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January 1, 2019Journal of the Korean Society of Radiology5 citationsOpen Access

Quantification of Hemodynamic Parameters Using Four-Dimensional Flow MRI

HHHojin HaHHHyungkyu HuhDYDong Hyun Yang

Key Result

Four-dimensional flow MRI provides a non-invasive method for time-resolved, three-dimensional characterization of blood flow and quantification of hemodynamic parameters for clinical applications.

PICO

P
Population
Cardiovascular diseases
I
Intervention / Comparator
4D Flow MRI

Limitations

  • Relatively long measurement time
  • Trade-off between measurement time and signal-to-noise ratio
  • Limited spatial and temporal resolution cannot capture all ranges of complex blood flow
  • Limited spatial and temporal resolution cannot capture all flow scales
  • Background noise affects the reliability of derivative-based parameters like wall shear stress and pressure

Abstract

MRI provides non-invasive and non-ionizing methods for the accurate anatomic depiction of the cardiovascular system. Based on the inherent flow sensitivity, MRI can be used to investigate hemodynamic features in patients with anatomical data within a single measurement. In particular, time-resolved and three-dimensional (3D) characterization of blood flow using 4D flow MRI has achieved considerable progress in recent years. The present article reviews the principle and procedures of 4D Flow MRI. Various fluid dynamic biomarkers for possible clinical usage are also described, including wall shear stress, turbulent kinetic energy, and relative pressure. Finally, this article provides an overview of the clinical applications of 4D Flow MRI in various cardiovascular regions.

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Cite This Study

Ha et al. (2019) conducted a review in Cardiovascular diseases. 4D Flow MRI was evaluated. Four-dimensional flow MRI provides a non-invasive method for time-resolved, three-dimensional characterization of blood flow and quantification of hemodynamic parameters for clinical applications.

synapsesocial.com/papers/6a12c94f86514ddae6c0903ahttps://doi.org/10.3348/jksr.2019.80.2.239
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