Human MRI scanners at ultra-high magnetic field strengths of 7 T and higher are increasingly available to the neuroscience community. A key advantage brought by ultra-high field MRI is the possibility to increase the spatial resolution at which data is acquired, with little reduction in image quality. This opens a new set of opportunities for neuroscience, allowing investigators to map the human cortex at an unprecedented level of detail. In this review, we present recent work that capitalizes on the increased signal-to-noise ratio available at ultra-high field and discuss the theoretical advances with a focus on sensory and motor systems neuroscience. Further, we review research performed at sub-millimeter spatial resolution and discuss th...
The volume of published research at the levels of systems and cellular neuroscience continues to inc...
The volume of published research at the levels of systems and cellular neuroscience continues to inc...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
Human MRI scanners at ultra-high magnetic field strengths of 7 T and higher are increasingly availab...
Human MRI scanners at ultra-high magnetic field strengths of 7 T and higher are increasingly availab...
Human MRI scanners at ultra-high magnetic field strengths of 7 T and higher are increasingly availab...
The ability to measure functional brain responses non-invasively with ultra high field MRI (7 T and ...
In recent years, there have been several highly publicized studies showing the value of high-field (...
In this paper, we present an overview of 7 Tesla magnetic resonance imaging (MRI) studies of the det...
Functional magnetic resonance imaging (fMRI), the key methodology for mapping the functions of the h...
The chief advantages of using high-field MRI for neuroscientific research are the improvements in sp...
One of the major advances in magnetic resonance imaging (MRI) is continuous increase of the static m...
The signal-to-noise ratio available in Magnetic Resonance Imaging (MRI)is determined by the static m...
Magnetic Resonance Imaging (MRI) is a modern medical diagnostic tool. MRI does not put any strain on...
Deep brain stimulation is a treatment for Parkinson's disease and other related disorders, involving...
The volume of published research at the levels of systems and cellular neuroscience continues to inc...
The volume of published research at the levels of systems and cellular neuroscience continues to inc...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
Human MRI scanners at ultra-high magnetic field strengths of 7 T and higher are increasingly availab...
Human MRI scanners at ultra-high magnetic field strengths of 7 T and higher are increasingly availab...
Human MRI scanners at ultra-high magnetic field strengths of 7 T and higher are increasingly availab...
The ability to measure functional brain responses non-invasively with ultra high field MRI (7 T and ...
In recent years, there have been several highly publicized studies showing the value of high-field (...
In this paper, we present an overview of 7 Tesla magnetic resonance imaging (MRI) studies of the det...
Functional magnetic resonance imaging (fMRI), the key methodology for mapping the functions of the h...
The chief advantages of using high-field MRI for neuroscientific research are the improvements in sp...
One of the major advances in magnetic resonance imaging (MRI) is continuous increase of the static m...
The signal-to-noise ratio available in Magnetic Resonance Imaging (MRI)is determined by the static m...
Magnetic Resonance Imaging (MRI) is a modern medical diagnostic tool. MRI does not put any strain on...
Deep brain stimulation is a treatment for Parkinson's disease and other related disorders, involving...
The volume of published research at the levels of systems and cellular neuroscience continues to inc...
The volume of published research at the levels of systems and cellular neuroscience continues to inc...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...