MRI of blood flow: Correlation of image appearance with spin-echo phase shift and signal intensity

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Abstract

Phase-sensitive imaging was used to correlate signal distribution with phase shift and velocity distribution in spin-echo magnetic resonance imaging (MRI). Flow-dependent, changing intensity patterns that were seen in a constant-flow phantom study were explained by the simultaneous effects of inflow signal enhancement, first-echo dephasing, and outflow signal loss occurring during laminar flow. In clinical studies, first-echo dephasing was shown during laminar flow in the inferior vena cava. Turbulent flow was demonstrated in the descending thoracic aorta during late systolic flow, and turbulent dephasing-rephasing was shown in the abdominal aorta.

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Valk, P. E., Hale, J. D., Crooks, L. E., Kaufman, L., Roos, M. S., Ortendahl, D. A., & Higgins, C. B. (1986). MRI of blood flow: Correlation of image appearance with spin-echo phase shift and signal intensity. American Journal of Roentgenology, 146(5), 931–939. https://doi.org/10.2214/ajr.146.5.931

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