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Transcranial magnetic stimulation induced fields in different brain models (CROSBI ID 230445)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Cvetković, Mario ; Poljak, Dragan ; Rogić Vidaković, Maja ; Đogaš, Zoran Transcranial magnetic stimulation induced fields in different brain models // Journal of electromagnetic waves and applications, 30 (2016), 14; 1820-1835. doi: 10.1080/09205071.2016.1216807

Podaci o odgovornosti

Cvetković, Mario ; Poljak, Dragan ; Rogić Vidaković, Maja ; Đogaš, Zoran

engleski

Transcranial magnetic stimulation induced fields in different brain models

This paper gives a comparison of the numerical results for the induced electric field, electric current density and the magnetic flux density inside the adult, 10-year old and 5-year old homogeneous brain models, for three different transcranial magnetic stimulation (TMS) coils. The numerical results are obtained using the TMS model based on the surface integral equation (SIE) formulation and efficient numerical solution via Method of Moments (MoM). The two child brain models are obtained by linearly scaling the adult brain model. The age dependent parameters of the brain are taken into account as well. The results show that the decrease in the homogeneous brain size results in the increased values of all TMS-induced fields. Implementing the age related parameters significantly increases the induced current density values, while moving the point with half maximum electric field value closer to the surface. The analysis undertaken in this work has underlined the importance of the brain size and the brain tissue conductivity in the modeling of TMS in children. Knowledge about the differences of the TMS induced fields in adult and child brain models could potentially contribute to development of optimal TMS coils and stimulating parameters, which is especially important when applying TMS on pediatric patients in hospitals.

transcranial magnetic stimulation ; adult and child brain comparison ; homogeneous human brain model ; surface integral equation approach ; electromagnetic model

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Podaci o izdanju

30 (14)

2016.

1820-1835

objavljeno

0920-5071

10.1080/09205071.2016.1216807

Povezanost rada

Fizika, Elektrotehnika, Temeljne medicinske znanosti

Poveznice
Indeksiranost