Authors
Muhib Omar, Magnus Benke, Shaowen Zhang, Jixing Zhang, Yihua Wang, Michael Kuebler, Pouya Sharbati, Ara Rahimpour, Arno Gück, Maryna Kapitonova, Devyani Kadam, Carlos René Izquierdo Geiser, Jens Haller, Arno Trautmann, Katharina Jag-Lauber, Robert Rölver, Thanh-Duc Nguyen, Leonardo Gizzi, Michelle Schweizer, Mena Abdelsayed, Ingo Wickenbrock, Andrew M Edmonds, Matthew Markham, Peter A Koss, Oliver Schnell, Ulrich G Hofmann, Tonio Ball, Jürgen Beck, Dmitry Budker, Joerg Wrachtrup, Arne Wickenbrock
Published in
Science advances. Volume 12. Issue 38. Pages eaeg5281. Sep 18, 2026. Epub Sep 16, 2026.
Abstract
The heart produces small magnetic signals, but detecting them without touching the body and without heavy shielding equipment remains a major challenge. In this study, we demonstrate a noninvasive method to measure these signals using compact quantum sensors made from diamond. These sensors operate at room temperature and can detect extremely weak magnetic fields produced by the heart, even outside highly shielded environments. By averaging signals over many heartbeats and using noise suppression techniques, we successfully recorded clear magnetocardiography traces. Although current measurements require averaging, our results show a clear path toward real-time detection. We also explored a gradiometry protocol for unshielded noisy environments, paving the way for contactless cardiac detection in challenging clinical conditions. This work points toward a path for using quantum sensors in practical medical diagnostics of the heart and brain.
PMID:
42748231
Bibliographic data and abstract were imported from PubMed on 17 Sep 2026.
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