Functional mapping of cerebral blood volume (CBV) changes has the potential to reveal brain activity with high localization specificity at the level of cortical layers and columns. Non-invasive CBV imaging using Vascular Space Occupancy (VASO) at ultra-high magnetic field strengths promises high spatial specificity but poses unique challenges in human applications. As such, 9.4 T B1+ and B0 inhomogeneities limit efficient blood tagging, while the specific absorption rate (SAR) constraints limit the application of VASO-specific RF pulses. Moreover, short T2* values at 9.4 T require short readout duration, and long T1 values at 9.4 T can cause blood-inflow contaminations. In this study, we investigated the applicability of layer-dependent CBV...
This dissertation describes the development, implementation, validation, optimization, and applicati...
Cerebral blood volume (CBV) has been shown to be a robust and important physiological parameter for ...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Functional mapping of cerebral blood volume (CBV) changes has the potential to reveal brain activity...
Functional mapping of cerebral blood volume (CBV) changes has the potential to reveal brain activity...
Quantitative cerebral blood volume (CBV) fMRI has the potential to overcome several specific limitat...
Cerebral blood volume (CBV) has been shown to be a robust and important physiological parameter for ...
Purpose MRI methods sensitive to functional changes in cerebral blood volume (CBV) may map neural ac...
Quantitative cerebral blood volume (CBV) fMRI has the potential to overcome several specific limitat...
Perfusion-based MRI measures cerebral blood flow (CBF) at the capillary level and can be used for fu...
Recent developments of ultra-high field (UHF) MRI and high-resolution CBV-sensitive VASO sequences h...
Perfusion-based magnetic resonance imaging measures cerebral blood flow (CBF) at the capillary level...
Functional MRI using blood oxygenation level-dependent (BOLD) contrast indirectly probes neuronal ac...
This dissertation describes the development, implementation, validation, optimization, and applicati...
Cerebral blood volume (CBV) has been shown to be a robust and important physiological parameter for ...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Functional mapping of cerebral blood volume (CBV) changes has the potential to reveal brain activity...
Functional mapping of cerebral blood volume (CBV) changes has the potential to reveal brain activity...
Quantitative cerebral blood volume (CBV) fMRI has the potential to overcome several specific limitat...
Cerebral blood volume (CBV) has been shown to be a robust and important physiological parameter for ...
Purpose MRI methods sensitive to functional changes in cerebral blood volume (CBV) may map neural ac...
Quantitative cerebral blood volume (CBV) fMRI has the potential to overcome several specific limitat...
Perfusion-based MRI measures cerebral blood flow (CBF) at the capillary level and can be used for fu...
Recent developments of ultra-high field (UHF) MRI and high-resolution CBV-sensitive VASO sequences h...
Perfusion-based magnetic resonance imaging measures cerebral blood flow (CBF) at the capillary level...
Functional MRI using blood oxygenation level-dependent (BOLD) contrast indirectly probes neuronal ac...
This dissertation describes the development, implementation, validation, optimization, and applicati...
Cerebral blood volume (CBV) has been shown to be a robust and important physiological parameter for ...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...