DocumentCode
859522
Title
High Spatial Resolutional Measurement of Biomagnetic Fields
Author
Iramina, Keiji ; Ueno, Shoogo
Author_Institution
Graduate Sch. of Inf. Sci & Electr. Eng.., Kyushu Univ.
Volume
43
Issue
6
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
2477
Lastpage
2479
Abstract
A high spatial resolution superconducting quantum interference device (SQUID) system was developed. This SQUID system enabled measurement and discrimination of the magnetic field pattern under 800-mum resolution. Magnetic fields produced by the compound nerve action current of the frog sciatic nerve were measured. The compound action potential and compound action magnetic fields when the stimulus current changes from 0.2 to 1 mA were measured. It was possible to observe that several components of the compound action magnetic fields have different conduction velocities in different kinds of fibers of the nerve bundle within 4 ms after stimulation. When the stimulus intensity increased, the waveform of the compound action potential changed and the duration of the late component of the compound action potential became longer. We found that this change was caused by the excitation of the nerve which has slow conduction velocity. We also succeeded in measurement of the auditory evoked magnetic fields of mice with high spatial resolution. The polarity change of peak magnetic fields appear in the 10-mm area. It is difficult to detect these signals using a SQUID magnetometer with a large size pickup coil or measurements of action potential.
Keywords
SQUID magnetometers; bioelectric potentials; magnetoencephalography; neurophysiology; 0.2 mA; 1 mA; 4 ms; SQUID magnetometer; auditory evoked magnetic fields; biomagnetic Fields; compound action magnetic fields; compound action potential; compound nerve action current; frog sciatic nerve; high spatial resolutional measurement; mice; superconducting quantum interference device; Biomagnetics; Coils; Current measurement; Interference; Magnetic field measurement; Mice; SQUID magnetometers; Signal detection; Spatial resolution; Superconducting devices; Biomagnetic field high; compound action potential; magnetoencephalogram (MEG); spatial resolution SQUID; superconducting quantum interference device (SQUID);
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2007.893866
Filename
4202777
Link To Document