PURPOSE: Eddy current induced velocity offsets are of concern for accuracy in cardiovascular magnetic resonance (CMR) volume flow quantification. However, currently known theoretical aspects of eddy current behavior have not led to effective guidelines for the optimization of flow quantification sequences. This study is aimed at identifying correlations between protocol parameters and the resulting velocity error in clinical CMR flow measurements in a multi-vendor study. METHODS: Nine 1.5T scanners of three different types/vendors were studied. Measurements were performed on a large stationary phantom. Starting from a clinical breath-hold flow protocol, several protocol parameters were varied. Acquisitions were made in three clinically rele...
Background: Velocity-encoded magnetic resonance imaging (VENC-MRI) is a commonly used technique in c...
BACKGROUND: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
BACKGROUND: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
Purpose. Eddy current induced velocity offsets are of concern for accuracy in cardiovascular magneti...
Abstract Purpose Eddy current induced velocity offsets are of concern for accuracy in cardiovascular...
Aims Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flo...
AIMS: Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flo...
Users and manufacturers of cardiovascular magnetic resonance (CMR) systems have, po-tentially, an un...
Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flow thro...
Background: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
Aims Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flow...
Background: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
BACKGROUND: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
Background Cardiovascular magnetic resonance (CMR) phase contrast (PC) flow measurements suffer from...
Background: Velocity-encoded magnetic resonance imaging (VENC-MRI) is a commonly used technique in c...
Background: Velocity-encoded magnetic resonance imaging (VENC-MRI) is a commonly used technique in c...
BACKGROUND: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
BACKGROUND: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
Purpose. Eddy current induced velocity offsets are of concern for accuracy in cardiovascular magneti...
Abstract Purpose Eddy current induced velocity offsets are of concern for accuracy in cardiovascular...
Aims Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flo...
AIMS: Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flo...
Users and manufacturers of cardiovascular magnetic resonance (CMR) systems have, po-tentially, an un...
Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flow thro...
Background: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
Aims Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flow...
Background: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
BACKGROUND: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
Background Cardiovascular magnetic resonance (CMR) phase contrast (PC) flow measurements suffer from...
Background: Velocity-encoded magnetic resonance imaging (VENC-MRI) is a commonly used technique in c...
Background: Velocity-encoded magnetic resonance imaging (VENC-MRI) is a commonly used technique in c...
BACKGROUND: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...
BACKGROUND: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imagin...