Electron microscopy is the primary approach to study ultrastructural features of the cerebrovasculature. However, 2D snapshots of a vascular bed capture only a small fraction of its complexity. Recent efforts to synaptically map neuronal circuitry using volume electron microscopy have also sampled the brain microvasculature in 3D. Here, we perform a meta-analysis of 7 data sets spanning different species and brain regions, including two data sets from the MICrONS consortium that have made efforts to segment vasculature in addition to all parenchymal cell types in mouse visual cortex. Exploration of these data have revealed rich information for detailed investigation of the cerebrovasculature. Neurovascular unit cell types (including, but no...
(A) Representative brain capillaries from the brainstem of SHR control animals were characterized by...
<div><p>The topology of the cerebral vasculature, which is the energy transport corridor of the brai...
Characterizing the microvasculature of the human brain is critical to advance understanding of brain...
Electron microscopy is the primary approach to study ultrastructural features of the cerebrovasculat...
International audienceThe cerebral vasculature is a dense network of arteries, capillaries, and vein...
The cerebral vasculature is a dense network of arteries, capillaries, and veins. Quantifying variati...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
The cerebrovasculature is essential to brain health and is tasked with ensuring adequate delivery of...
Advances in high-throughput microscopy allow researchers to collect three-dimensional images of whol...
Mapping the microvascular networks in the brain can lead to significant scientific and clinical insi...
The study of cerebral vascular development can broaden our understanding of underlying variations su...
Ex vivo 2-photon fluorescence microscopy (2PFM) with optical clearing enables vascular imaging deep ...
Tissue clearing methods enable the imaging of biological specimens without sectioning. However, reli...
Morphological analyses of cerebral vascularization are not only important for the characterization o...
The present study was aimed to characterize 3-dimensional (3D) morphology of the cortical microvascu...
(A) Representative brain capillaries from the brainstem of SHR control animals were characterized by...
<div><p>The topology of the cerebral vasculature, which is the energy transport corridor of the brai...
Characterizing the microvasculature of the human brain is critical to advance understanding of brain...
Electron microscopy is the primary approach to study ultrastructural features of the cerebrovasculat...
International audienceThe cerebral vasculature is a dense network of arteries, capillaries, and vein...
The cerebral vasculature is a dense network of arteries, capillaries, and veins. Quantifying variati...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
The cerebrovasculature is essential to brain health and is tasked with ensuring adequate delivery of...
Advances in high-throughput microscopy allow researchers to collect three-dimensional images of whol...
Mapping the microvascular networks in the brain can lead to significant scientific and clinical insi...
The study of cerebral vascular development can broaden our understanding of underlying variations su...
Ex vivo 2-photon fluorescence microscopy (2PFM) with optical clearing enables vascular imaging deep ...
Tissue clearing methods enable the imaging of biological specimens without sectioning. However, reli...
Morphological analyses of cerebral vascularization are not only important for the characterization o...
The present study was aimed to characterize 3-dimensional (3D) morphology of the cortical microvascu...
(A) Representative brain capillaries from the brainstem of SHR control animals were characterized by...
<div><p>The topology of the cerebral vasculature, which is the energy transport corridor of the brai...
Characterizing the microvasculature of the human brain is critical to advance understanding of brain...