The health and function of tissue rely on its vasculature network to provide reliable blood perfusion. Volumetric imaging approaches, such as multiphoton microscopy, are able to generate detailed 3D images of blood vessels that could contribute to our understanding of the role of vascular structure in normal physiology and in disease mechanisms. The segmentation of vessels, a core image analysis problem, is a bottleneck that has prevented the systematic comparison of 3D vascular architecture across experimental populations. We explored the use of convolutional neural networks to segment 3D vessels within volumetric in vivo images acquired by multiphoton microscopy. We evaluated different network architectures and machine learning techniques...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
Mapping brain architecture is important for understanding neurological function and behavior, partic...
Ex vivo 2-photon fluorescence microscopy (2PFM) with optical clearing enables vascular imaging deep ...
The health and function of tissue rely on its vasculature network to provide reliable blood perfusio...
The health and function of tissue rely on its vasculature network to provide reliable blood perfusio...
Tissue clearing methods enable the imaging of biological specimens without sectioning. However, reli...
Objective and Impact Statement. Segmentation of blood vessels from two-photon microscopy (2PM) angio...
Cancer is a leading cause of death worldwide with an estimated 14 million new cases occurring yearly...
The cerebral vasculature is a dense network of arteries, capillaries, and veins. Quantifying variati...
International audienceThe cerebral vasculature is a dense network of arteries, capillaries, and vein...
International audienceThe cerebral vasculature is a dense network of arteries, capillaries, and vein...
International audienceThe cerebral vasculature is a dense network of arteries, capillaries, and vein...
Identification and quantitative segmentation of individual blood vessels in mice visualized with pre...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
Mapping brain architecture is important for understanding neurological function and behavior, partic...
Ex vivo 2-photon fluorescence microscopy (2PFM) with optical clearing enables vascular imaging deep ...
The health and function of tissue rely on its vasculature network to provide reliable blood perfusio...
The health and function of tissue rely on its vasculature network to provide reliable blood perfusio...
Tissue clearing methods enable the imaging of biological specimens without sectioning. However, reli...
Objective and Impact Statement. Segmentation of blood vessels from two-photon microscopy (2PM) angio...
Cancer is a leading cause of death worldwide with an estimated 14 million new cases occurring yearly...
The cerebral vasculature is a dense network of arteries, capillaries, and veins. Quantifying variati...
International audienceThe cerebral vasculature is a dense network of arteries, capillaries, and vein...
International audienceThe cerebral vasculature is a dense network of arteries, capillaries, and vein...
International audienceThe cerebral vasculature is a dense network of arteries, capillaries, and vein...
Identification and quantitative segmentation of individual blood vessels in mice visualized with pre...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
The formation of new blood vessels and the establishment of vascular networks are crucial during bra...
Mapping brain architecture is important for understanding neurological function and behavior, partic...
Ex vivo 2-photon fluorescence microscopy (2PFM) with optical clearing enables vascular imaging deep ...