Musculoskeletal Atrophy

Musculoskeletal atrophy is the progressive loss of muscle mass, strength, and supporting tissue function, often resulting from disuse, immobilization, aging, disease, or reduced mechanical loading. In skeletal muscle, diminished neural activity or force production lowers protein synthesis while promoting protein breakdown, causing smaller muscle fibers and impaired contractile performance; reduced loading can also weaken bone through altered remodeling. Studying this biological process helps researchers understand disability, frailty, neuromuscular disorders, and the effects of prolonged bed rest or spaceflight. Its mechanisms inform rehabilitation strategies, resistance-exercise programs, nutritional interventions, and therapies designed to preserve movement and skeletal integrity.

Musculoskeletal Atrophy - Related Videos

Research

JoVE Journal - Medicine
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A Novel Application of Musculoskeletal Ultrasound Imaging

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Cited by 14 •

2013

We describe a new ultrasound-based vector tissue Doppler imaging technique to measure muscle contraction velocity, strain and strain rate with sub-millisecond temporal resolution during dynamic activities. This approach provides complementary measurements of dynamic muscle function and could lead to a better understanding of mechanisms underlying musculoskeletal disorders.

Research

JoVE EoE - Neuropathology

Detection of Brain Atrophy by Hematoxylin and Eosin Staining

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2025

To detect brain atrophy, begin with slides carrying the deparaffinized brain sections from neurodegenerative mouse models at various ages.

Isolating Stem Cells from Soft Musculoskeletal Tissues

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Cited by 21 •

2010

Isolating adult stem cells from musculoskeletal soft tissues based on the cell's adherence speed to flask.

Tibial Nerve Transection - A Standardized Model for Denervation-induced Skeletal Muscle Atrophy in Mice

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Cited by 38 •

2013

The tibial nerve transection model is a well-tolerated, validated, and reproducible model of skeletal muscle atrophy. The model surgical protocol is described and demonstrated in C57Black6 mice.

Education

JoVE Core - Pathophysiology

Cellular Adaptation I: Introduction and Atrophy

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2026

Cells can adapt to environmental changes to maintain function and avoid injury, a process called cellular adaptation. Adapted cells exist in a reversible intermediate state with changes in size, number, phenotype, metabolism, or function. These responses help cells meet altered physiological or pathological demands; for example, enlargement of breast and uterine tissues during pregnancy. Early adaptations may enhance function, but persistent stress eventually causes tissue damage.Types of...

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