perera, Nipun |
|
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14 |
6 |
p. 1642-1643 |
artikel |
265 |
Investigating EEG biomarker specificity to combined rTMS with psychotherapy: Psychotherapy, rTMS or sham? A blinded prediction study
|
Prentice, Amourie |
|
|
14 |
6 |
p. 1601 |
artikel |
266 |
Investigating the effects of paired somatosensory - cerebellar stimulation on cortical and cerebellar excitability: a TMS study
|
Spampinato, Danny |
|
|
14 |
6 |
p. 1619 |
artikel |
267 |
Investigating the genesis of evoked responses by invasive electrophysiological recording and direct stimulation in the human brain
|
Lee, Hsin-Ju |
|
|
14 |
6 |
p. 1685 |
artikel |
268 |
Investigation of focused ultrasound on blood-brain barrier permeability for small molecule delivery to the hippocampal formation: A preclinical investigation
|
Aboody, Karen |
|
|
14 |
6 |
p. 1663 |
artikel |
269 |
Is Non-invasive brain stimulation an effective tool for cognitive enhancement in Alzheimer’s disease and mild cognitive impairment? Results from the meta-analysis
|
Šimko, Patrik |
|
|
14 |
6 |
p. 1651-1652 |
artikel |
270 |
Is there an optimal rTMS target to treat chronic tinnitus?
|
Watson, Nathan |
|
|
14 |
6 |
p. 1689-1690 |
artikel |
271 |
Is transcranial focused ultrasound stimulation (tFUS) the next holy grail for treating depression?
|
George, Mark |
|
|
14 |
6 |
p. 1746 |
artikel |
272 |
John C. Rothwell: Motor physiology and movement disorders
|
Hallett, Mark |
|
|
14 |
6 |
p. 1740 |
artikel |
273 |
John C. Rothwell: Shaping brains and people
|
Siebner, Hartwig Roman |
|
|
14 |
6 |
p. 1741 |
artikel |
274 |
Large-Scale EEG Neural Network Changes in Response to Therapeutic TMS
|
Brown, Joshua |
|
|
14 |
6 |
p. 1648 |
artikel |
275 |
Lesion network localization of trait novelty seeking
|
Palm, Stephan |
|
|
14 |
6 |
p. 1698 |
artikel |
276 |
Letter to the editor regarding “Accelerated theta burst stimulation for the treatment of depression: A randomised controlled trial”
|
Hudaib, Abdul-Rahman |
|
|
14 |
6 |
p. 1586 |
artikel |
277 |
Leveraging neural properties to inform stimulation
|
Cagnan, Hayriye |
|
|
14 |
6 |
p. 1727 |
artikel |
278 |
Leveraging the neurocircuitry of addiction to test novel brain stimulation paradigms and rationally combine them with other existent treatments
|
Sahlem, Gregory |
|
|
14 |
6 |
p. 1733 |
artikel |
279 |
Linear Automated Neocortex DeMARCation (LAND-MARC)
|
Gordinier, Mick |
|
|
14 |
6 |
p. 1615 |
artikel |
280 |
Local and distributed fMRI changes induced by 40Hz gamma tACS of the bilateral dorsolateral prefrontal cortex
|
Romanella, Sara M. |
|
|
14 |
6 |
p. 1604-1605 |
artikel |
281 |
Loss Of Differentiation And Complexity In The Sleeping Human Brain: A Multi-Scale Analysis
|
Pigorini, Andrea |
|
|
14 |
6 |
p. 1728-1729 |
artikel |
282 |
Magnetothermal nanoparticle technology alleviates parkinsonian symptoms in mice
|
Hescham, Sarah |
|
|
14 |
6 |
p. 1741 |
artikel |
283 |
Maladjustment of pressure settings of a Codman-Hakim programmable shunt valve by electromagnetic door locks – a case report
|
Licht, Christiane |
|
|
14 |
6 |
p. 1593 |
artikel |
284 |
Mapping the homunculus: agreement between fMRI and TMS-based motor cortex hand, trunk and leg representations
|
Proessl, Felix |
|
|
14 |
6 |
p. 1692-1693 |
artikel |
285 |
Masthead
|
|
|
|
14 |
6 |
p. A1 |
artikel |
286 |
Measuring the timing of functional connections through TMS-evoked potentials
|
Bortoletto, Marta |
|
|
14 |
6 |
p. 1712 |
artikel |
287 |
Mechanical Affective Touch Therapy (MATT) for Anxiety Disorders: Effects on Resting State Functional Connectivity
|
Gonsalves, Meghan |
|
|
14 |
6 |
p. 1630-1631 |
artikel |
288 |
Medial temporal seizures breakdown effective connectivity within the hippocampal network
|
Russo, Simone |
|
|
14 |
6 |
p. 1594 |
artikel |
289 |
Meta-analytic electric field modeling and developing multi-scale models
|
Opitz, Alexander |
|
|
14 |
6 |
p. 1738 |
artikel |
290 |
Methodology, reliability, and limitations of measuring cerebellar brain inhibition in humans
|
Celnik, Pablo |
|
|
14 |
6 |
p. 1740 |
artikel |
291 |
Mimicking and mitigating the cutaneous response to transcranial electrical stimulation using interferential and combinatorial techniques
|
Howell, Bryan |
|
|
14 |
6 |
p. 1604 |
artikel |
292 |
Mimicking phase-amplitude coupling: the influence of burst frequency in EEG-TMS plasticity induction
|
Baur, David |
|
|
14 |
6 |
p. 1596 |
artikel |
293 |
Minimizing discomfort from TMS through experimental optimization of sensory suppression protocols.
