Publication scientifique

AccueilMRI-individualized, multi-electrode tACS enhances the induced electrical field strength in the targeted...

MRI-individualized, multi-electrode tACS enhances the induced electrical field strength in the targeted area of mild cognitive impairment patients

Objective We compared personalized MRI-based simulations of multi-electrode tACS with simulations using a fixed, standardized setting computed on the MNI head model in patients with mild cognitive impairment (MCI), as well as in healthy older (HO) and younger (HY) participants. We questioned whether the distribution and strength of the induced electrical field would differ among these three groups. Methods Structural MRI scans were acquired from 149 participants, including 33 MCI patients, 58 HY, and 58 HO adults. A fixed selection of 6 electrode positions was used to define the optimal current to induce an electric field strength of 0.3 V/m in the target region, the left angular gyrus. The distribution of the electric field strength in the brain, including the target region, was calculated for the personalized and standardized simulation conditions. Results Personalized tACS simulations showed a significantly increased electric field strength in the target region compared to the standardized simulation in MCI patients, the former being closer to the desired electric field strength. No difference was found in healthy participants. Moreover, the standardized simulation significantly increased the current variability at the target region compared to personalized simulations in all groups, indicating a larger current spread. Conclusion This study demonstrates that personalized modelling of electric fields is essential for controlling anatomical differences, ensuring accurate dosing in target regions, and minimizing the spread of stimulation to other areas, especially in individuals with MCI. Significance Anatomical variations can significantly impact the electrical field strength induced by transcranial electrical stimulation (tACS) in the brain of MCI patients.

Autres publications de la plateforme

Characterising the Diffusion Functional Signature of Negative BOLD With Interleaved TMS...

De Riedmatten, Inès; Spencer, Arthur P. C.; Martuzzi, Roberto; Rochas, Vincent; Pérot, Jean‐Baptiste; Szczepankiewicz, Filip; Jelescu, Ileana O.
Human Brain Mapping
Plateforme d’Imagerie par Résonance Magnétique (IRM)

Aberrant cerebrovascular reactivity presents as an early biomarker of psychosis susceptibility...

Delavari, Farnaz; Moia, Stefano; Forrer, Silas; Sandini, Corrado; Kojovic, Nada; Pascucci, Alessandro; Lacour, Clémence; Eliez, Stephan; Van De Ville, Dimitri
Translational Psychiatry

Real-time reinforcement for human-machine interface control

Vassiliadis, Pierre; Pinheiro, Daniel Leal; Fleury, Lisa; Zenon, Alexandre; Esparza-Iaizzo, Martín; Ingster, Abigaïl; Micera, Silvestro; Shokur, Solaiman; Hummel, Friedhelm C.
Neuron

Developmental Alterations in the Diffusion Tensor Imaging Analysis Along the Perivascular...

Pascucci, Alessandro; Forrer, Silas; Sandini, Corrado; Mancini, Valentina; Alemán-Gómez, Yasser; Eliez, Stephan; Delavari, Farnaz
Biological Psychiatry Global Open Science

How Much Does Motion Matter? Evaluating the Motion Robustness of pTx...

Philippe, Jocelyn; Pato Montemayor, Natalia; Romanin, Ludovica; Sleight, Emilie; Klauser, Antoine; Di Noto, Tommaso; Bacha, Lina; Maréchal, Bénédicte; Herrler, Jürgen; Liebig, Patrick A.; Heidemann, Robin M.; Thiran, Jean‐Philippe; Hilbert, Tom; Piredda, Gian Franco; Yu, Thomas
Magnetic Resonance in Medicine

Linguistic pitch is hierarchically encoded in the right ventral stream

Oderbolz, Chantal; Orpella, Joan; Meyer, Martin
Communications Biology

Journal de publication

Clinical Neurophysiology

Auteurs:

Rochas, Vincent; Konstantopoulou, Stefania; Unschuld, Paul G.; Opitz, Alexander; Bréchet, Lucie

Date de publication:

Plateforme:

Études récentes de la plateforme

Neuro-ingénieriePsychologie et neurosciences cognitives

Quand le cerveau s’éteint à l’IRM : un signal plus complexe...

Quand une diminution du signal reste difficile à interpréter L’imagerie par résonance magnétique fonctionnelle (IRMf) permet de repérer les régions du cerveau qui réagissent...
Plateforme d’Imagerie par Résonance Magnétique (IRM)Plateforme M/EEG & Neuromod (MEG)

La connaissance comme récompense

Comparaison de différents types de récompenses Les participants prennent part à une tâche comprenant trois types de récompenses, de valeur élevée ou faible : -...
Plateforme d’Imagerie par Résonance Magnétique (IRM)Plateforme M/EEG & Neuromod (MEG)

Réseaux cérébraux de la mémoire dans l’épilepsie

Cartographie multimodale des réseaux cérébraux Combinaison de l'EEG, de l'IRM à champ ultra-élevé et de modèles animaux Ce projet vise à identifier les marqueurs...
Plateforme d’Imagerie par Résonance Magnétique (IRM)Plateforme M/EEG & Neuromod (MEG)