MCG measurement in the environment of active magnetic shield.

K Yamazaki, K Kato, K Kobayashi, A Igarashi, T Sato, A Haga, N Kasai
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Abstract

MCG (Magnetocardiography) measurement by a SQUID gradiometer was attempted with only active magnetic shielding (active shielding). A three-axis-canceling-coil active shielding system, where three 16-10-16 turns-coil sets were put in the orthogonal directions, produces a homogeneous magnetic field in a considerable volume surrounding the center. Fluxgate sensors were used as the reference sensors of the system. The system can reduce environmental magnetic noise at low frequencies of less than a few Hz, at 50 Hz and at 150 Hz. Reducing such disturbances stabilizes biomagnetic measurement conditions for SQUIDs in the absence of magnetically shielded rooms (MSR). After filtering and averaging the measured MCG data by a first-order SQUID gradiometer with only the active shielding during the daytime, the QRS complex and T wave was clearly presented.

有源磁屏蔽环境下的MCG测量。
仅在主动磁屏蔽(主动屏蔽)的情况下,尝试用SQUID梯度仪测量MCG(心磁图)。在三轴抵消线圈有源屏蔽系统中,三个16-10-16匝线圈组在正交方向上,在中心周围的相当大的体积内产生均匀磁场。采用磁通门传感器作为系统的参考传感器。该系统可以在低于几赫兹、50赫兹和150赫兹的低频率下降低环境磁噪声。在没有磁屏蔽室(MSR)的情况下,减少这种干扰可以稳定squid的生物磁学测量条件。利用一阶SQUID梯度仪对白天测得的MCG数据进行滤波和平均后,得到了清晰的QRS复合物和T波。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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