Weis A, Wynands R, Fenici R, Bison G
Physics Department, University of Fribourg, Switzerland.
Neurol Clin Neurophysiol. 2004 Nov 30;2004:38.
We have developed a magnetometer based on magnetic resonance in cesium vapor optically pumped by resonant laser radiation, which has the sensitivity and bandwidth to record human magnetocardiograms. The device is operated as a first-order gradiometer in a weakly shielded environment and allows us to record 2-dimensional field maps by shifting the subject with respect to a single sensor and making time-sequential measurements. We discuss the magnetometer technique and its performance as well as obtained results, which include a comparison of MCG data recorded with our single channel optical magnetometer with SQUID measurements from a commercial multi-channel device as well as from SQUID reference data. The results obtained so far in the detection of cardiomagnetic signals using the optical magnetometer make us confident that the technique has a high potential to serve as an alternative to SQUID detection.
我们研制了一种基于铯蒸汽磁共振的磁力计,由共振激光辐射进行光泵浦,它具有记录人体心磁图的灵敏度和带宽。该装置在弱屏蔽环境中作为一阶梯度计运行,通过相对于单个传感器移动受试者并进行时间序列测量,使我们能够记录二维场图。我们讨论了磁力计技术及其性能以及所获得的结果,其中包括将我们的单通道光学磁力计记录的MCG数据与来自商业多通道设备的SQUID测量数据以及SQUID参考数据进行比较。到目前为止,使用光学磁力计检测心磁信号所获得的结果使我们相信,该技术作为SQUID检测的替代方法具有很大的潜力。