Cargando…

A novel whole-head RF coil design tailored for concurrent multichannel brain stimulation and imaging at 3T

PURPOSE: Multichannel Transcranial Magnetic Stimulation (mTMS) [1] is a novel non-invasive brain stimulation technique allowing multiple sites to be stimulated simultaneously or sequentially under electronic control without movement of the coils. To enable simultaneous mTMS and MR imaging, we have d...

Descripción completa

Detalles Bibliográficos
Autores principales: Navarro de Lara, Lucia I., Stockmann, Jason P., Meng, Qinglei, Keil, Boris, Mareyam, Azma, Uluç, Işıl, Daneshzand, Mohammad, Makarov, Sergey, Wald, Lawrence L., Nummenmaa, Aapo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10499022/
https://www.ncbi.nlm.nih.gov/pubmed/37307872
http://dx.doi.org/10.1016/j.brs.2023.05.025
_version_ 1785105635920052224
author Navarro de Lara, Lucia I.
Stockmann, Jason P.
Meng, Qinglei
Keil, Boris
Mareyam, Azma
Uluç, Işıl
Daneshzand, Mohammad
Makarov, Sergey
Wald, Lawrence L.
Nummenmaa, Aapo
author_facet Navarro de Lara, Lucia I.
Stockmann, Jason P.
Meng, Qinglei
Keil, Boris
Mareyam, Azma
Uluç, Işıl
Daneshzand, Mohammad
Makarov, Sergey
Wald, Lawrence L.
Nummenmaa, Aapo
author_sort Navarro de Lara, Lucia I.
collection PubMed
description PURPOSE: Multichannel Transcranial Magnetic Stimulation (mTMS) [1] is a novel non-invasive brain stimulation technique allowing multiple sites to be stimulated simultaneously or sequentially under electronic control without movement of the coils. To enable simultaneous mTMS and MR imaging, we have designed and constructed a whole-head 28-channel receive-only RF coil at 3T. METHODS: A helmet-shaped structure was designed considering a specific layout for a mTMS system with holes for positioning the TMS units next to the scalp. Diameter of the TMS units defined the diameter of RF loops. The placement of the preamplifiers was designed to minimize possible interactions and to allow straightforward positioning of the mTMS units around the RF coil. Interactions between TMS-MRI were analyzed for the whole-head system extending the results presented in previous publications [2]. Both SNR- and g-factors maps were obtained to compare the imaging performance of the coil with commercial head coils. RESULTS: Sensitivity losses for the RF elements containing TMS units show a well-defined spatial pattern. Simulations indicate that the losses are predominantly caused by eddy currents on the coil wire windings. The average SNR performance of the TMSMR 28-channel coil is about 66% and 86% of the SNR of the 32/20-channel head coil respectively. The g-factor values of the TMSMR 28-channel coil are similar to the 32-channel coil and significantly better than the 20-channel coil. CONCLUSION: We present the TMSMR 28-channel coil, a head RF coil array to be integrated with a multichannel 3-axisTMS coil system, a novel tool that will enable causal mapping of human brain function.
format Online
Article
Text
id pubmed-10499022
institution National Center for Biotechnology Information
language English
publishDate 2023
record_format MEDLINE/PubMed
spelling pubmed-104990222023-09-13 A novel whole-head RF coil design tailored for concurrent multichannel brain stimulation and imaging at 3T Navarro de Lara, Lucia I. Stockmann, Jason P. Meng, Qinglei Keil, Boris Mareyam, Azma Uluç, Işıl Daneshzand, Mohammad Makarov, Sergey Wald, Lawrence L. Nummenmaa, Aapo Brain Stimul Article PURPOSE: Multichannel Transcranial Magnetic Stimulation (mTMS) [1] is a novel non-invasive brain stimulation technique allowing multiple sites to be stimulated simultaneously or sequentially under electronic control without movement of the coils. To enable simultaneous mTMS and MR imaging, we have designed and constructed a whole-head 28-channel receive-only RF coil at 3T. METHODS: A helmet-shaped structure was designed considering a specific layout for a mTMS system with holes for positioning the TMS units next to the scalp. Diameter of the TMS units defined the diameter of RF loops. The placement of the preamplifiers was designed to minimize possible interactions and to allow straightforward positioning of the mTMS units around the RF coil. Interactions between TMS-MRI were analyzed for the whole-head system extending the results presented in previous publications [2]. Both SNR- and g-factors maps were obtained to compare the imaging performance of the coil with commercial head coils. RESULTS: Sensitivity losses for the RF elements containing TMS units show a well-defined spatial pattern. Simulations indicate that the losses are predominantly caused by eddy currents on the coil wire windings. The average SNR performance of the TMSMR 28-channel coil is about 66% and 86% of the SNR of the 32/20-channel head coil respectively. The g-factor values of the TMSMR 28-channel coil are similar to the 32-channel coil and significantly better than the 20-channel coil. CONCLUSION: We present the TMSMR 28-channel coil, a head RF coil array to be integrated with a multichannel 3-axisTMS coil system, a novel tool that will enable causal mapping of human brain function. 2023 2023-06-10 /pmc/articles/PMC10499022/ /pubmed/37307872 http://dx.doi.org/10.1016/j.brs.2023.05.025 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Navarro de Lara, Lucia I.
Stockmann, Jason P.
Meng, Qinglei
Keil, Boris
Mareyam, Azma
Uluç, Işıl
Daneshzand, Mohammad
Makarov, Sergey
Wald, Lawrence L.
Nummenmaa, Aapo
A novel whole-head RF coil design tailored for concurrent multichannel brain stimulation and imaging at 3T
title A novel whole-head RF coil design tailored for concurrent multichannel brain stimulation and imaging at 3T
title_full A novel whole-head RF coil design tailored for concurrent multichannel brain stimulation and imaging at 3T
title_fullStr A novel whole-head RF coil design tailored for concurrent multichannel brain stimulation and imaging at 3T
title_full_unstemmed A novel whole-head RF coil design tailored for concurrent multichannel brain stimulation and imaging at 3T
title_short A novel whole-head RF coil design tailored for concurrent multichannel brain stimulation and imaging at 3T
title_sort novel whole-head rf coil design tailored for concurrent multichannel brain stimulation and imaging at 3t
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10499022/
https://www.ncbi.nlm.nih.gov/pubmed/37307872
http://dx.doi.org/10.1016/j.brs.2023.05.025
work_keys_str_mv AT navarrodelaraluciai anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT stockmannjasonp anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT mengqinglei anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT keilboris anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT mareyamazma anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT ulucisıl anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT daneshzandmohammad anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT makarovsergey anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT waldlawrencel anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT nummenmaaaapo anovelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT navarrodelaraluciai novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT stockmannjasonp novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT mengqinglei novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT keilboris novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT mareyamazma novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT ulucisıl novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT daneshzandmohammad novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT makarovsergey novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT waldlawrencel novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t
AT nummenmaaaapo novelwholeheadrfcoildesigntailoredforconcurrentmultichannelbrainstimulationandimagingat3t