DocumentCode
9369
Title
Experimental Study to Improve the Focalization of a Figure-Eight Coil of rTMS by Using a Highly Conductive and Highly Permeable Medium
Author
Shunqi Zhang ; Tao Yin ; Zhipeng Liu ; Ying Li ; Jingna Jin ; Ren Ma
Author_Institution
Inst. of Biomed. Eng., Chinese Acad. of Med. Sci., Tianjin, China
Volume
21
Issue
3
fYear
2013
fDate
May-13
Firstpage
364
Lastpage
369
Abstract
A method to improve the focalization of the repetitive transcranial magnetic stimulation figure-eight coil in a magnetic stimulation is presented in this paper. For the purpose of reducing the half width of the distribution curve, while improving the ratio of positive to negative electric field, a shield plate with a window and a magnetic conductor were adopted. The shield plate, which was made of highly conductive copper, focused the magnetic field into a smaller area. The magnetic inductor, which was made of highly permeable soft magnetic ferrite, strengthened the magnetic field. A group of experiments was conducted to validate the focalizing effect. Experimental results showed that the negative peak and the half width of the distribution curve reduced by using the shield plate and the magnetic conductor. Especially for to the Magstim 70 mm double coil, when the shield window was 30 × 60 mm, the ratio of positive to negative electric field could be increased 109%, while the half width of the distribution curve could be reduced about 55%.
Keywords
ferrites; magnetic permeability; soft magnetic materials; transcranial magnetic stimulation; Fe2O3; conductive copper; conductive medium; distribution curve; magnetic conductor; magnetic inductor; peak; permeable medium; permeable soft magnetic ferrite; positive-negative electric field; rTMS; repetitive transcranial magnetic stimulation figure-eight coil; shield plate; shield window; Coils; Conductors; Ferrites; Magnetic field measurement; Magnetic noise; Magnetic shielding; Soft magnetic materials; Figure-eight coil; focalization; high conductivity medium; high permeability medium; magnetic stimulation; Computer-Aided Design; Electric Conductivity; Equipment Design; Equipment Failure Analysis; Magnetics; Permeability; Radiometry; Transcranial Magnetic Stimulation; Transducers;
fLanguage
English
Journal_Title
Neural Systems and Rehabilitation Engineering, IEEE Transactions on
Publisher
ieee
ISSN
1534-4320
Type
jour
DOI
10.1109/TNSRE.2012.2194723
Filename
6186828
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