|
Sarkar, Manjima |
|
|
14 |
6 |
p. 1663-1664 |
artikel |
294 |
Mnemonic effect of chronic low-intensity electromagnetic field stimulation by preserving synaptic plasticity of place cells and through attenuation of DNA damage in intracerebroventricular streptozotocin injected rat model of Alzheimer’s disease
|
Roy, Avishek |
|
|
14 |
6 |
p. 1629 |
artikel |
295 |
Modeling transcranial electrical current stimulation-induced electric fields in patients with skull plates
|
Mercadal, Borja |
|
|
14 |
6 |
p. 1683-1684 |
artikel |
296 |
Modelling and testing the effects of stimulus parameters on cortical reactions to multilocus TMS
|
Mutanen, Tuomas P. |
|
|
14 |
6 |
p. 1610 |
artikel |
297 |
Modelling large-scale brain network dynamics underlying the TMS-EEG evoked response
|
Momi, Davide |
|
|
14 |
6 |
p. 1714 |
artikel |
298 |
Modifying resting-state EEG microstates with pulsed near-infrared transcranial photobiomodulation: a randomized sham-controlled crossover study
|
Zomorrodi, Reza |
|
|
14 |
6 |
p. 1697 |
artikel |
299 |
Modulating and decoding cognitive control in human subjects
|
ishita basu, |
|
|
14 |
6 |
p. 1711 |
artikel |
300 |
Modulating functional networks with TMS
|
Siddiqi, Shan |
|
|
14 |
6 |
p. 1722-1723 |
artikel |
301 |
Modulating the cognitive and subjective effects of THC in young adults with cannabis use disorder
|
Wesley, Michael |
|
|
14 |
6 |
p. 1662 |
artikel |
302 |
Modulating the reading and language network by applying continuous theta burst stimulation to the left supramarginal gyrus
|
Malins, Jeffrey |
|
|
14 |
6 |
p. 1693 |
artikel |
303 |
Modulation of cerebellar excitability by frequency-specific noninvasive alternating current stimulation
|
Spampinato, Danny |
|
|
14 |
6 |
p. 1740 |
artikel |
304 |
Modulation of cortical oscillations using 10hz near-infrared transcranial and intranasal photobiomodulation: a randomized sham-controlled crossover study
|
Zomorrodi, Reza |
|
|
14 |
6 |
p. 1665 |
artikel |
305 |
Modulation of memory performance and brain activity by non-invasive auricular transcutaneous vagus nerve stimulation in a mouse model of intellectual disability disorder
|
Pisoni, Cecilia Brambilla |
|
|
14 |
6 |
p. 1593-1594 |
artikel |
306 |
Modulation of motor cortex excitability and plasticity using transcranial focused ultrasound
|
Chen, Robert |
|
|
14 |
6 |
p. 1747 |
artikel |
307 |
Modulation of the superior medial frontal cortex using anodal high definition transcranial direct current stimulation affects frontal midline theta oscillations during a Go-Nogo task in veterans with chronic traumatic brain injury
|
Chiang, Hsueh-Sheng |
|
|
14 |
6 |
p. 1635 |
artikel |
308 |
MOSAICS: An open-source Python platform for brain stimulation mapping analysis
|
Geeraert, Bryce L. |
|
|
14 |
6 |
p. 1602-1603 |
artikel |
309 |
Motor cortical treatment targets for chronic pelvic pain: Big data, small data, and clinical trials
|
Kutch, Jason |
|
|
14 |
6 |
p. 1730 |
artikel |
310 |
Mri guided focused ultrasound modulation of deep brain pain regions and circuits in nonhuman primates
|
Chen, Li Min |
|
|
14 |
6 |
p. 1599 |
artikel |
311 |
Multifocal transcranial direct current stimulation reduces risk-taking depending on personality
|
Martin de la Torre, Ona |
|
|
14 |
6 |
p. 1591 |
artikel |
312 |
Multi-focal ultrasound neuromodulation: a feasibility study
|
Tamaddoni, Hedieh Alavi |
|
|
14 |
6 |
p. 1626 |
artikel |
313 |
Multimodal assessment of interhemispheric cortical interactions and differential behavioral relevance in upper and lower extremity motor function in chronic stroke
|
Palmer, Jacqueline |
|
|
14 |
6 |
p. 1696 |
artikel |
314 |
Multiscale co-simulation of deep brain stimulation with The Virtual Brain
|
Meier, Jil |
|
|
14 |
6 |
p. 1713 |
artikel |
315 |
Multi-scale modeling toolbox for single neuron and subcellular activity under Transcranial Magnetic Stimulation
|
Shirinpour, Sina |
|
|
14 |
6 |
p. 1470-1482 |
artikel |
316 |
Multi-target repetitive transcranial magnetic stimulation (rTMS) protocol for the treatment of comorbid depression and chronic pain
|
Corlier, Juliana |
|
|
14 |
6 |
p. 1729-1730 |
artikel |
317 |
Natural language processing to aggregate knowledge of biological networks
|
Miskov-Zivanov, Natasa |
|
|
14 |
6 |
p. 1713 |
artikel |
318 |
Navigated repetitive transcranial magnetic stimulation improves the outcome of postsurgical paresis in glioma patients – A randomized, double-blinded trial
|
Ille, Sebastian |
|
|
14 |
6 |
p. 1742-1743 |
artikel |
319 |
Neural and behavioral effects of theta burst stimulation priming on processing of affective and neutral information in working memory
|
De Smet, Stefanie |
|
|
14 |
6 |
p. 1730-1731 |
artikel |
320 |
Neural mass modeling of cortical circuitry as a testbed for electrical microstimulation optimization
|
Kiani, Andres |
|
|
14 |
6 |
p. 1615 |
artikel |
321 |
Neurocapillary-modulation
|
Khadka, Niranjan |
|
|
14 |
6 |
p. 1670-1671 |
artikel |
322 |
Neurofeedback Modulation of Frontal Midline Theta Activity at the Rostral Anterior Cingulate Cortex (rACC) to Promote Improved Response Rates in High-Frequency Repetitive Transcranial Magnetic Stimulation (rTMS) : A Case Series
|
Phouthavong, Layla |
|
|
14 |
6 |
p. 1698-1699 |
artikel |
323 |
Neurophysiological changes associated with cortical lesions in multiple sclerosis.
|
Just Madsen, Mads Alexander |
|
|
14 |
6 |
p. 1628 |
artikel |
324 |
Neurophysiological modulations in the (pre)motor-motor network and the role of GABA+ levels underlying age-related reaction time slowing
|
Cuypers, Koen |
|
|
14 |
6 |
p. 1592-1593 |
artikel |
325 |
Neuroversion: a possible mechanism of action of ECT in acute mania
|
Silva-dos-Santos, Amílcar |
|
|
14 |
6 |
p. 1617 |
artikel |
326 |
Neuroweaver: a platform for designing intelligent closed-loop neuromodulation systems
|
Sarikhani, Parisa |
|
|
14 |
6 |
p. 1661 |
artikel |
327 |
New tools for computational modeling of non-invasive brain stimulation in SimNIBS
|
Shirinpour, Sina |
|
|
14 |
6 |
p. 1644 |
artikel |
328 |
No effects of parietal and frontal transcranial direct current stimulation (tDCS) on attention and memory
|
Dubravac, Mirela |
|
|
14 |
6 |
p. 1672 |
artikel |
329 |
Non-invasive auricular vagus nerve stimulation for reading improvement in young adults
|
Centanni, Tracy |
|
|
14 |
6 |
p. 1709 |
artikel |
330 |
Noninvasive cervical transcutaneous vagal nerve stimulation to enhance cognition in healthy humans
|
McIntire, Lindsey |
|
|
14 |
6 |
p. 1708 |
artikel |
331 |
Non-invasive selective modulation of top-down attention
|
Brus, Jeroen |
|
|
14 |
6 |
p. 1642 |
artikel |
332 |
Novel and non-invasive brain-computer interface-based stimulation device using frequency tuned electromagnetic fields to significantly reduce disability following sub-acute ischemic stroke: A pilot randomized controlled trial
