Title :
Evaluation of an Isosceles-Triangle-Coil Phantom for Magnetoencephalography
Author :
Oyama, Daisuke ; Adachi, Y. ; Hatsusaka, N. ; Kasahara, T. ; Yumoto, Motoshige ; Hashimoto, I. ; Uehara, Gen
Author_Institution :
Kanazawa Inst. of Technol., Ishikawa, Japan
Abstract :
Magnetoencephalography (MEG) is one of the most promising applications of biomagnetics. In order to expand and establish MEG applications, an evaluation standard for MEG systems is necessary. We have proposed and fabricated a practical dry phantom that is composed of two isosceles-triangle coils based on Ilmoniemi´s model. The uncertainty level of the phantom itself has not always been stated in the literature. In this study, we evaluated the phantom by two methods: a 3-D measurement of the coils with X-ray computed tomography, and a magnetic field measurement with an MEG system. In the former, the maximum displacement of the estimated position of the equivalent current dipole was -0.59± 0.09 mm. In the latter, the displacement was 0.68 ± 0.19 mm. The uncertainty level was found and less than 0.1 mm, or less than 0.2 mm; therefore, we can assess the MEG system itself with an uncertainty level of 0.2 mm. The displacement in the magnetic measurement larger than the uncertainty level of 0.2 mm is estimated due to the systematic error of the MEG system. Hence, dimensional and magnetic measurements are effective for evaluation of the phantom and the MEG.
Keywords :
computerised tomography; magnetic field measurement; magnetoencephalography; measurement uncertainty; phantoms; Ilmoniemi model; MEG; X-ray computed tomography; biomagnetics; equivalent current dipole; isosceles-triangle-coil phantom; magnetic field measurement; magnetoencephalography; phantom; Coils; Current measurement; Magnetometers; Phantoms; Superconducting magnets; Uncertainty; Magnetoencephalography; measurement uncertainty; phantoms; superconducting quantum interference devices (SQUIDs);
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2011.2148694