Magnetohydrodynamic Voltage Recorder for Comparing Peripheral Blood Flow.

Wu, Kevin J; Gregory, T Stan; Lastinger, Michael C; Murrow, Jonathan R; Tse, Zion Tsz Ho · Ann Biomed Eng · 2017

basic_science · Level V

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Abstract

Blood flow is a clinical metric for monitoring of cardiovascular diseases but current measurements methods are costly or uncomfortable for patients. It was shown that the interaction of the magnetic field (B <sub>0</sub>) during MRI and blood flow in the body, through the magnetohydrodynamic (MHD) effect, produce voltages (V <sub>MHD</sub>) observable through intra-MRI electrocardiography (ECG), which are correlated with regional blood flow. This study shows the reproducibility of V <sub>MHD</sub> outside the MRI and its application in a portable flow monitoring device. To recreate this interaction outside the MRI, a static neodymium magnet (0.4T) was placed in between two electrodes to induce the V <sub>MHD</sub> in a single lead ECG measurement. V <sub>MHD</sub> was extracted, and integrated over to obtain a stroke volume metric. A smartphone-enabled device utilizing this interaction was developed in order to create a more accessible method of obtaining blood flow measurements. The portable device displayed a <6% error compared to a commercial recorder, and was able to successfully record V <sub>MHD</sub> using the 0.4T magnet. Exercise stress testing showed a V <sub>MHD</sub> increase of 23% in healthy subjects, with an 81% increase in the athlete. The study demonstrates a new device utilizing MHD interactions with body circulation to obtain blood flow metrics.

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