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1. Modular control of vertebrate axis segmentation in time and space.

2. Waves, patterns, bifurcations: A tutorial review on the vertebrate segmentation clock.

3. The Clock and Wavefront Self-Organizing model recreates the dynamics of mouse somitogenesis in vivo and in vitro.

4. Oscillatory control of embryonic development.

5. Core planar cell polarity genes VANGL1 and VANGL2 in predisposition to congenital vertebral malformations.

6. Spatio-temporal dynamics of early somite segmentation in the chicken embryo.

7. Species-specific roles of the Notch ligands, receptors, and targets orchestrating the signaling landscape of the segmentation clock.

8. Intrinsic and extrinsic cues time somite progenitor contribution to the vertebrate primary body axis.

9. Mapping and Functional Dissection of the Rumpless Trait in Piao Chicken Identifies a Causal Loss of Function Mutation in the Novel Gene Rum.

10. The Role of Fibroblast Growth Factor Signaling in Somitogenesis.

11. Intrinsic and extrinsic cues time somite progenitor contribution to the vertebrate primary body axis

12. Species-specific roles of the Notch ligands, receptors, and targets orchestrating the signaling landscape of the segmentation clock

13. The evolution of somitogenesis : mechanisms of paraxial mesoderm elongation in zebrafish and other vertebrates

14. Pattern formation during extensive cell movements

15. Identification of bi‐allelic LFNG variants in three patients and further clinical and molecular refinement of spondylocostal dysostosis 3.

16. Gonad Ontogeny and Sex Differentiation in a Poeciliid, Gambusia holbrooki : Transition from a Bi- to a Mono-Lobed Organ.

17. Front propagation and global bifurcations in a multivariable reaction-diffusion model.

18. Ripply suppresses Tbx6 to induce dynamic-to-static conversion in somite segmentation.

19. Self-Organization in Embryonic Development: Myth and Reality

20. Morphological and temporal variation in early embryogenesis contributes to species divergence in Malawi cichlid fishes.

21. Sequential changes in cellular properties accompanying amniote somite formation.

22. Notch signaling in development and homeostasis.

23. Regeneration of the human segmentation clock in somitoids in vitro.

24. 3051 – SEQUENTIAL SPECIFICATION OF EMBRYO-LIKE HEMATOPOIETIC WAVES IN A HEMOGENIC GASTRULOID MODEL ABLE TO ENGRAFT HEMATOPOIETIC TISSUES.

25. Arnold tongue entrainment reveals dynamical principles of the embryonic segmentation clock

26. Gastruloids: Pluripotent stem cell models of mammalian gastrulation and embryo engineering.

27. Unique Features of River Lamprey (Lampetra fluviatilis) Myogenesis.

28. Imaging the onset of oscillatory signaling dynamics during mouse embryo gastrulation.

29. Lfng and Dll3 cooperate to modulate protein interactions in cis and coordinate oscillatory Notch pathway activation in the segmentation clock.

30. Cell–Fibronectin Interactions and Actomyosin Contractility Regulate the Segmentation Clock and Spatio-Temporal Somite Cleft Formation during Chick Embryo Somitogenesis.

31. A human pluripotent stem cell-based somitogenesis model using microfluidics.

32. Substrate Rigidity Modulates Segmentation Clock Dynamics in Isolated Presomitic Mesoderm Cells.

34. The vertebrate Embryo Clock: Common players dancing to a different beat

35. The Tempo of Mammalian Embryogenesis: Variation in the Pace of Brain and Body Development.

36. Endocardial identity is established during early somitogenesis by Bmp signalling acting upstream of npas4l and etv2.

37. Waves in Embryonic Development.

38. Periodic formation of epithelial somites from human pluripotent stem cells.

39. Jagged 2b induces intercellular signaling within somites to establish hematopoietic stem cell fate in zebrafish.

40. Segmentation-clock synchronization in circular-lattice networks of embryonic presomitic-mesoderm cells

41. RARβ2 is required for vertebrate somitogenesis

42. dmrt2 and myf5 Link Early Somitogenesis to Left-Right Axis Determination in Xenopus laevis

43. Whole-genome methylation analysis reveals novel epigenetic perturbations of congenital scoliosis

44. The significance of ultradian oscillations in development.

45. Fgf8 dynamics and critical slowing down may account for the temperature independence of somitogenesis.

46. Circadian key component CLOCK/BMAL1 interferes with segmentation clock in mouse embryonic organoids.

47. Paraxial mesoderm organoids model development of human somites

48. Sculpting with stem cells: how models of embryo development take shape.

49. Activity of the mouse Notch ligand DLL1 is sensitive to C-terminal tagging in vivo.

50. Insight into unique somitogenesis of yak (Bos grunniens) with one additional thoracic vertebra

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