|
Weisinger, Batsheva |
|
|
14 |
6 |
p. 1715 |
artikel |
333 |
Novel meta-analytic electric field modeling method to identify prefrontal cortex regions related to working memory performance
|
Wischnewski, Miles |
|
|
14 |
6 |
p. 1598 |
artikel |
334 |
Novel method for reliable examination of oscillatory entrainment and changes in functional connectivity following repetitive Transcranial Magnetic Stimulation (rTMS)
|
Wilson, Andrew |
|
|
14 |
6 |
p. 1615 |
artikel |
335 |
Open-source toolbox for multi-scale modeling of single neurons under transcranial magnetic stimulation
|
Shirinpour, Sina |
|
|
14 |
6 |
p. 1697 |
artikel |
336 |
Optimising MR Imaging Data Quality for a Novel Ultrathin Multichannel Coil for simultaneous TMS/fMRI Experiments: A Comparison of Sequence Parameters
|
Voon, Cui Ci |
|
|
14 |
6 |
p. 1668-1669 |
artikel |
337 |
Optimizing spatial accuracy of deep brain stimulation imaging
|
Horn, Andreas |
|
|
14 |
6 |
p. 1727 |
artikel |
338 |
Optimizing TMS coil placement for engagingindividual-specific functional network topology
|
Lynch, Charles |
|
|
14 |
6 |
p. 1689 |
artikel |
339 |
Orientation-dependent effects of transcranial alternating current stimulation (tACS) on spike timing in awake non-human primates
|
Tran, Harry |
|
|
14 |
6 |
p. 1614-1615 |
artikel |
340 |
Our proposed method of universal design in informational graphics will greatly enhance understanding and improve scientific progress
|
Koppenberg, Mark |
|
|
14 |
6 |
p. 1646-1647 |
artikel |
341 |
Outcomes from University of Minnesota Clinical rTMS Clinic for resistant depression: naturalistic data on suicidal ideation
|
Sonmez, A.Irem |
|
|
14 |
6 |
p. 1652 |
artikel |
342 |
Overview of a large transcranial magnetic stimulation patient outcomes database
|
Aaronson, Scott |
|
|
14 |
6 |
p. 1717 |
artikel |
343 |
Paired Acute Invasive/Non-invasive Stimulation (PAINS) study: A phase I/II randomized, sham-controlled crossover trial in chronic neuropathic pain
|
Parker, Tariq |
|
|
14 |
6 |
p. 1576-1585 |
artikel |
344 |
Pallidothalamic neurotransmission model in human brain: a pilot study through deep brain stimulation
|
Kasiri, Maral |
|
|
14 |
6 |
p. 1619-1620 |
artikel |
345 |
Parametric modulation of the heart and brain using transcutaneous auricular vagus nerve stimulation (taVNS)
|
Badran, Bashar |
|
|
14 |
6 |
p. 1748-1749 |
artikel |
346 |
Parkinson’s disease treatment with shockwaves
|
Novak, Pavel |
|
|
14 |
6 |
p. 1628 |
artikel |
347 |
Participant research burden in a study of transcranial magnetic stimulation for smoking cessation
|
Shevorykin, Alina |
|
|
14 |
6 |
p. 1657 |
artikel |
348 |
Past, present and future of deep brain stimulation in the subcallosal cingulate cortex: circuit-based connectomic surgery ready for prime time
|
Posse, Patricio Riva |
|
|
14 |
6 |
p. 1735 |
artikel |
349 |
Patient-specific network modeling to personalize neurostimulation treatment in depression
|
Kiss, Zelma |
|
|
14 |
6 |
p. 1744 |
artikel |
350 |
Patients’ tolerance of brain stimulation during awake craniotomy procedure - a prospective qualitative study.
|
Bala, Aleksandra |
|
|
14 |
6 |
p. 1686-1687 |
artikel |
351 |
Patterned stimulation leads in–vitro network into non-bursting state
|
Ferdous, Zubayer Ibne |
|
|
14 |
6 |
p. 1647 |
artikel |
352 |
Percutaneous vagus nerve stimulation attenuates postoperative Aβ deposition in a mouse model of delirium superimposed on dementia
|
Velagapudi, Ravikanth |
|
|
14 |
6 |
p. 1708-1709 |
artikel |
353 |
Personalizing brain simulation targets based on clinical features
|
Siddiqi, Shan |
|
|
14 |
6 |
p. 1710-1711 |
artikel |
354 |
Pharmacological mechanisms of focused ultrasound for human motor cortical plasticity
|
Oghli, Yazan Shamli |
|
|
14 |
6 |
p. 1629-1630 |
artikel |
355 |
Phase-coupled EEG sources predict motor cortex excitability probed with TMS
|
Ermolova, Maria |
|
|
14 |
6 |
p. 1597 |
artikel |
356 |
Phase-specific modulation of cortical excitability using closed-loop TMS-EEG
|
Wischnewski, Miles |
|
|
14 |
6 |
p. 1638 |
artikel |
357 |
Physiological neurovascular modeling of cerebrovascular effects of transcranial electrical current stimulation
|
Arora, Yashika |
|
|
14 |
6 |
p. 1597-1598 |
artikel |
358 |
p38 MAPK patterned EMF affects PC-12 neurite outgrowth after 2 days of treatment
|
Plourde-Kelly, Adam |
|
|
14 |
6 |
p. 1694 |
artikel |
359 |
Polarity dependent epicranial direct current stimulation over the cerebellum suppresses Harmaline tremor in rats
|
Khatoun, Ahmad |
|
|
14 |
6 |
p. 1614 |
artikel |
360 |
Portable neuroimaging and biped multi-task battery to study the effects of non-invasive cerebellar stimulation: a case series on hemiplegic patients with and without basal ganglia lesion
|
Ranjan, Shashi |
|
|
14 |
6 |
p. 1646 |
artikel |
361 |
Practical TMS coils with maximum focality and various stimulation depths
|
Gomez, Luis |
|
|
14 |
6 |
p. 1695 |
artikel |
362 |
Precision targeting of brain networks in TBI
|
Siddiqi, Shan |
|
|
14 |
6 |
p. 1721-1722 |
artikel |
363 |
Predicting long term outcomes of deep brain stimulation in obsessive compulsive disorder, depression, and anorexia nervosa
|
Mocking, Roel |
|
|
14 |
6 |
p. 1728 |
artikel |
364 |
Predicting response to transcutaneous auricular vagus nerve stimulation (taVNS) paired with oromotor feeding in neonates: CNS metabolite biomarkers by MR spectroscopy (MRS)
|
Hunt, Sally |
|
|
14 |
6 |
p. 1664-1665 |
artikel |
365 |
Predicting seizure response to VNS through connectomic profiling
|
ibrahim, George |
|
|
14 |
6 |
p. 1725 |
artikel |
366 |
Predictive models for response to non-invasive brain stimulation in stroke: A critical review of opportunities and pitfalls
|
Wessel, Maximilian J. |
|
|
14 |
6 |
p. 1456-1466 |
artikel |
367 |
Prefrontal improvement by deep cerebellar stimulation in a traumatic brain injury model of rat
|
Chan, Hugh |
|
|
14 |
6 |
p. 1714-1715 |
artikel |
368 |
Prefrontal Transcranial Magnetic Stimulation for Depression in US Military Veterans – A Naturalistic Study in the Veterans Health Administration
|
Kozel, F. Andrew |
|
|
14 |
6 |
p. 1608 |
artikel |
369 |
Preliminary evaluation of the clinical utility of miRNA as neurobiological markers of TBI diagnosis and rTMS treatment responsiveness
|
Pape, Theresa Bender |
|
|
14 |
6 |
p. 1721 |
artikel |
370 |
Preliminary results of motor threshold site navigation using modern fMRI for clinical rTMS treatment
|
Haroon, Jonathan |
|
|
14 |
6 |
p. 1667 |
artikel |
371 |
Pressing ethical issues in considering pediatric deep brain stimulation for obsessive-compulsive disorder
|
Muñoz, Katrina A. |
|
|
14 |
6 |
p. 1566-1572 |
artikel |
372 |
