Literature DB >> 25271688

A setup for administering TMS to medial and lateral cortical areas during whole-brain FMRI recording.

Antoin D de Weijer1, Iris E C Sommer, Erwin J Bakker, Mirjam Bloemendaal, Chris J G Bakker, Dennis W J Klomp, Sven Bestmann, Sebastiaan F W Neggers.   

Abstract

SUMMARY: Stimulating brain areas with transcranial magnetic stimulation (TMS) while concurrently and noninvasively recording brain activity changes through functional MRI enables a new range of investigations about causal interregional interactions in the human brain. However, standard head-coil arrangements for current methods for concurrent TMS-functional MRI somewhat restrict the cortical brain regions that can be targeted with TMS because space in typical MR head coils is limited. Another limitation for concurrent TMS-functional MRI approaches concerns the estimation of the precise stimulation site, which can limit the interpretation of the activity changes induced by TMS and increase the variability of the stimulation effects. Here, we present a novel approach using flexible MR receiver coils, allowing for stimulation of a large part of the cortex including more lateral areas. Furthermore, we present a fast and economical method to determine the precise location of the stimulation coil during scanning. This point-based registration method can accurately compute, during scanning, where TMS pulses are delivered. We validated this approach by stimulating medial (M1) and more lateral (dorsal part of the supramarginal gyrus) brain areas concurrently with functional MRI. Activation close to but not directly at the stimulated location and in distal areas connected to the targeted site was observed. This study provides a proof of concept that TMS of medial and lateral brain areas is feasible without significantly compromising brain coverage and that one can precisely determine the exact coil location inside the bore to verify targeting of brain areas.

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Year:  2014        PMID: 25271688     DOI: 10.1097/WNP.0000000000000075

Source DB:  PubMed          Journal:  J Clin Neurophysiol        ISSN: 0736-0258            Impact factor:   2.177


  11 in total

1.  Repetitive transcranial magnetic stimulation as a treatment for auditory hallucinations.

Authors:  Iris E Sommer; Sebastian F W Neggers
Journal:  Neuropsychopharmacology       Date:  2014-01       Impact factor: 7.853

2.  EPI distortion correction for concurrent human brain stimulation and imaging at 3T.

Authors:  Hyuntaek Oh; Jung Hwan Kim; Jeffrey M Yau
Journal:  J Neurosci Methods       Date:  2019-08-18       Impact factor: 2.390

Review 3.  Concurrent TMS-fMRI: Technical Challenges, Developments, and Overview of Previous Studies.

Authors:  Yuki Mizutani-Tiebel; Martin Tik; Kai-Yen Chang; Frank Padberg; Aldo Soldini; Zane Wilkinson; Cui Ci Voon; Lucia Bulubas; Christian Windischberger; Daniel Keeser
Journal:  Front Psychiatry       Date:  2022-04-21       Impact factor: 5.435

4.  How much detail is needed in modeling a transcranial magnetic stimulation figure-8 coil: Measurements and brain simulations.

Authors:  Petar I Petrov; Stefano Mandija; Iris E C Sommer; Cornelis A T van den Berg; Sebastiaan F W Neggers
Journal:  PLoS One       Date:  2017-06-22       Impact factor: 3.240

5.  A novel concurrent TMS-fMRI method to reveal propagation patterns of prefrontal magnetic brain stimulation.

Authors:  Jord J T Vink; Stefano Mandija; Petar I Petrov; Cornells A T van den Berg; Iris E C Sommer; Sebastiaan F W Neggers
Journal:  Hum Brain Mapp       Date:  2018-08-29       Impact factor: 5.038

6.  Simultaneous Transcranial Magnetic Stimulation and Functional Magnetic Resonance Imaging: Aspects of Technical Implementation.

Authors:  Elisabeth C Caparelli; Tianye Zhai; Yihong Yang
Journal:  Front Neurosci       Date:  2020-09-29       Impact factor: 4.677

Review 7.  TMS Does Not Increase BOLD Activity at the Site of Stimulation: A Review of All Concurrent TMS-fMRI Studies.

Authors:  Farshad Rafiei; Dobromir Rahnev
Journal:  eNeuro       Date:  2022-08-18

8.  Transcranial magnetic stimulation alters multivoxel patterns in the absence of overall activity changes.

Authors:  Farshad Rafiei; Martin Safrin; Martijn E Wokke; Hakwan Lau; Dobromir Rahnev
Journal:  Hum Brain Mapp       Date:  2021-05-15       Impact factor: 5.038

Review 9.  Safety and recommendations for TMS use in healthy subjects and patient populations, with updates on training, ethical and regulatory issues: Expert Guidelines.

Authors:  Simone Rossi; Andrea Antal; Sven Bestmann; Marom Bikson; Carmen Brewer; Jürgen Brockmöller; Linda L Carpenter; Massimo Cincotta; Robert Chen; Jeff D Daskalakis; Vincenzo Di Lazzaro; Michael D Fox; Mark S George; Donald Gilbert; Vasilios K Kimiskidis; Giacomo Koch; Risto J Ilmoniemi; Jean Pascal Lefaucheur; Letizia Leocani; Sarah H Lisanby; Carlo Miniussi; Frank Padberg; Alvaro Pascual-Leone; Walter Paulus; Angel V Peterchev; Angelo Quartarone; Alexander Rotenberg; John Rothwell; Paolo M Rossini; Emiliano Santarnecchi; Mouhsin M Shafi; Hartwig R Siebner; Yoshikatzu Ugawa; Eric M Wassermann; Abraham Zangen; Ulf Ziemann; Mark Hallett
Journal:  Clin Neurophysiol       Date:  2020-10-24       Impact factor: 4.861

10.  Noninvasive Electric Current Induction for Low-Frequency Tissue Conductivity Reconstruction: Is It Feasible With a TMS-MRI Setup?

Authors:  Stefano Mandija; Petar I Petrov; Sebastian F W Neggers; Peter R Luijten; Cornelis A T van den Berg
Journal:  Tomography       Date:  2016-09
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