The growing interest in ultra-high field MRI, with more than 35.000 MR examinations already performed at 7 T, is related to improved clinical results with regard to morphological as well as functional and metabolic capabilities. Since the signal-to-noise ratio increases with the field strength of the MR scanner, the most evident application at 7 T is to gain higher spatial resolution in the brain compared to 3 T. Of specific clinical interest for neuro applications is the cerebral cortex at 7 T, for the detection of changes in cortical structure, like the visualization of cortical microinfarcts and cortical plaques in Multiple Sclerosis. In imaging of the hippocampus, even subfields of the internal hippocampal anatomy and pathology may be v...
BACKGROUND AND PURPOSE: Higher magnetic field strengths and continuous improvement of high-resolutio...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
INTRODUCTION: Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to...
AbstractThe growing interest in ultra-high field MRI, with more than 35.000 MR examinations already ...
The growing interest in ultra-high field MRI, with more than 35.000 MR examinations already performe...
Presently, three major MR vendors provide commercial 7-T units for clinical research under ethical p...
ntroduction: Magnetic resonance imaging (MRI) is of paramount importance for the early diagnosis of ...
AbstractStroke and related cerebrovascular diseases are a major cause of mortality and disability. E...
Stroke and related cerebrovascular diseases are a major cause of mortality and disability. Even at s...
AbstractThis review illustrates current applications and possible future directions of 7Tesla (7T) M...
7-Tesla (T) magnetic resonance imaging (MRI) is currently the highest-field MRI available for clinic...
Magnetic resonance imaging (MRI) plays a key role in the investigation of cerebrovascular diseases. ...
In the last 20 years, ultra-high field (UHF) magnetic resonance imaging (MRI) has become an outstand...
The choice of a pulse sequence at ultra-high field can be influenced by a number of considerations a...
At 7T, MRI can now provide human brain images of structure, function and connectivity with isotropic...
BACKGROUND AND PURPOSE: Higher magnetic field strengths and continuous improvement of high-resolutio...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
INTRODUCTION: Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to...
AbstractThe growing interest in ultra-high field MRI, with more than 35.000 MR examinations already ...
The growing interest in ultra-high field MRI, with more than 35.000 MR examinations already performe...
Presently, three major MR vendors provide commercial 7-T units for clinical research under ethical p...
ntroduction: Magnetic resonance imaging (MRI) is of paramount importance for the early diagnosis of ...
AbstractStroke and related cerebrovascular diseases are a major cause of mortality and disability. E...
Stroke and related cerebrovascular diseases are a major cause of mortality and disability. Even at s...
AbstractThis review illustrates current applications and possible future directions of 7Tesla (7T) M...
7-Tesla (T) magnetic resonance imaging (MRI) is currently the highest-field MRI available for clinic...
Magnetic resonance imaging (MRI) plays a key role in the investigation of cerebrovascular diseases. ...
In the last 20 years, ultra-high field (UHF) magnetic resonance imaging (MRI) has become an outstand...
The choice of a pulse sequence at ultra-high field can be influenced by a number of considerations a...
At 7T, MRI can now provide human brain images of structure, function and connectivity with isotropic...
BACKGROUND AND PURPOSE: Higher magnetic field strengths and continuous improvement of high-resolutio...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
INTRODUCTION: Magnetic resonance imaging (MRI) using field strengths up to 3 Tesla (T) has proven to...