Pre-stimulation phase modulates high-beta TMS entrainment effects on conscious visual perception
|
Martel, Adrien |
|
|
14 |
6 |
p. 1627 |
artikel |
373 |
Principles and mechanisms of focused ultrasound neuromodulation
|
Legon, Wynn |
|
|
14 |
6 |
p. 1747-1748 |
artikel |
374 |
Probing Cognitive Control Neurocircuitry: A Concurrent TMS-fMRI Investigation
|
Lopez, James |
|
|
14 |
6 |
p. 1623 |
artikel |
375 |
Probing cortical functional integrity after focal haemorrhagic stroke: a TMS-EEG case
|
D'Ambrosio, Sasha |
|
|
14 |
6 |
p. 1609 |
artikel |
376 |
Probing intrahemispheric PMd – M1 interactions with a novel dual-site TMS setup
|
Hehl, Melina |
|
|
14 |
6 |
p. 1633-1634 |
artikel |
377 |
Probing neural plasticity across brain states with TMS
|
Numssen, Ole |
|
|
14 |
6 |
p. 1612-1613 |
artikel |
378 |
Prolonged intermittent theta burst stimulation in the treatment of major depressive disorder
|
Noiseux, Clémence |
|
|
14 |
6 |
p. 1595 |
artikel |
379 |
Propensity to develop plasticity in the parieto-motor network in dystonia from the perspective of abnormal high-order motor processing
|
Sophie Cho, Hyun Joo |
|
|
14 |
6 |
p. 1682 |
artikel |
380 |
Pros and cons of using transcranial magnetic stimulation to address schizophrenic patients
|
Soltani, Elham |
|
|
14 |
6 |
p. 1680 |
artikel |
381 |
Protocol for mapping of the supplementary motor area using repetitive navigated transcranial magnetic stimulation
|
Engelhardt, Melina |
|
|
14 |
6 |
p. 1670 |
artikel |
382 |
Protocol of Non-invasive Current Stimulation in Acute Posterior-circulation Stroke with High Risk for Falling (NAPS trial): A Randomized Double-blind Sham-controlled Study
|
JUNG, JIN-MAN |
|
|
14 |
6 |
p. 1678-1679 |
artikel |
383 |
Protocol of transcranial magnetic stimulation and photobiomodulation integration
|
Huang, Li-Da |
|
|
14 |
6 |
p. 1614 |
artikel |
384 |
PTSD comorbidities in patients undergoing ECT for major depressive disorder: a national study across the United States
|
Youssef, Nagy |
|
|
14 |
6 |
p. 1621 |
artikel |
385 |
Quantitative ictal electroencephalography (qEEG) comparison of Focal Electrically-Administered Seizure Therapy (FEAST) and Ultrabrief Pulse Right Unilateral Electroconvulsive Therapy (UBP-RUL ECT)
|
Caulfield, Kevin |
|
|
14 |
6 |
p. 1665 |
artikel |
386 |
Rapid relief of severe freezing of gait after accelerated high-dose magnetic stimulations
|
Sun, Jinmei |
|
|
14 |
6 |
p. 1573-1575 |
artikel |
387 |
Real-time mapping of intrinsic brain connectivity to target brain stimulation
|
Marzetti, Laura |
|
|
14 |
6 |
p. 1751-1752 |
artikel |
388 |
Real-time noise removal for closed-loop EEG–TMS
|
Mutanen, Tuomas P. |
|
|
14 |
6 |
p. 1752 |
artikel |
389 |
Real world evidence of age-independent electroconvulsive therapy efficacy: a retrospective cohort study
|
Luccarelli, James |
|
|
14 |
6 |
p. 1676 |
artikel |
390 |
Reduced executive and reward connectivity associates with smoking cessation response to repetitive transcranial magnetic stimulation: A double-blind, randomized, sham-controlled trial
|
Li, Xingbao |
|
|
14 |
6 |
p. 1732 |
artikel |
391 |
Reduced reactive aggression after HD-tDCS and the modulation of electrophysiological responses in a forensic patient sample
|
Sergiou, Carmen-Silva |
|
|
14 |
6 |
p. 1720 |
artikel |
392 |
Reference databases for 100 years of brain stimulation
|
Renduchintala, Anurag |
|
|
14 |
6 |
p. 1667 |
artikel |
393 |
Reinforcement machine learning for closed-loop rTMS stimulation of brain networks
|
Humaidan, Dania |
|
|
14 |
6 |
p. 1696 |
artikel |
394 |
Relationship between dose and duration of treatment response in severely treatment-resistant depression patients treated with accelerated intermittent theta bust stimulation
|
Kratter, Ian |
|
|
14 |
6 |
p. 1666-1667 |
artikel |
395 |
Reliability of TMS-derived hand motor mapping across development in clinical cohort with refractory epilepsy or brain tumor
|
Fox, Mia |
|
|
14 |
6 |
p. 1637-1638 |
artikel |
396 |
Remote effects of transcranial magnetic stimulation on the human brain revealed by intracranial electrocorticography correspond to resting state functional connectivity MRI networks
|
Boes, Aaron |
|
|
14 |
6 |
p. 1729 |
artikel |
397 |
Remotely controlled magnetic stimulation with localized chemical release
|
Rao, Siyuan |
|
|
14 |
6 |
p. 1742 |
artikel |
398 |
Repetitive magnetic stimulation induces synaptic plasticity through cooperative pre- and postsynaptic activation
|
Vlachos, Andreas |
|
|
14 |
6 |
p. 1745-1746 |
artikel |
399 |
Repetitive navigated transcranial magnetic stimulation (rnTMS) to facilitate recovery of motor deficits after supratentorial tumor resection – Interim analysis
|
Engelhardt, Melina |
|
|
14 |
6 |
p. 1591 |
artikel |
400 |
Repetitive transcranial magnetic stimulation for major depressive disorder comorbid with huntington’s disease: a case report
|
Noiseux, Clémence |
|
|
14 |
6 |
p. 1639 |
artikel |
401 |
Repetitive Transcranial Magnetic Stimulation Improves Neuropsychiatric Manifestations in Adult-onset Leukoencephalopathy with Axonal Spheroids and Pigmented Glia
|
Marefi, Amaar |
|
|
14 |
6 |
p. 1681-1682 |
artikel |
402 |
Repetitive transcranial magnetic stimulation in borderline personality disorder: clinical and brain connectivity changes
|
Linhartová, Pavla |
|
|
14 |
6 |
p. 1680 |
artikel |
403 |
Repetitive transcranial magnetic stimulation promotes improvement in physical activity among breast cancer survivors
|
Carl, Ellen |
|
|
14 |
6 |
p. 1656-1657 |
artikel |
404 |
Repetitive transcranial magnetic stimulation promotes rapid psychiatric stabilization in acutely suicidal military service members
|
Hines, Christopher |
|
|
14 |
6 |
p. 1632 |
artikel |
405 |
Repetitive transcranial magnetic stimulation (rTMS) for catatonia– a case report
|
Licht, Christiane |
|
|
14 |
6 |
p. 1636 |
artikel |
406 |
Repetitive transcranial magnetic stimulation (rTMS) in the treatment of bipolar depression
|
Novák, Tomáš |
|
|
14 |
6 |
p. 1589 |
artikel |
407 |
Repetitive transcranial magnetic stimulation therapy markedly reduces anxiety in adults with major depressive disorder: A retrospective analysis of 664 patients
|
Hutton, Todd |
|
|
14 |
6 |
p. 1718 |
artikel |
408 |
Reply to Hudaib
|
Chen, Leo |
|
|
14 |
6 |
p. 1587-1588 |
artikel |
409 |
Reply: Variability in motor threshold
|
Cotovio, Gonçalo |
|
|
14 |
6 |
p. 1523-1524 |
artikel |
410 |
Research challenges in chronic diseases: Difficult to treat depression
|
Rush, A. John |
|
|
14 |
6 |
p. 1724 |
artikel |
411 |
Retrospective Review of Clinical Effects, Tolerability and Outcomes of Deep Brain Stimulation (DBS) and Vagal Nerve Stimulation (VNS) in Patients Aged 23 and Younger
|
Yuruk, Deniz |
|
|
14 |
6 |
p. 1661 |
artikel |
412 |
Right orbitofrontal TMS as a fallback after unsuccessful DLPFC rTMS?
