Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum imaging (TFSI) of stenotic flow using phase-contrast MRI, evaluate systematic errors in quantitative turbulence parameter estimation, and propose a novel method for probing the Lagrangian velocity spectra of turbulent flows. Theory and Methods The spectral response of velocity-encoding gradients is derived theoretically and linked to turbulence parameter estimation including the velocity autocorrelation function spectrum. Using a phase-contrast MRI simulation framework, the encoding properties of bipolar gradient waveforms with identical first gradient moments but different duration are investigated on turbulent flow data of defined characteris...
PURPOSE To investigate limitations of partial Fourier acquisition in phase-contrast MRI of turbulent...
Magnetic Resonance Imaging (MRI) has the ability to image flow qualitatively and quantitatively. How...
selective excitation, (b) velocity encoding bipolar gradient, (c) spiral readout, and (d) refocusing...
Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum...
Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum...
Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum...
Turbulent flow, characterized by velocity fluctuations, is a contributing factor to the pathogenesis...
Phase contrast MRI is a powerful tool for the assessment of blood flow. However, especially in the h...
Phase contrast MRI is a powerful tool for the assessment of blood flow. However, especially in the h...
Turbulent flow, characterized by velocity fluctuations, is a contributing factor to the pathogenesis...
Quantifying turbulence velocity fluctuation is important because it indicates the fluid energy dissi...
Turbulent flow, characterized by velocity fluctuations, accompanies many forms of cardiovascular dis...
PurposeEvaluate spiral three-dimensional (3D) phase contrast MRI for the assessment of turbulence an...
PurposeEvaluate spiral three-dimensional (3D) phase contrast MRI for the assessment of turbulence an...
PURPOSE To investigate limitations of partial Fourier acquisition in phase-contrast MRI of turbulent...
PURPOSE To investigate limitations of partial Fourier acquisition in phase-contrast MRI of turbulent...
Magnetic Resonance Imaging (MRI) has the ability to image flow qualitatively and quantitatively. How...
selective excitation, (b) velocity encoding bipolar gradient, (c) spiral readout, and (d) refocusing...
Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum...
Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum...
Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum...
Turbulent flow, characterized by velocity fluctuations, is a contributing factor to the pathogenesis...
Phase contrast MRI is a powerful tool for the assessment of blood flow. However, especially in the h...
Phase contrast MRI is a powerful tool for the assessment of blood flow. However, especially in the h...
Turbulent flow, characterized by velocity fluctuations, is a contributing factor to the pathogenesis...
Quantifying turbulence velocity fluctuation is important because it indicates the fluid energy dissi...
Turbulent flow, characterized by velocity fluctuations, accompanies many forms of cardiovascular dis...
PurposeEvaluate spiral three-dimensional (3D) phase contrast MRI for the assessment of turbulence an...
PurposeEvaluate spiral three-dimensional (3D) phase contrast MRI for the assessment of turbulence an...
PURPOSE To investigate limitations of partial Fourier acquisition in phase-contrast MRI of turbulent...
PURPOSE To investigate limitations of partial Fourier acquisition in phase-contrast MRI of turbulent...
Magnetic Resonance Imaging (MRI) has the ability to image flow qualitatively and quantitatively. How...
selective excitation, (b) velocity encoding bipolar gradient, (c) spiral readout, and (d) refocusing...