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1. Gene–dose-dependent reduction of Fshr expression improves spatial memory deficits in Alzheimer’s mice

2. Neuroendocrinology of bone

9. Training the physician-scientist: views from program directors and aspiring young investigators.

11. FSH blockade improves cognition in mice with Alzheimer’s disease

12. TSH enhances neurite outgrowth.

14. FSH, bone, belly and brain

15. First-in-class humanized FSH blocking antibody targets bone and fat

16. Repurposing erectile dysfunction drugs tadalafil and vardenafil to increase bone mass

17. Oxytocin regulates body composition

18. Metabolic Bone Disease and Osteoporosis

20. FSH, bone, belly and brain.

21. Gene–Dose–Dependent Reduction Fshr Expression Improves Spatial Memory Deficits in Alzheimer’s Mice

22. Gene–Dose–Dependent ReductionFshrExpression Improves Spatial Memory Deficits in Alzheimer’s Mice

23. Single Transcript Level Atlas of Oxytocin and the Oxytocin Receptor in the Mouse Brain

24. An Atlas of Brain–Bone Sympathetic Neural Circuits

27. FSIP1 regulates autophagy in breast cancer

29. WITHDRAWN: Atlas of Fshr Expression from Novel Reporter Mice

34. SAT668 Can We Treat Osteoporosis, Obesity And Neurodegeneration With A Single FSH-blocking Drug?

35. FRI675 Higher FSH Level Is Associated With Increased Risk Of Incident Hip Fracture In Older Adults, Independent Of Sex Hormone Levels

36. OR27-05 Two-pronged Mediation Of Adrenal Steroidogenesis By Oxytocin

37. FRI001 Tanycytic Thyroid-stimulating Hormone Receptor Activation Increases Blood-Hypothalamus Barrier Permeability And Induces Appetite In Female Mice

38. SAT649 Org43553, The First Low-molecular-weight Agonist Of The Human Luteinizing Hormone Receptor Induces Leanness And Energy Expenditure In Mice

39. Epitope-specific monoclonal antibodies to FSHβ increase bone mass

40. Convergence Research Unmasks Drug Targets Beyond Bone

41. Posttransplant Bone Loss

44. Cathepsin K and Bone Resorption

48. Clinical, genetic, and structural basis of apparent mineralocorticoid excess due to 11β-hydroxysteroid dehydrogenase type 2 deficiency

49. Pituitary Hormone-Driven Mechanism for Skeletal Loss

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