|
van der Vinne, Nikita |
|
|
14 |
6 |
p. 1687-1688 |
artikel |
413 |
Robotized functional localization with TMS
|
Kalloch, Benjamin |
|
|
14 |
6 |
p. 1652-1653 |
artikel |
414 |
rTMS Dosing for Smoking Cessation: Pre-COVID Preliminary Results
|
Sheffer, Chrisitine |
|
|
14 |
6 |
p. 1611 |
artikel |
415 |
rTMS induced Brain-Heart Coupling: Implications for site selection and frontal thresholding?
|
Dijkstra, Eva |
|
|
14 |
6 |
p. 1749 |
artikel |
416 |
rTMS to the contralesional M1 modulates the trajectory of post-stroke motor recovery
|
Lin, Christopher |
|
|
14 |
6 |
p. 1601 |
artikel |
417 |
Rumination: relationships with repetitive transcranial magnetic stimulation treatment of major depressive disorder
|
Chu, Stephanie A. |
|
|
14 |
6 |
p. 1693 |
artikel |
418 |
Safety and feasibility of accelerated low-frequency repetitive navigated transcranial magnetic stimulation (rnTMS)
|
Engelhardt, Melina |
|
|
14 |
6 |
p. 1630 |
artikel |
419 |
Safety and outcomes of pediatric neuromodulation in cerebral palsy: Infancy through young adulthood
|
Gillick, Bernadette |
|
|
14 |
6 |
p. 1748 |
artikel |
420 |
Safety of ipsilesional and contralesional accelerated TMS assessed with electric field modeling
|
Caulfield, Kevin |
|
|
14 |
6 |
p. 1704 |
artikel |
421 |
Scalp EEG prediction of intracranial high-frequency responses to median nerve stimulation: insights from simultaneous recordings
|
Mikulan, Ezequiel |
|
|
14 |
6 |
p. 1640-1641 |
artikel |
422 |
Shockwave modulation, stimulation and regeneration of the brain: a review
|
Novak, Pavel |
|
|
14 |
6 |
p. 1670 |
artikel |
423 |
Short interval cortical inhibition – literature review of methodology aspects and recommendations
|
Horký, Martin |
|
|
14 |
6 |
p. 1650 |
artikel |
424 |
Shoulder position and lesion location differentially affect hand muscle excitability and intracortical inhibition early post-stroke
|
Geed, Shashwati |
|
|
14 |
6 |
p. 1691-1692 |
artikel |
425 |
Simulation-based Investigation of the effect of the rotation of a rectangular electrode on the electrical field at the center of the electrode
|
Ko, Bongsuk |
|
|
14 |
6 |
p. 1649 |
artikel |
426 |
Simultaneous aerobic exercise and rTMS for treatment-resistant depression – a case report
|
VanDerwerker, Catherine |
|
|
14 |
6 |
p. 1658 |
artikel |
427 |
Single session of high amperage transcranial direct current stimulation shows differential montage effect on cortical excitability in ischemic stroke patients
|
Chhatbar, Pratik |
|
|
14 |
6 |
p. 1715 |
artikel |
428 |
Six weeks of daily prefrontal closed-loop repetitive transcranial magnetic stimulation (rTMS) produces progressive EEG-α phase entrainment in depressed adults
|
Faller, Josef |
|
|
14 |
6 |
p. 1624 |
artikel |
429 |
Sleep-like cortical bistability after focal and multifocal brain lesions
|
Rosanova, Mario |
|
|
14 |
6 |
p. 1743 |
artikel |
430 |
Software architecture for closed-loop multi-locus transcranial magnetic stimulation
|
Kahilakoski, Olli-Pekka |
|
|
14 |
6 |
p. 1647-1648 |
artikel |
431 |
Spatiotemporal specificity of TMS-evoked potentials versus sensory evoked potentials
|
Fecchio, Matteo |
|
|
14 |
6 |
p. 1688 |
artikel |
432 |
Spectral-temporal electrophysiological features predict short-term plasticity in humans
|
Kim, Naryeong |
|
|
14 |
6 |
p. 1702 |
artikel |
433 |
Spherical harmonics based model of electric field effects on neocortical neurons
|
Galan-Gadea, Adrià |
|
|
14 |
6 |
p. 1612 |
artikel |
434 |
Spindling excessive beta as transdiagnostic biomarker associated with impulse control in obsessive-compulsive disorder
|
Gajadien, Priya |
|
|
14 |
6 |
p. 1640 |
artikel |
435 |
Standalone versus combined effects of Transcranial Direct Current Stimulation and Intermittent Theta-Burst stimulation over the prefrontal cortex on the cognitive performance and cerebral activation of healthy subjects
|
Razza, Lais |
|
|
14 |
6 |
p. 1731 |
artikel |
436 |
Standardizing pathway activation models of subcallosal cingulate DBS
|
Noor, M. Sohail |
|
|
14 |
6 |
p. 1620-1621 |
artikel |
437 |
Standing improves lower extremity responses to transcranial magnetic stimulation post-stroke
|
Cash, Jasmine |
|
|
14 |
6 |
p. 1678 |
artikel |
438 |
Stanford neuromodulation therapy (SNT): a double-blinded, randomized, and controlled trial
|
Williams, Nolan |
|
|
14 |
6 |
p. 1736-1737 |
artikel |
439 |
Startle Reduces the TMS-Induced Reaction Time Delay in a Single Limb of a Bimanual Movement
|
Carlsen, Anthony |
|
|
14 |
6 |
p. 1603-1604 |
artikel |
440 |
Stimulation evoked potentials for optimal physiological targeting of subcallosal cingulate for depression
|
Waters, Allison |
|
|
14 |
6 |
p. 1743-1744 |
artikel |
441 |
Structural connectivity and freezing of gait response to deep brain stimulation
|
Lench, Daniel |
|
|
14 |
6 |
p. 1664 |
artikel |
442 |
Subthreshold repetitive transcranial magnetic stimulation drives structural synaptic plasticity in the young and aged motor cortex
|
Tang, Alexander D. |
|
|
14 |
6 |
p. 1498-1507 |
artikel |
443 |
Successful suppression of musical hallucinations with low-frequency rTMS of the left temporo-parietal junction: A case report
|
Nordberg, Janne |
|
|
14 |
6 |
p. 1467-1469 |
artikel |
444 |
Symmetry of motor and premotor transcranial magnetic stimulation (TMS)-evoked potentials
|
D'Ambrosio, Sasha |
|
|
14 |
6 |
p. 1633 |
artikel |
445 |
Systematic review of interleaved TMS-fMRI – overview of methodological differences and sources of bias
|
Mizutani-Tiebel, Yuki |
|
|
14 |
6 |
p. 1684 |
artikel |
446 |
Table of Contents
|
|
|
|
14 |
6 |
p. A3-A6 |
artikel |
447 |
Tackling fear memories using vagus nerve stimulation
|
Souza, Rimenez |
|
|
14 |
6 |
p. 1710 |
artikel |
448 |
TAP: Targeting and analysis pipeline for optimization and verification of TMS coil placement
|
Dannhauer, Moritz |
|
|
14 |
6 |
p. 1620 |
artikel |
449 |
Target identification for Transcranial Magnetic Stimulation (TMS) using precision mapping
|
Aaden, Amal |
|
|
14 |
6 |
p. 1666 |
artikel |
450 |
Targeting brain circuits for goal-directed movements with multi-focal transcranial magnetic stimulation
|
Vesia, Michael |
|
|
14 |
