Magnetic resonance imaging at ultra high field opens the door to quantitative brain imaging at sub-millimeter isotropic resolutions. However, novel image processing tools to analyze these new rich datasets are lacking. In this article, we introduce the Open Science CBS Neuroimaging Repository: a unique repository of high-resolution and quantitative images acquired at 7T. The motivation for this project is to increase interest for high-resolution and quantitative imaging and stimulate the development of image processing tools developed specifically for high-field data. Our growing repository currently includes datasets from MP2RAGE and multi-echo FLASH sequences from 28 and 20 healthy subjects respectively. These datasets represent the curre...
This whole-brain in vivo diffusion MRI dataset was acquired at 760 µm isotropic resolution and sampl...
Mapping structural connectivity in healthy adults for the Human Connectome Project (HCP) benefits fr...
The main goal of this methodological thesis was to present optimised magnetic resonance imaging (MRI...
Magnetic resonance imaging at ultra high field opens the door to quantitative brain imaging at sub-m...
AbstractThe growing interest in ultra-high field MRI, with more than 35.000 MR examinations already ...
We present an ultrahigh resolution in vivo human brain magnetic resonance imaging (MRI) dataset. It ...
The growing interest in ultra-high field MRI, with more than 35.000 MR examinations already performe...
Today’s neuroscientific results are based on complex image analyses that involve a large variety of ...
7-Tesla (T) magnetic resonance imaging (MRI) is currently the highest-field MRI available for clinic...
At 7T, MRI can now provide human brain images of structure, function and connectivity with isotropic...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
In the last 20 years, ultra-high field (UHF) magnetic resonance imaging (MRI) has become an outstand...
The ability to measure functional brain responses non-invasively with ultra high field MRI (7 T and ...
This whole-brain in vivo diffusion MRI dataset was acquired at 760 µm isotropic resolution and sampl...
Mapping structural connectivity in healthy adults for the Human Connectome Project (HCP) benefits fr...
The main goal of this methodological thesis was to present optimised magnetic resonance imaging (MRI...
Magnetic resonance imaging at ultra high field opens the door to quantitative brain imaging at sub-m...
AbstractThe growing interest in ultra-high field MRI, with more than 35.000 MR examinations already ...
We present an ultrahigh resolution in vivo human brain magnetic resonance imaging (MRI) dataset. It ...
The growing interest in ultra-high field MRI, with more than 35.000 MR examinations already performe...
Today’s neuroscientific results are based on complex image analyses that involve a large variety of ...
7-Tesla (T) magnetic resonance imaging (MRI) is currently the highest-field MRI available for clinic...
At 7T, MRI can now provide human brain images of structure, function and connectivity with isotropic...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
In the last 20 years, ultra-high field (UHF) magnetic resonance imaging (MRI) has become an outstand...
The ability to measure functional brain responses non-invasively with ultra high field MRI (7 T and ...
This whole-brain in vivo diffusion MRI dataset was acquired at 760 µm isotropic resolution and sampl...
Mapping structural connectivity in healthy adults for the Human Connectome Project (HCP) benefits fr...
The main goal of this methodological thesis was to present optimised magnetic resonance imaging (MRI...