Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] at the gastrula stage. Embryo was split open to reveal a nice cross-section through the outer epithelial layer and the blastocoel cavity. The fertilization envelope dissolves during swimming blastula stage; therefore, cilia and microvilli can be seen at the apical end of the epithelial layer. A few migrating primary mesenchyme cells can be seen within the blastocoel matrix. This is a lower magnification of CIL:39790. This image is part of a group of SEM images of sea urchin embryos at various stages of development. The group is available as CIL:39782-39791
Embryos of temnopleurid sea urchins exhibit species-specific morphologies. While Temnopleurus toreum...
A) Schematic of the fluorescent protein fusions used in these experiments. Protein colors match the ...
Mesenchymal cells of the sea urchin embryo provide a valuable experimental model for the analysis of...
Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] embryo at the la...
Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] at the gastrula ...
Scanning electron microscope image of Strongylocentrotus drobachiensus embryo at the primary mesench...
Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] gastrula. This i...
Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] embryo at the la...
Scanning electron microscope image of Lytechinus pictus [sea urchin] embryo at the 2-cell stage. The...
Scanning electron microscope image of Lytechinus pictus [sea urchin] embryo at the 16-cell stage. Th...
Includes bibliographical references (pages 19-21)Plasma membrane molecular topography in the early d...
The ciliated band of the Strongylocentrotus purpuratus embryo consists of a columnar epithelium, 3-5...
The ciliated band of the Strongylocentrotus purpuratus embryo consists of a columnar epithelium, 3-5...
Includes bibliographical references (pages 18-25)Various stages of developing sea urchin embryos wer...
A fluoresceinated lineage tracer was injected into individual blastomeres of eight-cell sea urchin (...
Embryos of temnopleurid sea urchins exhibit species-specific morphologies. While Temnopleurus toreum...
A) Schematic of the fluorescent protein fusions used in these experiments. Protein colors match the ...
Mesenchymal cells of the sea urchin embryo provide a valuable experimental model for the analysis of...
Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] embryo at the la...
Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] at the gastrula ...
Scanning electron microscope image of Strongylocentrotus drobachiensus embryo at the primary mesench...
Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] gastrula. This i...
Scanning electron microscope image of Strongylocentrotus drobachiensus [sea urchin] embryo at the la...
Scanning electron microscope image of Lytechinus pictus [sea urchin] embryo at the 2-cell stage. The...
Scanning electron microscope image of Lytechinus pictus [sea urchin] embryo at the 16-cell stage. Th...
Includes bibliographical references (pages 19-21)Plasma membrane molecular topography in the early d...
The ciliated band of the Strongylocentrotus purpuratus embryo consists of a columnar epithelium, 3-5...
The ciliated band of the Strongylocentrotus purpuratus embryo consists of a columnar epithelium, 3-5...
Includes bibliographical references (pages 18-25)Various stages of developing sea urchin embryos wer...
A fluoresceinated lineage tracer was injected into individual blastomeres of eight-cell sea urchin (...
Embryos of temnopleurid sea urchins exhibit species-specific morphologies. While Temnopleurus toreum...
A) Schematic of the fluorescent protein fusions used in these experiments. Protein colors match the ...
Mesenchymal cells of the sea urchin embryo provide a valuable experimental model for the analysis of...