Key result
Mathematical computation of the magnetofluid dynamic effect on blood flow in the aortic arch produced 12-lead ECG signals with elevated T-waves that were very similar to measured values in a 1.5 T MRI.
Why the study?
Does a static magnetic field (MRI) induce T-wave elevation on ECG due to magnetofluid dynamic effects in the aortic arch?
Does a static magnetic field (MRI) induce T-wave elevation on ECG due to magnetofluid dynamic effects in the aortic arch?
Mathematical modeling confirms that T-wave elevation on ECG during MRI is caused by magnetofluid dynamic effects of blood flow through the aortic arch.
May explain T-wave elevation during MRI; modeling supports mechanism but leaves open prospective validation.
In MRI, the flow of blood in the patient is subjected to a strong static magnetic field (B(0)). The movement of charge carriers in a magnetic field causes a magnetofluid dynamic (MFD) effect that induces a voltage across the artery. This induced voltage distorts the ECG signal of the patient and appears as an elevation of the T-wave of the ECG signal. Flow of blood through the aortic arch is perpendicular to the magnetic field and coincides with the occurrence of the T-wave of the ECG. Based on these facts, it is proposed that the elevation in the T-wave occurs because of the voltage induced across the aortic arch. In this paper, the elevation is computed mathematically using the equations of MFD. A method is developed to measure this induced voltage based on discretization of the aortic arch and measuring the blood flow profile in the aorta. The results are compared to the ECG signals measured in humans in the bore of 1.5 T imaging magnet. The computed ECG signals at the 12 leads are very similar to the measured values.
No takes yet. Share an insight, caveat, or question.
Gupta et al. (2008) studied ECG distortion in MRI. Mathematical computation of magnetofluid dynamic (MFD) effect vs. Measured ECG signals in humans in 1.5 T MRI was evaluated on Computed ECG signals at the 12 leads. Mathematical computation of the magnetofluid dynamic effect on blood flow in the aortic arch produced 12-lead ECG signals with elevated T-waves that were very similar to measured values in a 1.5 T MRI.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: