Literature DB >> 10204875

MR phase-contrast flow measurement with limited spatial resolution in small vessels: value of model-based image analysis.

R M Hoogeveen1, C J Bakker, M A Viergever.   

Abstract

Magnetic resonance phase-contrast volume flow rate (VFR) measurement with limited resolution in small vessels is subject to two major sources of error: a) partial volume artifacts, causing systematic overestimation of the VFR, and b) errors related to the selection of vessel pixels [region of interest (ROI)], causing large inter-observer and intra-observer variability. Additionally, limited resolution results in Gibbs-ringing around vessels, which adversely affects VFR determination. In this paper, a semi-automatic model-based method is presented that effectively eliminates errors due to both partial volume effect and Gibbs-ringing and also minimizes errors from variability in the ROI selection. The model assumes a parabolic flow profile and cylindrical vessel geometry, incorporates inflow effects, and takes into account the point-spread function of the acquisition. The method automatically estimates maximum velocity, vessel radius, and VFR. The method is validated in phantoms under various conditions and evaluated in vivo. For small vessels with moderately pulsatile flow, it is demonstrated that accurate VFRs and diameter estimates are obtained, virtually independent of the ROI selection, even in vessels covered by just a few pixels. Compared with conventional VFR analysis, both accuracy and reproducibility improve significantly.

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Year:  1999        PMID: 10204875     DOI: 10.1002/(sici)1522-2594(199903)41:3<520::aid-mrm14>3.0.co;2-a

Source DB:  PubMed          Journal:  Magn Reson Med        ISSN: 0740-3194            Impact factor:   4.668


  10 in total

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Journal:  Clin Neuroradiol       Date:  2011-12-03       Impact factor: 3.649

2.  Phase-contrast MRI and CFD modeling of apparent ³He gas flow in rat pulmonary airways.

Authors:  Kevin R Minard; Andrew P Kuprat; Senthil Kabilan; Richard E Jacob; Daniel R Einstein; James P Carson; Richard A Corley
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Review 3.  Tools for cardiovascular magnetic resonance imaging.

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Journal:  Cardiovasc Diagn Ther       Date:  2014-04

4.  Modeling Bias Error in 4D Flow MRI Velocity Measurements.

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Journal:  IEEE Trans Med Imaging       Date:  2022-06-30       Impact factor: 11.037

5.  MRI of arterial flow reserve in patients with intermittent claudication: feasibility and initial experience.

Authors:  Bas Versluis; Marjolein H G Dremmen; Patty J Nelemans; Joachim E Wildberger; Geert-Willem Schurink; Tim Leiner; Walter H Backes
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6.  Assessing test-retest reliability of phase contrast MRI for measuring cerebrospinal fluid and cerebral blood flow dynamics.

Authors:  Ashwin R Sakhare; Giuseppe Barisano; Judy Pa
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Authors:  Can Wu; Amir R Honarmand; Susanne Schnell; Ryan Kuhn; Samantha E Schoeneman; Sameer A Ansari; James Carr; Michael Markl; Ali Shaibani
Journal:  J Am Heart Assoc       Date:  2016-01-04       Impact factor: 5.501

8.  Accuracy of blood flow assessment in cerebral arteries with 4D flow MRI: Evaluation with three segmentation methods.

Authors:  Tora Dunås; Madelene Holmgren; Anders Wåhlin; Jan Malm; Anders Eklund
Journal:  J Magn Reson Imaging       Date:  2019-01-14       Impact factor: 4.813

9.  Assessment of single-vessel cerebral blood velocity by phase contrast fMRI.

Authors:  Xuming Chen; Yuanyuan Jiang; Sangcheon Choi; Rolf Pohmann; Klaus Scheffler; David Kleinfeld; Xin Yu
Journal:  PLoS Biol       Date:  2021-09-09       Impact factor: 8.029

10.  Influence of Spatial Resolution and Compressed SENSE Acceleration Factor on Flow Quantification with 4D Flow MRI at 3 Tesla.

Authors:  Mariya S Pravdivtseva; Franziska Gaidzik; Philipp Berg; Patricia Ulloa; Naomi Larsen; Olav Jansen; Jan-Bernd Hövener; Mona Salehi Ravesh
Journal:  Tomography       Date:  2022-02-10
  10 in total

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