6 |
p. 1713 |
artikel |
451 |
Targeting restricted and repetitive behaviors in adolescents with autism spectrum disorder using theta-burst stimulation
|
Cole, Eleanor |
|
|
14 |
6 |
p. 1700-1701 |
artikel |
452 |
Targeting tics: Neurodevelopmental considerations in the design of the CBIT+TMS trial
|
Conelea, Christine |
|
|
14 |
6 |
p. 1748 |
artikel |
453 |
Task-dependent effects of intracranial hippocampal stimulation on human memory
|
Jun, Soyeon |
|
|
14 |
6 |
p. 1596-1597 |
artikel |
454 |
Task independent transfer learning in EEG deep-learning classification tasks: Sex classification and anti-depressant response prediction
|
Binnie, Hamish |
|
|
14 |
6 |
p. 1736 |
artikel |
455 |
TDCS-mediated artificial grammar training shows potential for improving attention and facilitating language learning in persons with aphasia
|
Riley, Ellyn |
|
|
14 |
6 |
p. 1675 |
artikel |
456 |
TDCS neuromodulation to enhance cognitive and proprioceptive treatment of Burning Mouth Syndrome
|
Sánchez Cuesta, Francisco José |
|
|
14 |
6 |
p. 1589-1590 |
artikel |
457 |
Telehealth transcranial direct current stimulation for recovery from Post-Acute Sequelae of SARS-CoV-2 (PASC)
|
Eilam-Stock, Tehila |
|
|
14 |
6 |
p. 1520-1522 |
artikel |
458 |
The augmentation of cognitive training with tDCS in the treatment of cognitive deficit in schizophrenia
|
Voráčková, Veronika |
|
|
14 |
6 |
p. 1628-1629 |
artikel |
459 |
"The clue is in the origin Watson!" – the tale of a DBS surgery for misdiagnosed Parkinson's Disease
|
Singh, Hargunbir |
|
|
14 |
6 |
p. 1705-1706 |
artikel |
460 |
The consortium of Researchers for ECT (CORE) - past, present and future
|
Petrides, Georgios |
|
|
14 |
6 |
p. 1737 |
artikel |
461 |
The corticospinal reserve: Surgical decompression restores cortical motor excitability and function in cases of mildly symptomatic degenerative cervical myelopathy
|
Zdunczyk, Anna |
|
|
14 |
6 |
p. 1743 |
artikel |
462 |
The effectiveness of non-clozapine antipsychotics combined with electroconvulsive therapy versus clozapine combined with electroconvulsive therapy for treatment-resistant schizophrenia
|
Ittasakul, Pichai |
|
|
14 |
6 |
p. 1590 |
artikel |
463 |
The effectiveness of Transcranial Direct Current Stimulation as an intervention to reduce aggressive behavior
|
van Dongen, Josanne |
|
|
14 |
6 |
p. 1720 |
artikel |
464 |
The effect of aging on inter-limb coordination: Establishing a novel transcranial alternating current stimulation (tACS) protocol by means of electroencephalography (EEG)
|
Van Hoornweder, Sybren |
|
|
14 |
6 |
p. 1673 |
artikel |
465 |
The effect of expertise, training and neurostimulation on sensory-motor skill in esports
|
Campbell, Mark |
|
|
14 |
6 |
p. 1681 |
artikel |
466 |
The Effect of Non-Invasive Brain Stimulation (NIBS) on Executive Functioning, Attention and Memory in Rehabilitation Patients with Traumatic Brain Injury: a Systematic Review and Meta-analysis
|
Hara, Takatoshi |
|
|
14 |
6 |
p. 1716-1717 |
artikel |
467 |
The effect of non-invasive transcutaneous auricular vagus nerve stimulation (taVNS) on hypoxic-ischemic injury in newborn rats
|
Wiley, Melanie |
|
|
14 |
6 |
p. 1622-1623 |
artikel |
468 |
The effect of repeated prefrontal cortical stimulation on aggression: A randomized controlled trial
|
Choy, Olivia |
|
|
14 |
6 |
p. 1720 |
artikel |
469 |
The effect of reward on motor plasticity during motor learning
|
Vassiliadis, Pierre |
|
|
14 |
6 |
p. 1683 |
artikel |
470 |
The effect of single-session transcranial direct current stimulation (tDCS) on the three core components of physical fitness: muscle strength, muscle endurance and cardiopulmonary endurance, a systematic review
|
Meesen, Raf |
|
|
14 |
6 |
p. 1632 |
artikel |
471 |
The effect of subthalamic nucleus deep brain stimulation volume of tissue activated on visually-guided reaching
|
Munoz, Miranda |
|
|
14 |
6 |
p. 1598 |
artikel |
472 |
The effect of transcranial direct current stimulation on beta-endorphin in older adults with knee osteoarthritis pain
|
Ahn, Hyochol |
|
|
14 |
6 |
p. 1701 |
artikel |
473 |
The effect of transcutaneous auricular vagal nerve stimulation on short latency afferent inhibition and cerebello-cortical inhibition – indirect TMS measures of the activity of the basal cholinergic system and the inhibitory Purkinje cell activity
|
van Midden, Vesna |
|
|
14 |
6 |
p. 1695-1696 |
artikel |
474 |
The effects of aerobic exercise on motor cortex plasticity in chronic stroke survivors with and without post-stroke depression: a preliminary report
|
Ross, Ryan |
|
|
14 |
6 |
p. 1684-1685 |
artikel |
475 |
The effects of long-term application of transcranial direct current stimulation on transfer of motor learning in Parkinson’s disease
|
Pantovic, Milan |
|
|
14 |
6 |
p. 1616 |
artikel |
476 |
The effects of neuromodulation priming to Intermittent Theta Burst Transcranial Magnetic Stimulation (iTBS): effects on physiological and subjectives measures of stress in healthy individuals
|
Vanderhasselt, Marie-Anne |
|
|
14 |
6 |
p. 1731 |
artikel |
477 |
The effects of vagus nerve stimulation on the course and outcomes of patients with bipolar disorder in a treatment-resistant depressive episode: a 5-year prospective registry
|
McAllister-Williams, R. Hamish |
|
|
14 |
6 |
p. 1701 |
artikel |
478 |
The great reset: Transcranial pulse stimulation reduces global EEG-entropy in Alzheimer's Disease
|
Wojtecki, Lars |
|
|
14 |
6 |
p. 1676 |
artikel |
479 |
The impulse noise of TMS inside a 3 T and 9.4 T MRI
|
Nyrhinen, Mikko |
|
|
14 |
6 |
p. 1606 |
artikel |
480 |
The influence of EPI parameter choice on reliability of sgACC-DLPFC functional connectivity
|
Vasileiadi, Maria |
|
|
14 |
6 |
p. 1608-1609 |
artikel |
481 |
The influence of sample and treatment characteristics on the efficacy of repetitive transcranial magnetic stimulation in depression: a meta-analysis and meta-regression
|
Dalhuisen, Iris |
|
|
14 |
6 |
p. 1671 |
artikel |
482 |
The mechanisms of action of vagus nerve stimulation in difficult-to-treat depression: An update
|
Sackeim, Harold |
|
|
14 |
6 |
p. 1725 |
artikel |
483 |
