PurposeTo develop an MRI acquisition and reconstruction framework for volumetric cine visualization of the fetal heart and great vessels in the presence of maternal and fetal motion.MethodsFour‐dimensional (4D) depiction was achieved using a highly‐accelerated multi‐planar real‐time balanced steady‐state free precession acquisition combined with retrospective image‐domain techniques for motion correction, cardiac synchronization and outlier rejection. The framework was validated using a numerical phantom and evaluated in a study of 20 mid‐ to late‐gestational age human fetal subjects (23‐33 weeks gestational age). Reconstructed MR data were compared with matched ultrasound. A preliminary assessment of flow‐sensitive reconstruction using the...
Fetal Magnetic Resonance Imaging (MRI) shows promising results for pre-natal diagnostics. The detect...
Abstract Purpose To image multidimensional flow in fe...
Phase contrast magnetic resonance imaging (MRI) has the potential to assess fetal blood flow. Howeve...
PurposeTo develop an MRI acquisition and reconstruction framework for volumetric cine visualization ...
Prenatal detection of congenital heart disease facilitates the opportunity for potentially life-savi...
Animation demonstrating spatial and temporal aspects of 4D whole-heart reconstruction of healthy 28 ...
PURPOSE: 4D ultrasound imaging of the fetal heart relies on reconstructions from B-mode images. In t...
Fast magnetic resonance imaging (MRI) led to the emergence of 'cine MRI' techniques, which enable th...
Cardiac Magnetic Resonance (CMR) imaging has the potential to be a useful prenatal diagnosis tool in...
Background: Fetal cardiac magnetic resonance imaging (MRI) requires high spatial and temporal resolu...
Fetal development relies on a complex circulatory network and accurately assessing the flow distribu...
BACKGROUND: Two-dimensional (2D) ultrasound echocardiography is the primary technique used to diagno...
Validating new techniques for fetal cardiovascular magnetic resonance (CMR) is challenging due to ra...
Abstract Background Validating new techniques for fet...
Background Two-dimensional (2D) ultrasound echocardiography is the primary technique used to diagnos...
Fetal Magnetic Resonance Imaging (MRI) shows promising results for pre-natal diagnostics. The detect...
Abstract Purpose To image multidimensional flow in fe...
Phase contrast magnetic resonance imaging (MRI) has the potential to assess fetal blood flow. Howeve...
PurposeTo develop an MRI acquisition and reconstruction framework for volumetric cine visualization ...
Prenatal detection of congenital heart disease facilitates the opportunity for potentially life-savi...
Animation demonstrating spatial and temporal aspects of 4D whole-heart reconstruction of healthy 28 ...
PURPOSE: 4D ultrasound imaging of the fetal heart relies on reconstructions from B-mode images. In t...
Fast magnetic resonance imaging (MRI) led to the emergence of 'cine MRI' techniques, which enable th...
Cardiac Magnetic Resonance (CMR) imaging has the potential to be a useful prenatal diagnosis tool in...
Background: Fetal cardiac magnetic resonance imaging (MRI) requires high spatial and temporal resolu...
Fetal development relies on a complex circulatory network and accurately assessing the flow distribu...
BACKGROUND: Two-dimensional (2D) ultrasound echocardiography is the primary technique used to diagno...
Validating new techniques for fetal cardiovascular magnetic resonance (CMR) is challenging due to ra...
Abstract Background Validating new techniques for fet...
Background Two-dimensional (2D) ultrasound echocardiography is the primary technique used to diagnos...
Fetal Magnetic Resonance Imaging (MRI) shows promising results for pre-natal diagnostics. The detect...
Abstract Purpose To image multidimensional flow in fe...
Phase contrast magnetic resonance imaging (MRI) has the potential to assess fetal blood flow. Howeve...