The purposes of this study were to assess the extent of the inflow effect on signal intensity (SI) for fast gradient-recalled-echo (GRE) sequences used to observe first-pass perfusion, and to develop and validate a correction method for this effect. A phantom experiment with a flow apparatus was performed to determine SI as a function of Gd-DTPA concentration for various velocities. Subsequently a flow-sensitive calibration method was developed, and validated on bolus injections into an open-circuit flow apparatus and in vivo. It is shown that calibration methods based on static phantoms are not appropriate for accurate signal-to-concentration conversion in images affected by high flow. The flow-corrected calibration method presented here can be used to improve the accuracy and robustness of the arterial input function (AIF) determination for tissue perfusion quantification using MRI and contrast media. © 2003 Wiley-Liss, Inc.
CITATION STYLE
Ivancevic, M. K., Zimine, I., Montet, X., Hyacinthe, J. N., Lazeyras, F., Foxall, D., & Vallée, J. P. (2003). Inflow Effect Correction in Fast Gradient-Echo Perfusion Imaging. Magnetic Resonance in Medicine, 50(5), 885–891. https://doi.org/10.1002/mrm.10633
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