PURPOSE: Fetal brain Magnetic Resonance Imaging suffers from unpredictable and unconstrained fetal motion that causes severe image artifacts even with half-Fourier single-shot fast spin echo (HASTE) readouts. This work presents the implementation of a closed-loop pipeline that automatically detects and reacquires HASTE images that were degraded by fetal motion without any human interaction. METHODS: A convolutional neural network that performs automatic image quality assessment (IQA) was run on an external GPU-equipped computer that was connected to the internal network of the MRI scanner. The modified HASTE pulse sequence sent each image to the external computer, where the IQA convolutional neural network evaluated it, and then the IQA sco...
High-resolution volume reconstruction from multiple motion-corrupted stacks of 2D slices plays an in...
Fetal mid-pregnancy scans are typically carried out according to fixed protocols. Accurate detection...
Fetal MRI is widely used to investigate brain development in utero. MR images do not only visualize ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
The purpose of this study was to evaluate the neuroimaging quality and accuracy of prospective real-...
Background Access to appropriate images of fetal brain can greatly assist to diagnose of probable ab...
Imaging the fetal brain in utero is challenging due to the unpredictable motion of the fetus. Althou...
© 2020, Springer Nature Switzerland AG. Fetal brain MRI is useful for diagnosing brain abnormalities...
Fetal Magnetic Resonance Imaging (MRI) is heavily constrained by unpredictable and substantial fetal...
3D Magnetic Resonance Imaging (MRI) is often a trade-off between fast but low-resolution image acqui...
The all-embracing morphological changes in fetal brain development in the whole time pregnancy are v...
This tool implements a novel method for the correction of motion artifacts as acquired in fetal Magn...
Fetal Magnetic Resonance Imaging (MRI) shows promising results for pre-natal diagnostics. The detect...
Identifying fetal orientation is essential for determining the mode of delivery and for sequence pla...
Accurate characterization of in utero human brain maturation is critical as it involves complex and ...
High-resolution volume reconstruction from multiple motion-corrupted stacks of 2D slices plays an in...
Fetal mid-pregnancy scans are typically carried out according to fixed protocols. Accurate detection...
Fetal MRI is widely used to investigate brain development in utero. MR images do not only visualize ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
The purpose of this study was to evaluate the neuroimaging quality and accuracy of prospective real-...
Background Access to appropriate images of fetal brain can greatly assist to diagnose of probable ab...
Imaging the fetal brain in utero is challenging due to the unpredictable motion of the fetus. Althou...
© 2020, Springer Nature Switzerland AG. Fetal brain MRI is useful for diagnosing brain abnormalities...
Fetal Magnetic Resonance Imaging (MRI) is heavily constrained by unpredictable and substantial fetal...
3D Magnetic Resonance Imaging (MRI) is often a trade-off between fast but low-resolution image acqui...
The all-embracing morphological changes in fetal brain development in the whole time pregnancy are v...
This tool implements a novel method for the correction of motion artifacts as acquired in fetal Magn...
Fetal Magnetic Resonance Imaging (MRI) shows promising results for pre-natal diagnostics. The detect...
Identifying fetal orientation is essential for determining the mode of delivery and for sequence pla...
Accurate characterization of in utero human brain maturation is critical as it involves complex and ...
High-resolution volume reconstruction from multiple motion-corrupted stacks of 2D slices plays an in...
Fetal mid-pregnancy scans are typically carried out according to fixed protocols. Accurate detection...
Fetal MRI is widely used to investigate brain development in utero. MR images do not only visualize ...