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2. Concluion : vers une exploration du monde. In F. Charles (dir.) Graines de scientifiques en maternelle. Explorer le monde du vivant, des objets et de la matière (pp. 203-209). Grenoble : UGA Éditions

5. IGF-1R Reduction Triggers Neuroprotective Signaling Pathways in Spinal Muscular Atrophy Mice

6. FGF6 in myogenesis

7. Regular exercise prolongs survival in a type 2 SMA model mouse

8. FGF6 in myogenesis

9. Increased oxidative metabolism and myoglobin expression in zebrafish muscle during chronic hypoxia

11. In Vivo NMDA Receptor Activation Accelerates Motor Unit Maturation, Protects Spinal Motor Neurons, and Enhances SMN2 Gene Expression in Severe Spinal Muscular Atrophy Mice

17. Correspondance et papiers de Louis Veuillot (1re série). I -- CORRESPONDANCE. VI-XIV Lettres adressées à Louis Veuillot. Années 1868-1871

18. Lettres adressées à Mgr Dupanloup par :. XII Dubard-Eymard.

19. Lettres adressées à Mgr Dupanloup par :. XII Dubard-Eymard.

24. [The lateral somitic frontier: The source of multipotent somitic cells in Xenopus].

25. [Hans Driesch (1867-1941) and the end of any preformationist vision of development].

26. Evolution of Somite Compartmentalization: A View From Xenopus .

27. Lineage tracing of sclerotome cells in amphibian reveals that multipotent somitic cells originate from lateral somitic frontier.

28. Xenopus SOX5 enhances myogenic transcription indirectly through transrepression.

29. Small-molecule flunarizine increases SMN protein in nuclear Cajal bodies and motor function in a mouse model of spinal muscular atrophy.

30. Specific Physical Exercise Improves Energetic Metabolism in the Skeletal Muscle of Amyotrophic-Lateral- Sclerosis Mice.

31. Long-term exercise-specific neuroprotection in spinal muscular atrophy-like mice.

32. Increased oxidative metabolism and myoglobin expression in zebrafish muscle during chronic hypoxia.

33. A new role for the calcineurin/NFAT pathway in neonatal myosin heavy chain expression via the NFATc2/MyoD complex during mouse myogenesis.

34. Nfat and miR-25 cooperate to reactivate the transcription factor Hand2 in heart failure.

35. Shift from extracellular signal-regulated kinase to AKT/cAMP response element-binding protein pathway increases survival-motor-neuron expression in spinal-muscular-atrophy-like mice and patient cells.

36. Physical exercise reduces cardiac defects in type 2 spinal muscular atrophy-like mice.

37. Myogenic waves and myogenic programs during Xenopus embryonic myogenesis.

38. Mef2d acts upstream of muscle identity genes and couples lateral myogenesis to dermomyotome formation in Xenopus laevis.

39. Apoptosis-inducing factor regulates skeletal muscle progenitor cell number and muscle phenotype.

40. Motoneuron survival is promoted by specific exercise in a mouse model of amyotrophic lateral sclerosis.

41. The Xenopus MEF2 gene family: evidence of a role for XMEF2C in larval tendon development.

42. Exercise-induced activation of NMDA receptor promotes motor unit development and survival in a type 2 spinal muscular atrophy model mouse.

43. Exercise-induced modulation of calcineurin activity parallels the time course of myofibre transitions.

44. Sprouty gene expression is regulated by nerve and FGF6 during regeneration of mouse muscles.

45. FGF6 in myogenesis.

46. Spatio-temporal expression of MRF4 transcripts and protein during Xenopus laevis embryogenesis.

47. Regular exercise prolongs survival in a type 2 spinal muscular atrophy model mouse.

48. FGF6 regulates muscle differentiation through a calcineurin-dependent pathway in regenerating soleus of adult mice.

49. Myogenic regulatory factors: redundant or specific functions? Lessons from Xenopus.

50. IGF-II is up-regulated and myofibres are hypertrophied in regenerating soleus of mice lacking FGF6.

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