The potential of chronic subcortical recordings for unravelling basal ganglia function and optimisation of deep brain stimulation
|
Beudel, Martijn |
|
|
14 |
6 |
p. 1726-1727 |
artikel |
484 |
Therapeutic protocols of frontal brain stimulation - benefits of integrating multimodal off- and online neuroimaging methods
|
Keeser, Daniel |
|
|
14 |
6 |
p. 1724 |
artikel |
485 |
The “RF-EEG Cap”: a technological solution for high sensitivity whole-head concurrent TMS/EEG/fMRI experiments at 3T
|
Navarro de Lara, Lucia |
|
|
14 |
6 |
p. 1618 |
artikel |
486 |
The role of overlap and distribution of robotic TMS motor maps in children's hand function
|
Babwani, Ali |
|
|
14 |
6 |
p. 1679 |
artikel |
487 |
The “stimulation context” alters the relative magnitude of short-latency afferent inhibition
|
Bonnesen, Marie Trolle |
|
|
14 |
6 |
p. 1668 |
artikel |
488 |
Theta burst stimulation (TBS) to modulate craving and attentional bias in people living with HIV/AIDS smokers (PLWHA)
|
Rakesh, Gopalkumar |
|
|
14 |
6 |
p. 1662-1663 |
artikel |
489 |
Theta phase-locked TMS modulates functional connectivity during working memory recall
|
Jovellar, D. Blair |
|
|
14 |
6 |
p. 1660 |
artikel |
490 |
Theta synchronized closed-loop stimulation increases hippocampal excitability in humans
|
Kragel, James |
|
|
14 |
6 |
p. 1657-1658 |
artikel |
491 |
TMS Adaptable Auditory Control: a universal tool to mask TMS click
|
Russo, Simone |
|
|
14 |
6 |
p. 1639-1640 |
artikel |
492 |
TMS and CBT-I for comorbid depression and insomnia. Exploring feasibility and tolerability of transcranial magnetic stimulation (TMS) and cognitive behavioral therapy for insomnia (CBT-I) for comorbid major depressive disorder and insomnia during the COVID-19 pandemic
|
Norred, Michael A. |
|
|
14 |
6 |
p. 1508-1510 |
artikel |
493 |
TMS based lower extremity multi-muscle motor mapping in persons post-stroke with impaired muscle coordination
|
Srivastava, Shraddha |
|
|
14 |
6 |
p. 1651 |
artikel |
494 |
TMS-EEG as a measure of cortical hyperexcitability in motor and parietal cortex in Alzheimer’s disease: a pilot study
|
Passera, Brice |
|
|
14 |
6 |
p. 1658-1659 |
artikel |
495 |
TMS for Persistent Post Traumatic Brain Injury Headache-A neuropathic Pain State
|
Leung, Albert |
|
|
14 |
6 |
p. 1730 |
artikel |
496 |
TMS sites connected to the left ventrolateral prefrontal cortex modulate emotional conflict regulation
|
Li, Jing |
|
|
14 |
6 |
p. 1697 |
artikel |
497 |
TMS Therapy: What Does the Future Hold?
|
Carpenter, Linda |
|
|
14 |
6 |
p. 1746 |
artikel |
498 |
To stimulate, or to meditate? That is the question! A randomized, sham-controlled trial exploring the effects of tDCS and mindfulness on cognition and creative thinking
|
Lucchiari, Claudio |
|
|
14 |
6 |
p. 1637 |
artikel |
499 |
Toward prospective electric field dosing in TMS and tDCS
|
Caulfield, Kevin |
|
|
14 |
6 |
p. 1739 |
artikel |
500 |
Towards real-time tractography-based TMS neuronavigation
|
Aydogan, Dogu Baran |
|
|
14 |
6 |
p. 1609 |
artikel |
501 |
Toward state-of-the-art personalised brain stimulation: precision, feasibility and relation to clinical outcome
|
Cash, Robin |
|
|
14 |
6 |
p. 1710 |
artikel |
502 |
Tractography-guided hippocampal theta burst stimulation to improve memory performance and increase hippocampal connectivity in mild cognitive impairment
|
Chen, Yu-Chin (Allison) |
|
|
14 |
6 |
p. 1638-1639 |
artikel |
503 |
Transauricular vagal nerve stimulation at 40Hz attenuates hippocampal amyloid load in 6-month-old APP/PS mice
|
Yu, Yutian |
|
|
14 |
6 |
p. 1669 |
artikel |
504 |
Transcranial Direct Current Stimulation and Post-COVID-19-Fatigue
|
Workman, Craig |
|
|
14 |
6 |
p. 1672-1673 |
artikel |
505 |
Transcranial direct current stimulation combined with alcohol cue inhibitory control training reduces the risk of early alcohol relapse: A randomized placebo-controlled clinical trial
|
Dubuson, Macha |
|
|
14 |
6 |
p. 1531-1543 |
artikel |
506 |
Transcranial direct current stimulation improves dual task gait and balance: a systematic review
|
Morelli, Nathan |
|
|
14 |
6 |
p. 1669-1670 |
artikel |
507 |
Transcranial direct current stimulation might decrease lower leg glucose uptake and asymmetries in people with multiple sclerosis
|
Fietsam, Alexandra |
|
|
14 |
6 |
p. 1593 |
artikel |
508 |
Transcranial Direct Current Stimulation (tDCS) for severely ill schizophrenia patients
|
Suonmaa, Elisa |
|
|
14 |
6 |
p. 1630 |
artikel |
509 |
Transcranial focused ultrasound for epilepsy
|
Bubrick, Ellen |
|
|
14 |
6 |
p. 1747 |
artikel |
510 |
Transcranial magnetic stimulation coupled with behavioral intervention appears to improve sentence comprehension in early Alzheimer’s disease
|
Manouilidou, Christina |
|
|
14 |
6 |
p. 1622 |
artikel |
511 |
Transcranial magnetic stimulation-evoked cortical inhibition and facilatation: a possible biomarker for posttraumatic stress disorder
|
Wang, Zhewu |
|
|
14 |
6 |
p. 1707 |
artikel |
512 |
Transcranial Magnetic Stimulation (TMS) Analysis Toolbox: A user friendly open source software for basic and advanced analysis and data sharing of TMS related outcomes
|
Cunningham, David |
|
|
14 |
6 |
p. 1641-1642 |
artikel |
513 |
Transcranial magnetic stimulation (TMS) responses show differential recovery pattern between upper and lower limb in stroke patients over subacute phase
|
Kim, Taewon |
|
|
14 |
6 |
p. 1661 |
artikel |
514 |
Transcranial ultrasound stimulation in primate anterior cingulate cortex impairs flexible learning under economic loss and high attentional load
|
Boroujeni, Kianoush Banaie |
|
|
14 |
6 |
p. 1612 |
artikel |
515 |
Transcutaneous auricular vagal nerve stimulation is a promising therapeutic approach for weight management in females with polycystic ovary syndrome
|
Ling, Jing |
|
|
14 |
6 |
p. 1623 |
artikel |
516 |
Transcutaneous auricular vagus nerve stimulation ameliorates chronic pain in patients with systemic sclerosis: results from a pilot interventional trial
|
Carandina, Angelica |
|
|
14 |
6 |
p. 1673 |
artikel |
517 |
Transcutaneous auricular vagus nerve stimulation increases eye-gaze to salient facial features and oxytocin release
