The presented dataset provides a normative high-resolution three-dimensional (3D) macromolecular proton fraction (MPF) map of the healthy rat brain in vivo and source images used for its reconstruction. The images were acquired using the protocol described elsewhere (Naumova, et al. High-resolution three-dimensional macromolecular proton fraction mapping for quantitative neuroanatomical imaging of the rodent brain in ultra-high magnetic fields. Neuroimage (2016) doi: 10.1016/j.neuroimage.2016.09.036). The map was reconstructed from three source images with different contrast weightings (proton density, T1, and magnetization transfer) using the single-point algorithm with a synthetic reference image. Source images were acquired from a living...
With the steadily improving resolution of novel small-animal single photon emission computed tomogra...
Manganese is a magnetic resonance imaging (MRI) contrast agent for small animals that can provide a ...
High-resolution multiscale and multimodal 3D models of the brain are essential tools to understand i...
The presented dataset provides a normative high-resolution three-dimensional (3D) macromolecular pro...
Purpose Macromolecular proton fraction (MPF) mapping is a quantitative MRI method that reconstructs ...
International audiencePurposeTo determine optimal constrained tissue parameters and off-resonance se...
This work demonstrates technical approaches to high-quality magnetic resonance imaging (MRI) of smal...
Quantitative proton spectroscopic imaging of the neurochemical profile in rat brain with microliter ...
<p>(A). Macromolecular proton fraction map of four weeks old mouse. Color bar indicates pseudo-color...
We have produced a multidimensional atlas of the adult Wistar rat brain based on magnetic resonance ...
We have produced a multidimensional atlas of the adult Wistar rat brain based on magnetic resonance ...
Small animal models of human diseases are an indispensable aspect of pre-clinical research. Being dy...
BACKGROUND: Small animal models of human diseases are an indispensable aspect of pre-clinical resear...
Background: Small animal models of human diseases are an indispensable aspect of pre-clinical resear...
Magnetic resonance (MR) imaging provides a method to obtain anatomical information from the brain in...
With the steadily improving resolution of novel small-animal single photon emission computed tomogra...
Manganese is a magnetic resonance imaging (MRI) contrast agent for small animals that can provide a ...
High-resolution multiscale and multimodal 3D models of the brain are essential tools to understand i...
The presented dataset provides a normative high-resolution three-dimensional (3D) macromolecular pro...
Purpose Macromolecular proton fraction (MPF) mapping is a quantitative MRI method that reconstructs ...
International audiencePurposeTo determine optimal constrained tissue parameters and off-resonance se...
This work demonstrates technical approaches to high-quality magnetic resonance imaging (MRI) of smal...
Quantitative proton spectroscopic imaging of the neurochemical profile in rat brain with microliter ...
<p>(A). Macromolecular proton fraction map of four weeks old mouse. Color bar indicates pseudo-color...
We have produced a multidimensional atlas of the adult Wistar rat brain based on magnetic resonance ...
We have produced a multidimensional atlas of the adult Wistar rat brain based on magnetic resonance ...
Small animal models of human diseases are an indispensable aspect of pre-clinical research. Being dy...
BACKGROUND: Small animal models of human diseases are an indispensable aspect of pre-clinical resear...
Background: Small animal models of human diseases are an indispensable aspect of pre-clinical resear...
Magnetic resonance (MR) imaging provides a method to obtain anatomical information from the brain in...
With the steadily improving resolution of novel small-animal single photon emission computed tomogra...
Manganese is a magnetic resonance imaging (MRI) contrast agent for small animals that can provide a ...
High-resolution multiscale and multimodal 3D models of the brain are essential tools to understand i...