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5. The Role of Branched Chain Ketoacid Dehydrogenase Kinase (BCKDK) in Skeletal Muscle Biology and Pathogenesis.

6. Nicotinamide riboside for peripheral artery disease: the NICE randomized clinical trial.

7. Cocoa flavanols, Nrf2 activation, and oxidative stress in peripheral artery disease: mechanistic findings in muscle based on outcomes from a randomized trial.

8. Construct and criterion validity of muscle ultrasonography for assessment of skeletal muscle in patients recovering from COVID-19.

9. Mitochondrial Complex Abundance, Mitophagy Proteins, and Physical Performance in People With and Without Peripheral Artery Disease.

10. Cigarette smoking and mitochondrial dysfunction in peripheral artery disease.

12. Dysregulated Genes, MicroRNAs, Biological Pathways, and Gastrocnemius Muscle Fiber Types Associated With Progression of Peripheral Artery Disease: A Preliminary Analysis.

13. Effect of Telmisartan on Walking Performance in Patients With Lower Extremity Peripheral Artery Disease: The TELEX Randomized Clinical Trial.

14. Skeletal muscle properties show collagen organization and immune cell content are associated with resistance exercise response heterogeneity in older persons.

15. Potential Benefits of Combined Statin and Metformin Therapy on Resistance Training Response in Older Individuals.

16. A muscle cell-macrophage axis involving matrix metalloproteinase 14 facilitates extracellular matrix remodeling with mechanical loading.

17. Long-Lasting Impairments in Quadriceps Mitochondrial Health, Muscle Size, and Phenotypic Composition Are Present After Non-invasive Anterior Cruciate Ligament Injury.

18. Walking Exercise Therapy Effects on Lower Extremity Skeletal Muscle in Peripheral Artery Disease.

19. Mitochondrial DNA damage in calf skeletal muscle and walking performance in people with peripheral artery disease.

20. Skeletal Muscle Pathology in Peripheral Artery Disease: A Brief Review.

21. Associations of Poly (ADP-Ribose) Polymerase1 abundance in calf skeletal muscle with walking performance in peripheral artery disease.

22. Correlations of Calf Muscle Macrophage Content With Muscle Properties and Walking Performance in Peripheral Artery Disease.

23. Associations of Peripheral Artery Disease With Calf Skeletal Muscle Mitochondrial DNA Heteroplasmy.

24. Cocoa to Improve Walking Performance in Older People With Peripheral Artery Disease: The COCOA-PAD Pilot Randomized Clinical Trial.

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

26. Fiber typing human skeletal muscle with fluorescent immunohistochemistry.

27. Metformin blunts muscle hypertrophy in response to progressive resistance exercise training in older adults: A randomized, double-blind, placebo-controlled, multicenter trial: The MASTERS trial.

28. Human skeletal muscle macrophages increase following cycle training and are associated with adaptations that may facilitate growth.

29. Immunohistochemical Identification of Human Skeletal Muscle Macrophages.

30. Tumor Necrosis Factor Alpha-Induced Recruitment of Inflammatory Mononuclear Cells Leads to Inflammation and Altered Brain Development in Murine Cytomegalovirus-Infected Newborn Mice.

32. Myogenic Progenitor Cells Control Extracellular Matrix Production by Fibroblasts during Skeletal Muscle Hypertrophy.

33. Walking performance is positively correlated to calf muscle fiber size in peripheral artery disease subjects, but fibers show aberrant mitophagy: an observational study.

34. Immunobiology of congenital cytomegalovirus infection of the central nervous system—the murine cytomegalovirus model.

35. Glucocorticoid treatment of MCMV infected newborn mice attenuates CNS inflammation and limits deficits in cerebellar development.

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