Three-dimensional analysis of vascular development in the mouse embryo
about
Angiopoietin-1 is essential in mouse vasculature during development and in response to injury.3-dimensional imaging modalities for phenotyping genetically engineered miceENU-induced mutation in the DNA-binding domain of KLF3 reveals important roles for KLF3 in cardiovascular development and function in miceA computational model predicting disruption of blood vessel developmentThe hemodynamic basis for positional- and inter-fetal dependent effects in dual arterial supply of mouse pregnanciesQuantitative ex-vivo micro-computed tomographic imaging of blood vessels and necrotic regions within tumors.Excessive vascular sprouting underlies cerebral hemorrhage in mice lacking αVβ8-TGFβ signaling in the brain.Rasip1 is required for endothelial cell motility, angiogenesis and vessel formationThe ubiquitin ligase Nedd4-1 is required for heart development and is a suppressor of thrombospondin-1Insight into PreImplantation Factor (PIF*) mechanism for embryo protection and development: target oxidative stress and protein misfolding (PDI and HSP) through essential RIKP [corrected] binding siteOptical coherence tomography for embryonic imaging: a review.Contrast imaging in mouse embryos using high-frequency ultrasound.Cardiovascular Imaging in MiceUltrasound and magnetic resonance microimaging of mouse developmentLymphatic endothelial progenitors bud from the cardinal vein and intersomitic vessels in mammalian embryos.'In parallel' interconnectivity of the dorsal longitudinal anastomotic vessels requires both VEGF signaling and circulatory flowPiezo1, a mechanically activated ion channel, is required for vascular development in mice.Metallothionein 2 regulates endothelial cell migration through transcriptional regulation of vegfc expressionRotational imaging optical coherence tomography for full-body mouse embryonic imaging.Algorithms for improved 3-D reconstruction of live mammalian embryo vasculature from optical coherence tomography data.A mouse strain where basal connective tissue growth factor gene expression can be switched from low to high.A Snail1/Notch1 signalling axis controls embryonic vascular development.Three-dimensional micro-MRI analysis of cerebral artery development in mouse embryos.Hif-1α regulates macrophage-endothelial interactions during blood vessel development in zebrafish.Formation and maturation of the native cerebral collateral circulation.High-resolution episcopic microscopy data-based measurements of the arteries of mouse embryos: evaluation of significance and reproducibility under routine conditions.Hedgehog signaling in the posterior region of the mouse gastrula suggests manifold roles in the fetal-umbilical connection and posterior morphogenesis.Evaluation of utero-placental and fetal hemodynamic parameters throughout gestation in pregnant mice using high-frequency ultrasound.A method for 3D immunostaining and optical imaging of the mouse brain demonstrated in neural progenitor cellsDesign and implementation of a custom built optical projection tomography system.A clinical and experimental overview of sirenomelia: insight into the mechanisms of congenital limb malformations.Stepwise arteriovenous fate acquisition during mammalian vasculogenesis.Optical Coherence Tomography for live imaging of mammalian development.Cardiovascular Patterning as Determined by Hemodynamic Forces and Blood Vessel Genetics.Mapping mouse hemangioblast maturation from headfold stages.Pbx1-dependent control of VMC differentiation kinetics underlies gross renal vascular patterning.Retrograde perfusion and filling of mouse coronary vasculature as preparation for micro computed tomography imagingPhase-contrast X-ray microtomography of mouse fetus.Neuroanatomical phenotyping of the mouse brain with three-dimensional autofluorescence imagingApplicability, usability, and limitations of murine embryonic imaging with optical coherence tomography and optical projection tomography.
P2860
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P2860
Three-dimensional analysis of vascular development in the mouse embryo
description
2008 nî lūn-bûn
@nan
2008 թուականին հրատարակուած գիտական յօդուած
@hyw
2008 թվականին հրատարակված գիտական հոդված
@hy
2008年の論文
@ja
2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
@wuu
name
Three-dimensional analysis of vascular development in the mouse embryo
@ast
Three-dimensional analysis of vascular development in the mouse embryo
@en
Three-dimensional analysis of vascular development in the mouse embryo
@en-gb
Three-dimensional analysis of vascular development in the mouse embryo
@nl
type
label
Three-dimensional analysis of vascular development in the mouse embryo
@ast
Three-dimensional analysis of vascular development in the mouse embryo
@en
Three-dimensional analysis of vascular development in the mouse embryo
@en-gb
Three-dimensional analysis of vascular development in the mouse embryo
@nl
altLabel
Three-Dimensional Analysis of Vascular Development in the Mouse Embryo
@en
prefLabel
Three-dimensional analysis of vascular development in the mouse embryo
@ast
Three-dimensional analysis of vascular development in the mouse embryo
@en
Three-dimensional analysis of vascular development in the mouse embryo
@en-gb
Three-dimensional analysis of vascular development in the mouse embryo
@nl
P2093
P2860
P3181
P1433
P1476
Three-dimensional analysis of vascular development in the mouse embryo
@en
P2093
Johnathon R Walls
Leigh Coultas
R Mark Henkelman
P2860
P3181
P356
10.1371/JOURNAL.PONE.0002853
P407
P577
2008-01-01T00:00:00Z