Resistance training alters skeletal muscle structure and function in human heart failure: effects at the tissue, cellular and molecular levels.
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Skeletal muscle wasting in cachexia and sarcopenia: molecular pathophysiology and impact of exercise trainingSkeletal muscle myofilament adaptations to aging, disease, and disuse and their effects on whole muscle performance in older adult humansAge-related structural alterations in human skeletal muscle fibers and mitochondria are sex specific: relationship to single-fiber functionResting ventricular-vascular function and exercise capacity in heart failure with preserved ejection fraction: a RELAX trial ancillary studyMyofilament protein alterations promote physical disability in aging and disease.Cardiac myosin binding protein-C plays no regulatory role in skeletal muscle structure and functionChronic disuse and skeletal muscle structure in older adults: sex-specific differences and relationships to contractile function.Skeletal muscle mitochondrial density, gene expression, and enzyme activities in human heart failure: minimal effects of the disease and resistance training.Reduced rate of knee extensor torque development in older adults with knee osteoarthritis is associated with intrinsic muscle contractile deficits.Skeletal muscle ultrastructure and function in statin-tolerant individualsMolecular mechanisms underlying skeletal muscle weakness in human cancer: reduced myosin-actin cross-bridge formation and kinetics.Age-related slowing of myosin actin cross-bridge kinetics is sex specific and predicts decrements in whole skeletal muscle performance in humans.Age, human performance, and physical employment standards.Directly Measured Physical Function in Cardiac Rehabilitation.Transforming cardiac rehabilitation into broad-based healthy lifestyle programs to combat noncommunicable disease.Moderate-intensity resistance exercise alters skeletal muscle molecular and cellular structure and function in inactive older adults with knee osteoarthritis.Peripheral reflex feedbacks in chronic heart failure: Is it time for a direct treatment?Exercise-Based Rehabilitation for Heart Failure: Clinical Evidence.Reduced Muscle Strength in Barth Syndrome May Be Improved by Resistance Exercise Training: A Pilot Study.Training one type of striated muscle to counteract failure of another type
P2860
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P2860
Resistance training alters skeletal muscle structure and function in human heart failure: effects at the tissue, cellular and molecular levels.
description
2011 nî lūn-bûn
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2011年の論文
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2011年学术文章
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2011年学术文章
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2011年学术文章
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2011年学术文章
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name
Resistance training alters ske ...... cellular and molecular levels.
@en
Resistance training alters ske ...... cellular and molecular levels.
@nl
type
label
Resistance training alters ske ...... cellular and molecular levels.
@en
Resistance training alters ske ...... cellular and molecular levels.
@nl
prefLabel
Resistance training alters ske ...... cellular and molecular levels.
@en
Resistance training alters ske ...... cellular and molecular levels.
@nl
P2093
P2860
P1476
Resistance training alters ske ...... cellular and molecular levels.
@en
P2093
Bradley M Palmer
Mark S Miller
Martin M LeWinter
Michael J Toth
Nicholas G Bedrin
Peter VanBuren
Philip A Ades
P2860
P304
P356
10.1113/JPHYSIOL.2011.219659
P407
P577
2011-12-23T00:00:00Z