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1. Sarco/endoplasmic reticulum calcium ATPase activity is unchanged despite increased myofilament calcium sensitivity in Zucker type 2 diabetic fatty rat heart

2. Adiponectin receptor agonist AdipoRon improves skeletal muscle function in aged mice

3. Top-Down Proteomics Reveals Myofilament Proteoform Heterogeneity among Various Rat Skeletal Muscle Tissues

4. Increased myofilament calcium sensitivity is associated with decreased cardiac troponin I phosphorylation in the diabetic rat heart

5. Sex differences in skeletal muscle alterations in a model of colorectal cancer

6. Novel Sarcopenia-related Alterations in Sarcomeric Protein Post-translational Modifications (PTMs) in Skeletal Muscles Identified by Top-down Proteomics

8. Top-down Mass Spectrometry of Sarcomeric Protein Post-translational Modifications from Non-human Primate Skeletal Muscle

9. Top-Down Targeted Proteomics Reveals Decrease in Myosin Regulatory Light-Chain Phosphorylation That Contributes to Sarcopenic Muscle Dysfunction

10. Metabolism as a Target for Age‐Related Muscle Mass and Functional Loss

12. Sex-Specific Skeletal Muscle Fatigability and Decreased Mitochondrial Oxidative Capacity in Adult Rats Exposed to Postnatal Hyperoxia

13. Exercise training attenuates aging-associated mitochondrial dysfunction in rat skeletal muscle: Role of PGC-1α

14. Effect of Age and Exercise on the Viscoelastic Properties of Rat Tail Tendon

15. Mitochondrial and Metabolic Gene Expression in the Aged Rat Heart

16. Effect of Aging on Power Output Properties in Rat Skinned Cardiac Myocytes

17. P92Reduced myofilament calcium-sensitivity in diabetic human left ventricular cardiomyocytes

18. Metabolic and Mitochondrial Gene Expression Changes in the Aging Heart

19. Effects of Age and Exercise Training on the Expression of Mitochondrial Genes in Skeletal Muscle

20. Regional differences in effects of exercise training on contractile and biochemical properties of rat cardiac myocytes

21. Exercise training alters length dependence of contractile properties in rat myocardium

22. Altered expression of skeletal muscle myosin isoforms in cancer cachexia

23. Linking metabolic and contractile dysfunction in aged cardiac myocytes

26. Moderate intensity, but not high intensity, treadmill exercise training alters power output properties in myocardium from aged rats

28. Prolonged endurance exercise decreases fiber loss and fiber atrophy in aged male rats

30. Adrenergic agonists recruit intrapulmonary shunt pathways without exercise or hypoxia

32. Morphometry, ultrastructure, myosin isoforms, and metabolic capacities of the 'mini muscles' favoured by selection for high activity in house mice

33. Altered single cell force-velocity and power properties in exercise-trained rat myocardium

34. Microarray expression analysis of effects of exercise training: increase in atrial MLC-1 in rat ventricles

35. Exercise training increases the Ca(2+) sensitivity of tension in rat cardiac myocytes

37. Phosphorylation of myosin regulatory light chain eliminates force-dependent changes in relaxation rates in skeletal muscle

38. Effects of a non-divalent cation binding mutant of myosin regulatory light chain on tension generation in skinned skeletal muscle fibers

39. Exercise Training Attenuates Aging-associated Reduction In Mitochondrial Biogenesis In Rat Skeletal Muscle

43. Altered kinetics of contraction in skeletal muscle fibers containing a mutant myosin regulatory light chain with reduced divalent cation binding

44. Myosin regulatory light chain modulates the Ca2+ dependence of the kinetics of tension development in skeletal muscle fibers

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