Turbulent flow, characterized by velocity fluctuations, is a contributing factor to the pathogenesis of several cardiovascular diseases. A clinical noninvasive tool for assessing turbulence is lacking, however. It is well known that the occurrence of multiple spin velocities within a voxel during the influence of a magnetic gradient moment causes signal loss in phase-contrast magnetic resonance imaging (PC-MRI). In this paper a mathematical derivation of an expression for computing the standard deviation (SD) of the blood flow velocity distribution within a voxel is presented. The SD is obtained from the magnitude of PC-MRI signals acquired with different first gradient moments. By exploiting the relation between the SD and turbulence inten...
Abstract—Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in t...
Imaging hemodynamics play an important role in the diagnosis of abnormal blood flow due to vascular ...
Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in the heart....
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...
Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum im...
Turbulent flow, characterized by velocity fluctuations, accompanies many forms of cardiovascular dis...
Turbulent flow, characterized by velocity fluctuations, accompanies many forms of cardiovascular dis...
Magnetic Resonance Imaging (MRI) has the ability to image flow qualitatively and quantitatively. How...
Quantifying turbulence velocity fluctuation is important because it indicates the fluid energy dissi...
In the last two decades, phase-contrast magnetic resonance imaging (PC-MRI) has evolved from two-dim...
Phase-Contrast (PC) MRI utilizes signal phase shifts resulting from moving spins to measure tissue m...
Magnetic resonance phase velocity mapping (MRPVM) is an established clinical technique to measure bl...
Imaging hemodynamics play an important role in the diagnosis of abnormal blood flow due to vascular ...
Abstract—Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in t...
Imaging hemodynamics play an important role in the diagnosis of abnormal blood flow due to vascular ...
Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in the heart....
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...
Purpose To introduce a mathematical framework and in-silico validation of turbulent flow spectrum im...
Turbulent flow, characterized by velocity fluctuations, accompanies many forms of cardiovascular dis...
Turbulent flow, characterized by velocity fluctuations, accompanies many forms of cardiovascular dis...
Magnetic Resonance Imaging (MRI) has the ability to image flow qualitatively and quantitatively. How...
Quantifying turbulence velocity fluctuation is important because it indicates the fluid energy dissi...
In the last two decades, phase-contrast magnetic resonance imaging (PC-MRI) has evolved from two-dim...
Phase-Contrast (PC) MRI utilizes signal phase shifts resulting from moving spins to measure tissue m...
Magnetic resonance phase velocity mapping (MRPVM) is an established clinical technique to measure bl...
Imaging hemodynamics play an important role in the diagnosis of abnormal blood flow due to vascular ...
Abstract—Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in t...
Imaging hemodynamics play an important role in the diagnosis of abnormal blood flow due to vascular ...
Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in the heart....