[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 …

Measurements and models of electric fields in the in vivo human brain during transcranial electric stimulation

Y Huang, AA Liu, B Lafon, D Friedman, M Dayan… - elife, 2017 - elifesciences.org
Transcranial electric stimulation aims to stimulate the brain by applying weak electrical
currents at the scalp. However, the magnitude and spatial distribution of electric fields in the …

Realistic volumetric-approach to simulate transcranial electric stimulation—ROAST—a fully automated open-source pipeline

Y Huang, A Datta, M Bikson… - Journal of neural …, 2019 - iopscience.iop.org
Objective. Research in the area of transcranial electrical stimulation (TES) often relies on
computational models of current flow in the brain. Models are built based on magnetic …

Review of individualized current flow modeling studies for transcranial electrical stimulation

A Hunold, J Haueisen, F Nees… - Journal of Neuroscience …, 2023 - Wiley Online Library
There is substantial intersubject variability of behavioral and neurophysiological responses
to transcranial electrical stimulation (tES), which represents one of the most important …

[HTML][HTML] The New York Head—A precise standardized volume conductor model for EEG source localization and tES targeting

Y Huang, LC Parra, S Haufe - NeuroImage, 2016 - Elsevier
In source localization of electroencephalograpic (EEG) signals, as well as in targeted
transcranial electric current stimulation (tES), a volume conductor model is required to …

[HTML][HTML] Fast computational optimization of TMS coil placement for individualized electric field targeting

LJ Gomez, M Dannhauer, AV Peterchev - Neuroimage, 2021 - Elsevier
Background During transcranial magnetic stimulation (TMS) a coil placed on the scalp is
used to non-invasively modulate activity of targeted brain networks via a magnetically …

[HTML][HTML] Accurate and robust whole-head segmentation from magnetic resonance images for individualized head modeling

O Puonti, K Van Leemput, GB Saturnino, HR Siebner… - Neuroimage, 2020 - Elsevier
Transcranial brain stimulation (TBS) has been established as a method for modulating and
mapping the function of the human brain, and as a potential treatment tool in several brain …

[HTML][HTML] Conditions for numerically accurate TMS electric field simulation

LJ Gomez, M Dannhauer, LM Koponen, AV Peterchev - Brain stimulation, 2020 - Elsevier
Background Computational simulations of the E-field induced by transcranial magnetic
stimulation (TMS) are increasingly used to understand its mechanisms and to inform its …

ROAST: an open-source, fully-automated, realistic volumetric-approach-based simulator for TES

Y Huang, A Datta, M Bikson… - 2018 40th Annual …, 2018 - ieeexplore.ieee.org
Research in the area of transcranial electrical stimulation (TES) often relies on
computational models of current flow in the brain. Models are built on magnetic resonance …

Improving interference control in ADHD patients with transcranial direct current stimulation (tDCS)

C Breitling, T Zaehle, M Dannhauer… - Frontiers in cellular …, 2016 - frontiersin.org
The use of transcranial direct current stimulation (tDCS) in patients with attention deficit
hyperactivity disorder (ADHD) has been suggested as a promising alternative to …