Resolution-Insensitive Velocity and Flow Rate Measurement in Low-Background Phase-Contrast MRA

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Abstract

Magnetic resonance (MR) phase-contrast (PC) flow measurements are degraded by partial volume errors when the spatial resolution is low, in particular when a large difference in signal magnitude exists between the fluid and the surrounding material. The latter is often the case in phantom studies and may be encountered when flow is measured in prosthetic vessel segments (such as shunts, grafts, and bypasses) and in contrast-enhanced blood. This paper presents a new method that is designed to measure flow in vessels of circular cross-section with Poiseuille flow and negligible background signal arising from static material around the lumen. The method calculates the average flow velocity directly from the original complex image data by integrating the signal in oppositely velocity-sensitized PC images. The radius is calculated from the summed signal modulus. The method allows accurate and resolution-insensitive measurements of the average flow velocity to be obtained in both cross-sectional and in-plane acquisitions. It is not critical to any of the assumed conditions. The validity and capabilities of the proposed technique are demonstrated by in vitro experiments. © 2004 Wiley-Liss, Inc.

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Van Der Weide, R., Viergever, M. A., & Bakker, C. J. G. (2004). Resolution-Insensitive Velocity and Flow Rate Measurement in Low-Background Phase-Contrast MRA. Magnetic Resonance in Medicine, 51(4), 785–793. https://doi.org/10.1002/mrm.20035

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