DocumentCode :
861179
Title :
Development of a biomagnetic measurement system for brain research
Author :
Ueda, M. ; Kandori, A. ; Ogata, H. ; Takada, Y. ; Komuro, T. ; Kazami, K. ; Ito, T. ; Kado, H.
Author_Institution :
Superconducting Sensor Lab., Chiba, Japan
Volume :
5
Issue :
2
fYear :
1995
fDate :
6/1/1995 12:00:00 AM
Firstpage :
2465
Lastpage :
2469
Abstract :
The tail of the dewar of the authors´ system has a special shape that makes it possible to measure the brain activity of anyone lying on a bed regardless of head shape or size. It allows the parietal, one side of the temporal and the occipital regions to be measured simultaneously. In the system, 128 axial first-order gradiometers are mounted at intervals of about 26 mm. The diameter and baseline length of the pickup coil are 14 mm and 50 mm, respectively. The authors use square-shaped double-washer DC-SQUIDs with additional positive feedback to improve the flux resolution. System reliability is improved by hermetically sealing the SQUID in a ceramic package and including a heater resistor to eliminate trapped flux. To decrease the liquid helium evaporation rate, output cables are made with flexible printed circuits. The read-out electronics are based on the Direct Offset Integration Technique, which is a highly simplified feedback method. The white noise level measured in a magnetically shielded room is less than 10 fT//spl radic/Hz above 5 Hz. This system has successfully been applied to measuring auditory evoked fields.<>
Keywords :
SQUID magnetometers; biological techniques; magnetoencephalography; 14 mm; 26 mm; 5 Hz; 50 mm; auditory evoked fields measurement; biological research instrumentation; biomagnetic measurement system; brain research; ceramic package; dewar; direct offset integration technique; flexible printed circuits; flux resolution; head shape; head size; heater resistor; highly simplified feedback method; liquid helium evaporation rate; magnetically shielded room; occipital region; parietal region; pickup coil; positive feedback; square-shaped double-washer DC-SQUIDs; temporal region; white noise level; Biomagnetics; Brain; Feedback; Integrated circuit measurements; Magnetic field measurement; Magnetic heads; Noise measurement; Shape measurement; Size measurement; Tail;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.403090
Filename :
403090
Link To Document :
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