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Acquisition of Fetal Magnetocardiograms in an Unshielded Hospital Setting

机译:在非屏蔽医院环境中获取胎儿心电图

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The acquisition of fetal magnetocardiographic signals in various noisy environments is studied, and improvement in the signal-to-noise ratio (SNR) of weak biomagnetic signals is investigated for various noise levels and gradiometer implementations. There is a consistent improvement in the SNR as fetal gestation age (GA) increases. The SNR in unshielded environment is shown to be acceptable over a wide range of GA values when using the second-order gradiometers with a field balance ${rm C}_{rm B}=5times 10^{-4}$ and a gradient balance ${rm C}_{{rm G}1}=5times 10^{-3}$ or better. It is also shown that the optimal gradiometer baseline length strongly depends on the ambient noise level and the overall gradiometer balance. Shorter ($≪$80 mm) baselines are preferred only when using highly balanced gradiometers in a very high noise environments.
机译:研究了在各种嘈杂环境中获取胎儿心动图信号的方法,并针对各种噪声水平和梯度仪的实现,研究了弱生物磁信号的信噪比(SNR)的提高。随着胎儿胎龄(GA)的增加,信噪比(SNR)会不断提高。当使用具有场平衡$ {rm C} _ {rm B} = 5×10 ^ {-4} $和梯度的二阶梯度仪时,在非屏蔽环境中的SNR在宽的GA值范围内都可以接受。余额$ {rm C} _ {{rm G} 1} = 5乘以10 ^ {-3} $或更高。还显示最佳梯度仪基线长度在很大程度上取决于环境噪声水平和整个梯度仪平衡。仅当在非常高噪声的环境中使用高度平衡的梯度仪时,才需要较短的基线(≪80毫米)。

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