Most fetal brain MRI reconstruction algorithms rely only on brain tissue-relevant voxels of low-resolution (LR) images to enhance the quality of inter-slice motion correction and image reconstruction. Consequently the fetal brain needs to be localized and extracted as a first step, which is usually a laborious and time consuming manual or semi-automatic task. We have proposed in this work to use age-matched template images as prior knowledge to automatize brain localization and extraction. This has been achieved through a novel automatic brain localization and extraction method based on robust template-to-slice block matching and deformable slice-to-template registration. Our template-based approach has also enabled the reconstruction of fe...
Slice-to-volume registration (SVR) methods allow reconstruction of high-resolution 3D images from mu...
It is critical to quantitatively analyse the developing human fetal brain in order to fully understa...
Segmentation of the developing fetal brain is an important step in quantitative analyses. However, m...
Most fetal brain MRI reconstruction algorithms rely only on brain tissue-relevant voxels of low-reso...
To enhance post-acquisition processing of fetal brain MRI we have developed a template-to-slice bloc...
High-resolution volume reconstruction from multiple motion-corrupted stacks of 2D slices plays an in...
Fetal brain extraction is a necessary first step in most computational fetal brain MRI pipelines. Ho...
With advances in fetal magnetic resonance imaging (MRI), research in neonatal neuroscience has shift...
Introduction. Development of the fetal brain surface with concomitant gyrification is one of the maj...
Accurate characterization of in utero human brain maturation is critical as it involves complex and ...
Fetal magnetic resonance imaging (MRI) has been increasingly used as a powerful complement imaging m...
We propose a method for the reconstruction of volumetric fetal MRI from 2D slices, comprising super-...
We propose a method for the reconstruction of volumetric fetal MRI from 2D slices, comprising super-...
Fetal Magnetic Resonance Imaging (MRI) shows promising results for pre-natal diagnostics. The detect...
Fetal brain magnetic resonance imaging (MRI) is a rapidly emerging diagnostic imaging tool. However,...
Slice-to-volume registration (SVR) methods allow reconstruction of high-resolution 3D images from mu...
It is critical to quantitatively analyse the developing human fetal brain in order to fully understa...
Segmentation of the developing fetal brain is an important step in quantitative analyses. However, m...
Most fetal brain MRI reconstruction algorithms rely only on brain tissue-relevant voxels of low-reso...
To enhance post-acquisition processing of fetal brain MRI we have developed a template-to-slice bloc...
High-resolution volume reconstruction from multiple motion-corrupted stacks of 2D slices plays an in...
Fetal brain extraction is a necessary first step in most computational fetal brain MRI pipelines. Ho...
With advances in fetal magnetic resonance imaging (MRI), research in neonatal neuroscience has shift...
Introduction. Development of the fetal brain surface with concomitant gyrification is one of the maj...
Accurate characterization of in utero human brain maturation is critical as it involves complex and ...
Fetal magnetic resonance imaging (MRI) has been increasingly used as a powerful complement imaging m...
We propose a method for the reconstruction of volumetric fetal MRI from 2D slices, comprising super-...
We propose a method for the reconstruction of volumetric fetal MRI from 2D slices, comprising super-...
Fetal Magnetic Resonance Imaging (MRI) shows promising results for pre-natal diagnostics. The detect...
Fetal brain magnetic resonance imaging (MRI) is a rapidly emerging diagnostic imaging tool. However,...
Slice-to-volume registration (SVR) methods allow reconstruction of high-resolution 3D images from mu...
It is critical to quantitatively analyse the developing human fetal brain in order to fully understa...
Segmentation of the developing fetal brain is an important step in quantitative analyses. However, m...