Escalona-Vargas Diana, Ramirez Alberto, Siegel Eric R, Bolin Elijah H, Eswaran Hari
Department of Pediatrics, Division of Neurology, University of Arkansas for Medical Sciences, Arkansas Children's Hospital, Little Rock, AR, USA.
Department of Obstetrics and Gynecology, University of Arkansas for Medical Sciences, Little Rock, AR, USA.
Sci Rep. 2025 Feb 28;15(1):7236. doi: 10.1038/s41598-025-90846-y.
Fetal magnetocardiography (fMCG) is a non-invasive technique that measures the magnetic fields associated with fetal heart electrical activity outside of the maternal abdomen. fMCG has high temporal precision for measuring fetal heart rate and its variability which reflects fetal neurodevelopment. Free of cryogenics and low-cost sensors called microfabricated optically pumped magnetometers (OPMs) have emerged as an alternate to cryogenic SQUID (Superconducting Quantum Interference Device) systems to record fMCG. Previous research has demonstrated the ability of the OPMs to measure the fMCG at different maternal positions by taking the advantage of the conformal and geometric flexibility of the sensors. In this work, we designed and configured a bed-based stand-alone array of OPMs to obtain serial recordings of fMCG. 72 combined OPM-SQUID recordings were conducted at different gestational ages in 22 pregnant women. We were able to obtain fMCG with similar detectability as the gold standard SQUID from OPM sensors mounted on a novel belly-shape patient interface design with movable sensor holders. While additional translational research is needed, the outcome of this study can further facilitate the development of a non-cryogenic low-cost smaller footprint device to increase the use of OPMs for fetal research and clinical applications.
胎儿磁心动图(fMCG)是一种非侵入性技术,用于测量孕妇腹部外与胎儿心脏电活动相关的磁场。fMCG在测量胎儿心率及其变异性方面具有很高的时间精度,而胎儿心率及其变异性反映了胎儿的神经发育情况。无需低温技术且成本低廉的传感器,即微纳加工光泵磁力计(OPM),已成为用于记录fMCG的低温超导量子干涉装置(SQUID)系统的替代方案。先前的研究已经证明,利用传感器的贴合性和几何灵活性,OPM能够在不同的孕妇体位下测量fMCG。在这项工作中,我们设计并配置了一个基于床的独立OPM阵列,以获取fMCG的连续记录。我们对22名孕妇在不同孕周进行了72次OPM-SQUID联合记录。我们能够通过安装在具有可移动传感器支架的新型腹部形状患者接口设计上的OPM传感器,获得与金标准SQUID具有相似可检测性的fMCG。虽然还需要进一步的转化研究,但本研究结果能够进一步推动非低温、低成本、更小尺寸设备的开发,以增加OPM在胎儿研究和临床应用中的使用。