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6. HIGH-INTENSITY INTERVAL TRAINING DOES NOT AFFECT THE EXPRESSION OF ENDOTHELIAL GENES IN SPONTANEOUSLY HYPERTENSIVE RAT

8. The rRNA epitranscriptome and myonuclear SNORD landscape in skeletal muscle fibers contributes to ribosome heterogeneity and is altered by a hypertrophic stimulus.

10. Coordinated Regulation of Myonuclear DNA Methylation, mRNA, And miRNA Levels Associates with The Metabolic Response to Rapid Synergist Ablation-Induced Skeletal Muscle Hypertrophy in Female Mice

11. Coordinated Regulation of Myonuclear DNA Methylation, mRNA, and miRNA Levels Associates With the Metabolic Response to Rapid Synergist Ablation-Induced Skeletal Muscle Hypertrophy in Female Mice.

12. Editorial: Inter-organ crosstalk during exercise in health and disease: Extracellular vesicles as new kids on the block

15. Extracellular vesicle characteristics and microRNA content in cerebral palsy and typically developed individuals at rest and in response to aerobic exercise

20. Reduced mitochondrial DNA and OXPHOS protein content in skeletal muscle of children with cerebral palsy

21. Genetic and epigenetic regulation of skeletal muscle ribosome biogenesis with exercise

22. Mechanical overload-induced muscle-derived extracellular vesicles promote adipose tissue lipolysis

24. Genetic and epigenetic regulation of skeletal muscle ribosome biogenesis with exercise

25. Mechanical overload‐induced muscle‐derived extracellular vesicles promote adipose tissue lipolysis

26. An intron variant of the GLI family zinc finger 3 (GLI3) gene differentiates resistance training‐induced muscle fiber hypertrophy in younger men

27. Genetic and Epigenetic Regulation of Skeletal Muscle Ribosome Biogenesis with Exercise

36. Fusion-Independent Satellite Cell Communication to Muscle Fibers During Load-Induced Hypertrophy

37. Life-long reduction in myomiR expression does not adversely affect skeletal muscle morphology

38. Minimal information for studies of extracellular vesicles 2018 (MISEV2018):a position statement of the International Society for Extracellular Vesicles and update of the MISEV2014 guidelines

41. Elevated myonuclear density during skeletal muscle hypertrophy in response to training is reversed during detraining

42. Bovine Milk Extracellular Vesicles (EVs) Modification Elicits Skeletal Muscle Growth in Rats

45. Minimal information for studies of extracellular vesicles 2018 (MISEV2018): a position statement of the International Society for Extracellular Vesicles and update of the MISEV2014 guidelines

46. Minimal information for studies of extracellular vesicles 2018 (MISEV2018): a position statement of the International Society for Extracellular Vesicles and update of the MISEV2014 guidelines

47. The role of extracellular vesicles in skeletal muscle and systematic adaptation to exercise.

48. Minimal information for studies of extracellular vesicles 2018 (MISEV2018): a position statement of the International Society for Extracellular Vesicles and update of the MISEV2014 guidelines

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