<p>Anatomical and segmented vasculature images obtained from the transmission and fluorescence under-sampled data sets. The number of projections used to reconstruct the images and acquisition time is indicated in each subfigure. The vasculature labels (top left) indicate some of the key features of the zebrafish embryo vasculature: caudal vein (CV), caudal artery (CA), intersegmental vessel (SE), dorsal aorta (DA), posterior cardinal vein (PCV), dorsal longitudinal anastomotic vessel (DLAV), primary head sinus (PHS), dorsal longitudinal vein (DLV), inner optic circle (IOC) and nasal ciliary artery (NCA). Scale bar applies to all panels.</p
Zebrafish have become an established in vivo vertebrate model to study cardiovascular development an...
Ocular vasculature consists of the central retinal and ciliary vascular systems, which are essential...
<p>(A) Dark field (top) and fluorescence (bottom) images of a control transgenic embryo at 3 dpf sho...
<p>The box indicates the region magnified (top left) The number of projections used to reconstruct t...
<p>A) Projection image of a 3 dpf embryo using images captured by confocal microscopy. B, C) Compara...
Zebrafish have become an established in vivo vertebrate model to study cardiovascular development an...
Understanding on the mechanisms of vascular branching morphogenesis has become a subject of enormous...
<p>The accessibility and optical clarity of zebrafish embryos lend a particular advantage to the stu...
The vascular system develops very early during vertebrate embryogenesis, since all other forming org...
<p>An extended depth of focus projection (dorsal upwards, anterior left) of the vasculature of a <i>...
AbstractIn this study we describe a model system that allows continuous in vivo observation of the v...
<p>(Left) Images reconstructed from the fluorescence [red] and transmission projection images [green...
The zebrafish has become an established model to study vascular development and disease in vivo. How...
<p>Confocal micrographs collected from a ventral point of view show a progressive increase in vessel...
AbstractWe have used confocal microangiography to examine and describe the vascular anatomy of the d...
Zebrafish have become an established in vivo vertebrate model to study cardiovascular development an...
Ocular vasculature consists of the central retinal and ciliary vascular systems, which are essential...
<p>(A) Dark field (top) and fluorescence (bottom) images of a control transgenic embryo at 3 dpf sho...
<p>The box indicates the region magnified (top left) The number of projections used to reconstruct t...
<p>A) Projection image of a 3 dpf embryo using images captured by confocal microscopy. B, C) Compara...
Zebrafish have become an established in vivo vertebrate model to study cardiovascular development an...
Understanding on the mechanisms of vascular branching morphogenesis has become a subject of enormous...
<p>The accessibility and optical clarity of zebrafish embryos lend a particular advantage to the stu...
The vascular system develops very early during vertebrate embryogenesis, since all other forming org...
<p>An extended depth of focus projection (dorsal upwards, anterior left) of the vasculature of a <i>...
AbstractIn this study we describe a model system that allows continuous in vivo observation of the v...
<p>(Left) Images reconstructed from the fluorescence [red] and transmission projection images [green...
The zebrafish has become an established model to study vascular development and disease in vivo. How...
<p>Confocal micrographs collected from a ventral point of view show a progressive increase in vessel...
AbstractWe have used confocal microangiography to examine and describe the vascular anatomy of the d...
Zebrafish have become an established in vivo vertebrate model to study cardiovascular development an...
Ocular vasculature consists of the central retinal and ciliary vascular systems, which are essential...
<p>(A) Dark field (top) and fluorescence (bottom) images of a control transgenic embryo at 3 dpf sho...