Horng H E, Liao S H, Hsu S J, Yang H C, Wu J Y, Chen C C, Wu C H, Wu C C
Department of Physics, National Taiwan Normal University, Taipei, Taiwan.
Neurol Clin Neurophysiol. 2004 Nov 30;2004:84.
A high-Tc 1st-order electronic superconducting quantum interference device (SQUID) gradiometer system is constructed to study the magnetocardiogram (MCG) of rabbits in a moderately magnetically shielded environment with active compensation. In the noisy hospital environment, the noise cannot be completely reduced with the 1st-order gradiometer, therefore, a reference SQUID with active compensation was used to further reduce the noise level leaking into the room. The MCG system was equipped with a x-y translation bed. We used a low-pass filter with the cut off frequency at 44 Hz, a high-pass filter with the cut off frequency at 0.1 Hz and the 60 Hz notch filter to reduce the power line interference. The noise level of the 1st order gradiometer MCG system in this moderately magnetically shielded room was about 1 pT/square root of Hz1/2 at 1 Hz. The MCG of a normal rabbits was measured with this system and a MCG contour map and a current density distribution was constructed.
构建了一个高温一阶电子超导量子干涉装置(SQUID)梯度计系统,用于在具有有源补偿的适度磁屏蔽环境中研究兔子的心电图(MCG)。在嘈杂的医院环境中,一阶梯度计无法完全降低噪声,因此,使用具有有源补偿的参考SQUID进一步降低泄漏到房间中的噪声水平。MCG系统配备了一个x-y平移床。我们使用截止频率为44 Hz的低通滤波器、截止频率为0.1 Hz的高通滤波器和60 Hz陷波滤波器来降低电源线干扰。在这个适度磁屏蔽的房间中,一阶梯度计MCG系统在1 Hz时的噪声水平约为1 pT/Hz1/2的平方根。用该系统测量了正常兔子的MCG,并构建了MCG等高线图和电流密度分布。