日本応用磁気学会誌
Online ISSN : 1880-4004
Print ISSN : 0285-0192
ISSN-L : 0285-0192
生体磁気・医療応用
FEMに基づいたMRI撮像時の脳内RF電磁界分布
畑田 寛久関野 正樹上野 照剛
著者情報
ジャーナル オープンアクセス

2005 年 29 巻 3 号 p. 364-367

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抄録
Detection of weak magnetic fields induced by electrical currents using magnetic resonance imaging (MRI) is necessary for mapping neuronal activities in the brain. However, such detection is dependent on the signal-to-noise ratio and sensitivity limit of MRI. Evaluation of these factors requires calculation of radiofrequency (RF) electromagnetic fields in the brain. To determine the feasibility of detecting the magnetic fields induced by neuronal activities, we computed brain eddy current distributions induced by RF magnetic fields from a birdcage coil in MRI by simulations based on the finite element method (FEM), and calculated Johnson noise from the head. With commonly used parameters, the noise was 43.2 nV. On the basis of a theory of the signal-to-noise ratio in MRI, we obtained an equation for the theoretical sensitivity limit for detecting weak magnetic fields by using gradient echo phase images. The theoretical sensitivity limits for gray matter and white matter were 26.1 nT and 21.7 nT, respectively.
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© 2005 (社)日本応用磁気学会
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