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143 results on '"Sea Urchins cytology"'

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1. Cell-wide arrangement of Golgi/RE units depends on the microtubule organization.

2. Light-induced, spatiotemporal control of protein in the developing embryo of the sea urchin.

3. Cellular pathways of calcium transport and concentration toward mineral formation in sea urchin larvae.

4. A Peak of H3T3 Phosphorylation Occurs in Synchrony with Mitosis in Sea Urchin Early Embryos.

5. Short- and long-term impacts of variable hypoxia exposures on kelp forest sea urchins.

6. Cell rearrangement induced by filopodial tension accounts for the late phase of convergent extension in the sea urchin archenteron.

7. Conserved regulatory state expression controlled by divergent developmental gene regulatory networks in echinoids.

8. Theoretical tool bridging cell polarities with development of robust morphologies.

9. Echinochrome A Release by Red Spherule Cells Is an Iron-Withholding Strategy of Sea Urchin Innate Immunity.

10. Notch-mediated lateral inhibition is an evolutionarily conserved mechanism patterning the ectoderm in echinoids.

11. TGF-β sensu stricto signaling regulates skeletal morphogenesis in the sea urchin embryo.

12. MAPK/ERK activity is required for the successful progression of mitosis in sea urchin embryos.

13. KirrelL, a member of the Ig-domain superfamily of adhesion proteins, is essential for fusion of primary mesenchyme cells in the sea urchin embryo.

14. Generic Theoretical Models to Predict Division Patterns of Cleaving Embryos.

15. An integrated modelling framework from cells to organism based on a cohort of digital embryos.

16. Cilia are required for asymmetric nodal induction in the sea urchin embryo.

17. Reproduction of the long-spined sea urchin Diadema setosum in the Gulf of Aqaba - implications for the use of gonad-indexes.

18. Neurogenesis in sea urchin embryos and the diversity of deuterostome neurogenic mechanisms.

19. Genome-wide assessment of differential effector gene use in embryogenesis.

20. Specification to biomineralization: following a single cell type as it constructs a skeleton.

21. Historical roots of centrosome research: discovery of Boveri's microscope slides in Würzburg.

22. Critical role of cortical vesicles in dissecting regulated exocytosis: overview of insights into fundamental molecular mechanisms.

23. Tunneling nanotubes, an emerging intercellular communication route in development.

24. Neural development in Eucidaris tribuloides and the evolutionary history of the echinoid larval nervous system.

25. Correlations between the biochemistry and mechanical states of a sea-urchin ligament: a mutable collagenous structure.

26. Sea urchin coelomocytes are resistant to a variety of DNA damaging agents.

27. Zinc effect on the sea urchin Paracentrotus lividus immunological competence.

28. Par6 regulates skeletogenesis and gut differentiation in sea urchin larvae.

29. A comprehensive analysis of Delta signaling in pre-gastrular sea urchin embryos.

30. Mitochondrial pathway of apoptosis is ancestral in metazoans.

31. The rate of change in Ca(2+) concentration controls sperm chemotaxis.

32. Programmed reduction of ABC transporter activity in sea urchin germline progenitors.

33. Relationships among egg size, composition, and energy: a comparative study of geminate sea urchins.

34. The protease degrading sperm histones post-fertilization in sea urchin eggs is a nuclear cathepsin L that is further required for embryo development.

35. Acute manipulation of diacylglycerol reveals roles in nuclear envelope assembly & endoplasmic reticulum morphology.

36. Isolation of C₁₁ compounds and a cyclopropane fatty acid from an Okinawan ascidian, Diplosoma sp.

37. Co-expression of two distinct polysialic acids, α2,8- and α2,9-linked polymers of N-acetylneuraminic acid, in distinct glycoproteins and glycolipids in sea urchin sperm.

38. The centrosome and bipolar spindle assembly: does one have anything to do with the other?

39. Selection in the rapid evolution of gamete recognition proteins in marine invertebrates.

40. Maternal Oct1/2 is required for Nodal and Vg1/Univin expression during dorsal-ventral axis specification in the sea urchin embryo.

41. High-resolution, three-dimensional mapping of gene expression using GeneExpressMap (GEM).

42. Unique system of photoreceptors in sea urchin tube feet.

43. Influence of cell geometry on division-plane positioning.

44. TGFβ signaling positions the ciliary band and patterns neurons in the sea urchin embryo.

45. Opportunities and challenges for digital morphology.

46. Geometry-specific heterogeneity of the apparent diffusion rate of materials inside sperm cells.

47. Activation of the skeletogenic gene regulatory network in the early sea urchin embryo.

48. Ancient animal microRNAs and the evolution of tissue identity.

49. Nanos functions to maintain the fate of the small micromere lineage in the sea urchin embryo.

50. Novel morphological traits in the early developmental stages of Temnopleurus toreumaticus.

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