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1. Placental endocrine function shapes cerebellar development and social behavior

2. Proceedings of the 14th International Newborn Brain Conference: Neonatal Neurocritical Care, seizures, and continuous aEEG and /or EEG monitoring

4. Proceedings of the 14th International Newborn Brain Conference: Neonatal Neurocritical Care, seizures, and continuous aEEG and /or EEG monitoring

7. Oxidative Stress-Induced Damage to the Developing Hippocampus Is Mediated by GSK3β

8. Brain Ciliary Neurotrophic Factor (CNTF) and hypothalamic control of energy homeostasis

9. Proceedings of the 13th International Newborn Brain Conference: Fetal and/or neonatal brain development, both normal and abnormal

19. Placental neurosteroids shape cerebellar development and social behaviour

23. Leptin but not CNTF induces PTP-1B expression : putative explanation of CNTF efficacy in leptin-resistant state

24. Subcellular localization of CNTF and its receptors in the rat arcuate nucleus

25. Impact d'un régime alimentaire hypercalorique sur la régulation centrale du CNTF et de ses récepteurs dans le noyau arqué de rat

26. Lack of cross-desensitization between leptin and prolactin signaling pathways despite the induction of SOCS-3 and PTP-1B

27. Effets comparés du CNTF et de la leptine sur l'expression de leurs récepteurs respectifs dans le noyau arqué de souris

28. Co-localisation des récepteurs leptine et prolactine dans le noyau paraventriculaire : existe-t-il un dialogue entre leurs voies de signalisation ?

29. Co-localization of leptin and prolactin receptors in the paraventricular nucleus : evidence for the absence of cross-talk between the two signaling pathways

30. Hyperdopaminergia and altered locomotor activity in GABAB1-deficient mice

31. Le CNTF, un nouveau régulateur central de la prise alimentaire ?

32. Hyperdopaminergia and altered locomotor activity in GABA-B1-deficient mice

34. Differential compartmentalization and distinct functions of GABAB receptor variants

39. Corrigendum to “Heavy metal uranium affects the brain cholinergic system in rat following sub-chronic and chronic exposure” [Toxicology 261 (2009) 59–67]

42. Differential Compartmentalization and Distinct Functions of GABAB Receptor Variants

45. Brain Ciliary Neurotrophic Factor (CNTF) and hypothalamic control of energy homeostasis

47. Hyperdopaminergia and altered locomotor activity in GABAB1-deficient mice.

48. GABA(B) receptors as potential therapeutic targets.

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