Background: A velocity offset error in phase contrast cardiovascular magnetic resonance (CMR) imaging is a known problem in clinical assessment of flow volumes in vessels around the heart. Earlier studies have shown that this offset error is clinically relevant over different systems, and cannot be removed by protocol optimization. Correction methods using phantom measurements are time consuming, and assume reproducibility of the offsets which is not the case for all systems. An alternative previously published solution is to correct the in-vivo data in post-processing, interpolating the velocity offset from stationary tissue within the field-of-view. This study aims to validate this interpolation-based offset correction in-vivo in a multi-...
PURPOSE: To investigate whether an existing method for correction of phase offset errors in phase-co...
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...
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: 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...
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...
Background Cardiovascular magnetic resonance (CMR) phase contrast (PC) flow measurements suffer from...
Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flow thro...
Purpose: Phase-contrast Cardiovascular Magnetic Resonance Imaging (CMR) generally re-quires the anal...
Aims Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flow...
Introduction: Phase offset errors from local eddy currents can lead to significant errors in flow as...
PURPOSE: To investigate whether an existing method for correction of phase offset errors in phase-co...
PURPOSE: To investigate whether an existing method for correction of phase offset errors in phase-co...
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...
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: 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...
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...
Background Cardiovascular magnetic resonance (CMR) phase contrast (PC) flow measurements suffer from...
Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flow thro...
Purpose: Phase-contrast Cardiovascular Magnetic Resonance Imaging (CMR) generally re-quires the anal...
Aims Cardiovascular magnetic resonance (CMR) allows non-invasive phase contrast measurements of flow...
Introduction: Phase offset errors from local eddy currents can lead to significant errors in flow as...
PURPOSE: To investigate whether an existing method for correction of phase offset errors in phase-co...
PURPOSE: To investigate whether an existing method for correction of phase offset errors in phase-co...
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...