Keyphrases
Functional Magnetic Resonance Imaging
100%
Submillimeter
100%
Blood Volume
100%
Layer-dependent
100%
Vascular Space Occupancy
100%
Dependent Application
100%
3D EPI
55%
Cerebral Blood Volume
33%
Multi-slice
22%
Submillimeter Resolution
22%
Cortex
22%
Spatial Resolution
22%
BOLD fMRI
22%
Superior Performance
11%
Cortical Layers
11%
Cortical Surface
11%
Functional Specificity
11%
Acquisition Efficiency
11%
Cortical Laminae
11%
Thermal Noise
11%
Ultrahigh Magnetic Field
11%
Functional Sensitivity
11%
Low Spatial Resolution
11%
Physiological Noise
11%
Temporal Stability
11%
Acceleration Strategy
11%
Neuroscience
11%
Layer fMRI
11%
Temporal Resolution
11%
Controlled Aliasing in Parallel Imaging Results in Higher Acceleration (CAIPIRINHA)
11%
Two Dimensional
11%
Temporal Sensitivity
11%
Reconstruction Strategy
11%
Task Activation
11%
INIS
volume
100%
applications
100%
blood
100%
space
100%
mapping
100%
resolution
100%
layers
100%
sensitivity
33%
specificity
22%
comparative evaluations
22%
surfaces
22%
noise
22%
acceleration
22%
spatial resolution
22%
levels
11%
veins
11%
efficiency
11%
range
11%
performance
11%
stability
11%
contamination
11%
readout systems
11%
slabs
11%
magnetic fields
11%
data acquisition
11%
Earth and Planetary Sciences
Spatial Resolution
100%
Field of View
50%
Readout
50%
Data Acquisition
50%
Thermal Noise
50%
Physics
Blood Volume
100%
Data Acquisition
25%
Magnetic Field
25%
Field of View
25%
Medicine and Dentistry
Functional Magnetic Resonance Imaging
100%
Sensitivity and Specificity
14%
Cortical Layer
14%
Biochemistry, Genetics and Molecular Biology
Functional Magnetic Resonance Imaging
100%
Reconstruction
14%
Magnetic Field
14%
Neuroscience
Functional Magnetic Resonance Imaging
100%