Brain activity measurement in the occipital region of the head using a magneto-impedance sensor

S. Tajima, T. Uchiyama, Y. Okuda, K. Wang
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引用次数: 4

Abstract

We have achieved pico-Tesla (10-8 Oe) resolution for micro magneto-impedance (MI) sensors by utilizing the ultra-low intrinsic noise of amorphous wire the pulse magneto-impedance effect. We previously reported a study on bio-magnetic measurement using a pico-Tesla resolution MI sensor without any magnetic shielding. In order to detect very weak magnetic fields such as bio-magnetic fields, we constructed an MI gradiometer to cancel out background uniform noise such as the geomagnetic field. In the present study, we measured brainwaves using an MI sensor, and the results showed that brain activity can be evaluated by the sensor. We compared our results with electroencephalogram (EEG) and magneto-encephalogram (MEG) data reported by previous studies, and considered the reliability of the data. The results suggest that the MI sensor is a convenient device for daily monitoring using MEG signals.
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使用磁阻抗传感器测量头部枕部的大脑活动
利用非晶线的超低固有噪声和脉冲磁阻抗效应,实现了微磁阻抗(MI)传感器的皮特斯拉(10-8 Oe)分辨率。我们之前报道了一项使用无任何磁屏蔽的皮特斯拉分辨率MI传感器进行生物磁测量的研究。为了检测生物磁场等非常微弱的磁场,我们构建了一个MI梯度仪来抵消地磁场等背景均匀噪声。在本研究中,我们使用MI传感器测量脑电波,结果表明大脑活动可以通过传感器进行评估。我们将我们的结果与以往研究报告的脑电图(EEG)和脑磁图(MEG)数据进行比较,并考虑数据的可靠性。结果表明,脑磁动传感器是一种方便的日常监测装置。
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