Science Advances · 2023 · 88 citations · 48 references
Magnetocardiography (MCG), which uses high-sensitivity magnetometers to record magnetic field signals generated by electrical activity in the heart, is a noninvasive method for evaluating heart diseases such as arrhythmia and ischemia. The MCG measurements usually require the participant keeping still in a magnetically shielded room due to the immovable sensor and noisy external environments. These requirements limit MCG applications, such as exercise MCG tests and long-term MCG observations, which are useful for early detections of heart diseases. Here, we introduce a movable MCG system that can clearly record MCG signals of freely behaving participants in an unshielded environment. On the basis of optically pumped magnetometers with a sensitivity of 140 fT/Hz<sup>1/2</sup>, we successfully demonstrated the resting MCG and the exercise MCG tests. Our method is promising to realize a practical movable multichannel unshielded MCG system that nearly sets no limits to participants and brings another kind of insight into the medical diagnosis of heart disease.
48
A subfemtotesla multichannel atomic magnetometer
I. K. Kominis, T. W. Kornack, Joel C. Allred et al. · Nature · 2003 · 1.5K citations
Moving magnetoencephalography towards real-world applications with a wearable system
Elena Boto, Niall Holmes, James Leggett et al. · Nature · 2018 · 1.3K citations · Full text
High-Sensitivity Atomic Magnetometer Unaffected by Spin-Exchange Relaxation
J. C. Allred, ROBERT LYMAN, T. W. Kornack et al. · Physical Review Letters · 2002 · 1K citations