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August 1, 1998Magnetic Resonance in Medicine172 citations

Visualizing blood flow patterns using streamlines, arrows, and particle paths

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MBMichael H. Buonocore

Structured PICO

P
Population
Normal flow patterns in the carotid artery, basilar artery tip, ascending aorta, coronary arteries, descending aorta, and renal arteries, as well as abnormal flow patterns in basilar tip aneurysms
I
Intervention
A customized computer program (MRIView) for visualizing and quantifying complex blood flow patterns using nongated and cardiac-gated 3D velocity data obtained with MR velocity-encoded phase pulse sequences
O
Outcome
Visualization and quantification of complex blood flow patterns (average speed, through-plane velocity, cross-sectional area, and flow)surrogate

A customized computer program (MRIView) enables interactive 3D visualization and quantification of complex blood flow patterns from MR velocity data, potentially aiding in assessing atherosclerosis risk and evaluating vascular interventions.

Abstract

A customized computer program (MRIView) is described for visualizing and quantifying complex blood flow patterns in major vessels, using nongated and cardiac-gated three-dimensional (3D) velocity data obtained with MR velocity-encoded phase pulse sequences. Streamlines, arrows, and particle paths (collectively referred to as "paths") can be computed interactively, using both forward and backward time integration of the velocity field. The program provides interactive cross-sectional and 3D perspective visualization of the paths, with quantification and statistical analysis of average speed, through-plane velocity, cross-sectional area, and flow. Normal flow patterns in the carotid artery, basilar artery tip, ascending aorta, coronary arteries, descending aorta, and renal arteries, as well as abnormal flow patterns in basilar tip aneurysms, have been investigated. The program revealed flow patterns in these regions with features that are well known from Doppler ultrasound and other features that have not been reported previously. The association between specific abnormal flow patterns and development of atherosclerosis suggests that particle paths can be used to assess risk of plaque formation and progression, as well as to evaluate flow dynamics and vascular patency before and after vascular interventions.

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Cite This Study

Michael H. Buonocore (1998) studied this question.

synapsesocial.com/papers/6a2088a655df6adc1bcd4dadhttps://doi.org/10.1002/mrm.1910400207
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