[HTML][HTML] TMS combined with EEG: Recommendations and open issues for data collection and analysis

JC Hernandez-Pavon, D Veniero, TO Bergmann… - Brain Stimulation, 2023 - Elsevier
Transcranial magnetic stimulation (TMS) evokes neuronal activity in the targeted cortex and
connected brain regions. The evoked brain response can be measured with …

Breaking the boundaries of interacting with the human brain using adaptive closed-loop stimulation

K Nasr, D Haslacher, E Dayan, N Censor… - Progress in …, 2022 - Elsevier
The human brain is arguably one of the most complex systems in nature. To understand how
it operates, it is essential to understand the link between neural activity and behavior …

[HTML][HTML] Neuronavigation maximizes accuracy and precision in TMS positioning: evidence from 11,230 distance, angle, and electric field modeling measurements

KA Caulfield, HH Fleischmann, CE Cox, JP Wolf… - Brain stimulation, 2022 - Elsevier
Background Researchers and clinicians have traditionally relied on elastic caps with
markings to reposition the transcranial magnetic stimulation (TMS) coil between trains and …

[HTML][HTML] Using noise for the better: The effects of transcranial random noise stimulation on the brain and behavior

O Van der Groen, W Potok, N Wenderoth… - Neuroscience & …, 2022 - Elsevier
Abstract Van der Groen, O., Potok, W., Wenderoth, N., Edwards., G., Mattingley, JB and
Edwards, D. Using noise for the better: the effects of transcranial random noise stimulation …

Microstructural and functional plasticity following repeated brain stimulation during cognitive training in older adults

D Antonenko, AE Fromm, F Thams, U Grittner… - Nature …, 2023 - nature.com
The combination of repeated behavioral training with transcranial direct current stimulation
(tDCS) holds promise to exert beneficial effects on brain function beyond the trained task …

[HTML][HTML] Inter-individual and age-dependent variability in simulated electric fields induced by conventional transcranial electrical stimulation

D Antonenko, U Grittner, G Saturnino, T Nierhaus… - Neuroimage, 2021 - Elsevier
Variations in head and brain anatomy determine the strength and distribution of electrical
fields in humans and may account for inconsistent behavioral and neurophysiological …

Cognitive and neuropathophysiological outcomes of gamma-tACS in dementia: a systematic review

V Manippa, A Palmisano, MA Nitsche, M Filardi… - Neuropsychology …, 2024 - Springer
Despite the numerous pharmacological interventions targeting dementia, no disease-
modifying therapy is available, and the prognosis remains unfavorable. A promising …

Priming intermittent theta burst stimulation for hemiparetic upper limb after stroke: a randomized controlled trial

JJ Zhang, Z Bai, KNK Fong - Stroke, 2022 - Am Heart Assoc
Background: Intermittent theta burst stimulation (iTBS) creates a state with increased
excitability that permits treatment modalities to induce neuroplasticity and motor learning …

[HTML][HTML] Inter-individual variability in current direction for common tDCS montages

C Evans, C Zich, JSA Lee, N Ward, S Bestmann - Neuroimage, 2022 - Elsevier
The direction of applied electric current relative to the cortical surface is a key determinant of
transcranial direct current stimulation (tDCS) effects. Inter-individual differences in anatomy …

Toward integrative approaches to study the causal role of neural oscillations via transcranial electrical stimulation

V Beliaeva, I Savvateev, V Zerbi, R Polania - Nature Communications, 2021 - nature.com
Diverse transcranial electrical stimulation (tES) techniques have recently been developed to
elucidate the role of neural oscillations, but critically, it remains questionable whether neural …