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May 1, 1987Heart150 citationsOpen Access

Magnetic resonance velocity mapping: clinical application of a new technique.

SUS. R. UnderwoodDFDavid FirminRKR H Klipstein

Key Points

  • This research aims to evaluate the clinical utility of magnetic resonance velocity mapping in diagnosing cardiovascular disorders.
  • Thirteen cases were analyzed using magnetic resonance velocity mapping to visualize blood flow dynamics.

Structured PICO

Does magnetic resonance velocity mapping provide useful diagnostic and functional assessment in patients with cardiovascular disorders?

P
Population
13 patients with various cardiovascular disorders including atrial and ventricular septal defects, valve disease, coronary artery bypass grafts, aortic coarctation, deep vein thrombosis, and complex congenital heart disease
I
Intervention
Magnetic resonance velocity mapping (short field echo sequence with even echo rephasing)
O
Outcome
Diagnosis or functional assessment of cardiovascular anatomy and blood flow velocitiessurrogate

Magnetic resonance velocity mapping is a useful non-invasive technique for assessing blood flow and diagnosing various cardiovascular disorders, potentially avoiding the need for invasive investigation.

Limitations

  • Turbulent flow distal to ventricular shunts led to some loss of quantitative information

Abstract

Magnetic resonance velocity mapping is a new technique which provides a display of velocity within the cardiovascular system at any point of the cardiac cycle. A short field echo sequence with even echo rephasing is used to obtain a signal from rapidly moving blood and a cine display is provided by rapid repetition of the sequence. The amplitude image shows the anatomy, with blood giving a high signal and areas of turbulent flow no signal. The phase image is a map of velocities at each point in the image plane. Thirteen cases are described in which the technique either provided a diagnosis or helped in functional assessment. Flow through atrial and ventricular septal defects was seen, although turbulent flow distal to the ventricular shunts led to some loss of quantitative information. In three patients with valve disease jets of abnormal flow were seen because of signal loss and it is suggested that the size of the area of turbulence may be used to quantify the severity of regurgitation. Velocities were measured in four coronary artery bypass grafts in two patients, and low velocity was seen in a graft with distal disease that supplied the infarcted territory. Velocity was reduced distal to an aortic coarctation and it was increased at the site of narrowing caused by thrombosis in a deep vein. The speed and direction of flow in the central vessels in a patient with complex congenital heart disease helped to establish the anatomy. The technique provides useful information in a wide range of disorders of the cardiovascular system, and in some cases may avoid the need for invasive investigation.

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Cite This Study

Underwood et al. (1987) studied this question.

synapsesocial.com/papers/6a159b6179ff98d0de4ee171https://doi.org/10.1136/hrt.57.5.404
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