|
Zhu, Siyu |
|
|
14 |
6 |
p. 1639 |
artikel |
518 |
Transient neural oscillations reveal new biomarkers for therapeutic transcranial magnetic stimulation for comorbid MDD and PTSD
|
Morris, Alexander |
|
|
14 |
6 |
p. 1643 |
artikel |
519 |
Translational research to unravel the mechanism of action of vagus nerve stimulation
|
Vonck, Kristl |
|
|
14 |
6 |
p. 1726 |
artikel |
520 |
Treatment of obsessive-compulsive disorder with frontopolar multifocal transcranial direct current stimulation and exposure and response prevention: A case Series
|
Adams Jr., Thomas G. |
|
|
14 |
6 |
p. 1431-1433 |
artikel |
521 |
Treatment of refractory obsessive-compulsive disorder with comorbid major depression with sequential multi-locus transcranial magnetic stimulation
|
Tadayonnejad, Reza |
|
|
14 |
6 |
p. 1699 |
artikel |
522 |
Tuning hippocampal dynamics with optogenetic MSDB stimulation
|
Scott, Rod |
|
|
14 |
6 |
p. 1690-1691 |
artikel |
523 |
Ultrasonic stimulation in disorders of consciousness
|
Monti, Martin |
|
|
14 |
6 |
p. 1746-1747 |
artikel |
524 |
Ultrasound neuromodulation - principles and cellular mechanisms
|
Hynynen, Kullervo |
|
|
14 |
6 |
p. 1734 |
artikel |
525 |
Uncertainty Quantification in Brain Stimulation using UncertainSCI
|
Tate, Jess |
|
|
14 |
6 |
p. 1659-1660 |
artikel |
526 |
Uncertainty quantification of TMS simulation considering MRI segmentation error
|
Zhang, Hao |
|
|
14 |
6 |
p. 1615-1616 |
artikel |
527 |
Understanding the anatomical substrates and neurophysiological effects of transcutaneous auricular vagus nerve stimulation
|
Badran, Bashar |
|
|
14 |
6 |
p. 1726 |
artikel |
528 |
Use of the Virtual Brain to target networks in treatment resistant depression
|
An, Sora |
|
|
14 |
6 |
p. 1744 |
artikel |
529 |
Using cortico-basal ganglia network physiology for chronic embedded adaptive DBS in movement disorders
|
Little, Simon |
|
|
14 |
6 |
p. 1726 |
artikel |
530 |
Using dual-site TMS to explore functional connectivity in children
|
Wu, Steve |
|
|
14 |
6 |
p. 1748 |
artikel |
531 |
Vagus nerve electroneurogram-based detection of acute pentylenetetrazol induced seizures in rats
|
Stumpp, Lars |
|
|
14 |
6 |
p. 1725-1726 |
artikel |
532 |
Vagus nerve stimulation: Changing the paradigm for chronic difficult to treat depression
|
Aaronson, Scott |
|
|
14 |
6 |
p. 1746 |
artikel |
533 |
Vagus Nerve Stimulation elicits sleep EEG desynchronization and network changes in responder patients in epilepsy
|
Vespa, Simone |
|
|
14 |
6 |
p. 1627-1628 |
artikel |
534 |
Vagus nerve stimulation induced cognitive enhancement: Hippocampal neuroplasticity in healthy male rats
|
Olsen, Laura |
|
|
14 |
6 |
p. 1703-1704 |
artikel |
535 |
Vagus nerve stimulation-induced laryngeal motor evoked potentials: a biomarker of effective nerve activation
|
Evelina, Iachim |
|
|
14 |
6 |
p. 1654 |
artikel |
536 |
Vagus nerve stimulation in patients receiving maintenance therapy with electroconvulsive therapy: a series of 10 cases
|
Aaronson, Scott |
|
|
14 |
6 |
p. 1621-1622 |
artikel |
537 |
Vagus nerve stimulation paired with sounds improves auditory processing in rat models of neurodevelopmental disorders
|
Engineer, Crystal |
|
|
14 |
6 |
p. 1709 |
artikel |
538 |
Vagus Nerve Stimulation using micro-magnetic stimulation
|
Jeong, Hongbae |
|
|
14 |
6 |
p. 1656 |
artikel |
539 |
Validated TMS coil models for electric field simulations
|
Drakaki, Maria |
|
|
14 |
6 |
p. 1631 |
artikel |
540 |
Variability in TMS-EEG response can partially be described by the phase of ongoing brain oscillation
|
Poorganji, Mohsen |
|
|
14 |
6 |
p. 1672 |
artikel |
541 |
Vasovagal syncope as a specific side effect of rTMS: A frontal-vagal dose-finding study
|
Rouwhorst, Renée |
|
|
14 |
6 |
p. 1648 |
artikel |
542 |
VNS therapy for medically refractory partial seizures: An update
|
Wheless, James W. |
|
|
14 |
6 |
p. 1725 |
artikel |
543 |
Waveform simulation and pulse-width-modulation approximations with multi-locus tms
|
Sinisalo, Heikki |
|
|
14 |
6 |
p. 1634 |
artikel |
544 |
Waving together single pulse intracranial electrical stimulation with concurrent stereo EEG and scalp hd-EEG recording
|
Parmigiani, Sara |
|
|
14 |
6 |
p. 1600 |
artikel |
545 |
Wearable sensor-driven responsive deep brain stimulation for essential tremor
|
Cernera, Stephanie |
|
|
14 |
6 |
p. 1434-1443 |
artikel |
546 |
What and where does TMS activate: Evidence from coupled electric field and neural models
|
Aberra, Aman |
|
|
14 |
6 |
p. 1733 |
artikel |
547 |
What can we learn when applying tACS on a phantom head?
|
Mihajlovic, Vojkan |
|
|
14 |
6 |
p. 1604 |
artikel |
548 |
What defines a psychiatric disorder? A transdiagnostic circuit perspective
|
Taylor, Joseph |
|
|
14 |
6 |
p. 1711 |
artikel |
549 |
What does the Neurostar TMS registry database reveal about effects of patient demographics and stimulation parameters on treatment outcomes?
|
Carpenter, Linda |
|
|
14 |
6 |
p. 1718 |
artikel |
550 |
What happens in vagus doesn't stay in vagus....a stimulating way to treat parkinson's disease
|
Boger, Heather |
|
|
14 |
6 |
p. 1709 |
artikel |
551 |
What I have done with Professor Rothwell in NBS field
|
Ugawa, Yoshikazu |
|
|
14 |
6 |
p. 1740 |
artikel |
552 |
What’s new with the oldest form of brain stimulation: Innovations in ECT
|
Sackeim, Harold |
|
|
14 |
6 |
p. 1746 |
artikel |
553 |
Which is a more deterministic factor for cortical activation induced by transcranial electrical stimulation, electric field or radial field?
|
Chung, Hyeyeon |
|
|
14 |
6 |
p. 1599 |
artikel |
554 |
Which neural structures are stimulated where in the precentral gyrus by TMS? Insights from recordings of transcranial motor evoked potentials and personalized electrical field modelling
|
Thielscher, Axel |
|
|
14 |
6 |
p. 1733 |
artikel |
555 |
Wireless deep brain stimulation in freely moving mice with nonresonant powering of magnetoelectric nanoparticles
|
Jahanshahi, Ali |
|
|
14 |
6 |
p. 1742 |
artikel |
556 |
Wireless magnetomechanical and magnetothermal neuromodulation with magnetite nandiscs
|
Gregurec, Danijela |
|
|
14 |
6 |
p. 1741 |
artikel |