Embryonic development in normal and genetically modified mice is commonly analysed by histological sectioning. This procedure is time-consuming, prone to artefact, and results in the loss of three-dimensional (3D) information. Magnetic resonance imaging (MRI) of embryos has the potential of noninvasively acquiring a complete 3D data set. Published methods have used spin-echo techniques with inherently high signal-to-noise ratio (SNR); however, they required either perfusion of the embryo with a contrast agent, or prolonged acquisition times to improve contrast and resolution. Here, we show that a standard preparation (i.e. paraformaldehyde fixation) of 15.5 days post-coitum embryos followed by MRI using a fast gradient-echo sequence with T(...
Mouse embryo imaging is conventionally carried out on ex vivo embryos excised from the amniotic sac,...
Advanced methodologies for visualizing novel tissue contrast are essential for phenotyping the ever-...
Abstract- High frequency ultrasound imaging has become an effective tool for anatomical mice studies...
Embryonic development in normal and genetically modified mice is commonly analysed by histological s...
Developmental malformations are a major cause of childhood mortality and are typically characterized...
PURPOSE: Advanced methodologies for visualizing novel tissue contrast are essential for phenotyping ...
A new method is described for automatic detection of subtle morphological phenotypes in mouse embryo...
We present an archetypal digital atlas of the mouse embryo based on microscopic magnetic resonance i...
AbstractWe present an archetypal digital atlas of the mouse embryo based on microscopic magnetic res...
AbstractIn this work, we report the use of iodine-contrast microCT to perform high-throughput 3D mor...
Summary: Due to the internal nature of mammalian development, much of the research performed is of a...
Microscopic MRI (µMRI) is an emerging technique for high-throughput phenotyping of transgenic mouse ...
Mouse embryo imaging is conventionally carried out on ex vivo embryos excised from the amniotic sac,...
Rapid and precise phenotyping analysis of large numbers of wild-type and mutant mouse embryos is ess...
MR microscopy is being explored as a useful imaging tool to phenotype mouse embryos due to its volum...
Mouse embryo imaging is conventionally carried out on ex vivo embryos excised from the amniotic sac,...
Advanced methodologies for visualizing novel tissue contrast are essential for phenotyping the ever-...
Abstract- High frequency ultrasound imaging has become an effective tool for anatomical mice studies...
Embryonic development in normal and genetically modified mice is commonly analysed by histological s...
Developmental malformations are a major cause of childhood mortality and are typically characterized...
PURPOSE: Advanced methodologies for visualizing novel tissue contrast are essential for phenotyping ...
A new method is described for automatic detection of subtle morphological phenotypes in mouse embryo...
We present an archetypal digital atlas of the mouse embryo based on microscopic magnetic resonance i...
AbstractWe present an archetypal digital atlas of the mouse embryo based on microscopic magnetic res...
AbstractIn this work, we report the use of iodine-contrast microCT to perform high-throughput 3D mor...
Summary: Due to the internal nature of mammalian development, much of the research performed is of a...
Microscopic MRI (µMRI) is an emerging technique for high-throughput phenotyping of transgenic mouse ...
Mouse embryo imaging is conventionally carried out on ex vivo embryos excised from the amniotic sac,...
Rapid and precise phenotyping analysis of large numbers of wild-type and mutant mouse embryos is ess...
MR microscopy is being explored as a useful imaging tool to phenotype mouse embryos due to its volum...
Mouse embryo imaging is conventionally carried out on ex vivo embryos excised from the amniotic sac,...
Advanced methodologies for visualizing novel tissue contrast are essential for phenotyping the ever-...
Abstract- High frequency ultrasound imaging has become an effective tool for anatomical mice studies...