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  2. Muscle atrophy - Wikipedia

    en.wikipedia.org/wiki/Muscle_atrophy

    Muscle atrophy is the loss of skeletal muscle mass. It can be caused by immobility, aging, malnutrition, medications, or a wide range of injuries or diseases that impact the musculoskeletal or nervous system. Muscle atrophy leads to muscle weakness and causes disability.

  3. Sarcopenia - Wikipedia

    en.wikipedia.org/wiki/Sarcopenia

    Sarcopenia (ICD-10-CM code M62.84 [1]) is a type of muscle loss that occurs with aging and/or immobility.It is characterized by the degenerative loss of skeletal muscle mass, quality, and strength.

  4. Musculoskeletal injury - Wikipedia

    en.wikipedia.org/wiki/Musculoskeletal_injury

    In many cases, during the healing period after a musculoskeletal injury, a period in which the healing area will be completely immobile, a cast-induced muscle atrophy can occur. Routine sessions of physiotherapy after the cast is removed can help return strength in limp muscles or tendons.

  5. Atrophy - Wikipedia

    en.wikipedia.org/wiki/Atrophy

    Atrophy is the partial or complete wasting away of a part of the body. Causes of atrophy include mutations (which can destroy the gene to build up the organ), poor nourishment, poor circulation, loss of hormonal support, loss of nerve supply to the target organ, excessive amount of apoptosis of cells, and disuse or lack of exercise or disease intrinsic to the tissue itself.

  6. Denervation - Wikipedia

    en.wikipedia.org/wiki/Denervation

    Following denervation, muscular atrophy and degeneration occurs within affected skeletal muscle tissue. Within the skeletal tissue is observable progressive loss of weight of denervated muscles as well as reduction in muscle fiber size and quantity. These muscles exhibit a slowing of contraction speed, a reduction of developed tension, and ...

  7. Cachexia - Wikipedia

    en.wikipedia.org/wiki/Cachexia

    TNF has been shown to have a direct catabolic effect on skeletal muscle and adipose tissue through the ubiquitin proteasome pathway. This mechanism involves the formation of reactive oxygen species leading to upregulation of the transcription factor NF-κB. NF-κB is a known regulator of the genes that encode cytokines and cytokine receptors.

  8. Cellular adaptation - Wikipedia

    en.wikipedia.org/wiki/Cellular_adaptation

    Thymus atrophy during early human development (childhood) is an example of physiologic atrophy. Skeletal muscle atrophy is a common pathologic adaptation to skeletal muscle disuse (commonly called "disuse atrophy"). Tissue and organs especially susceptible to atrophy include skeletal muscle, cardiac muscle, secondary sex organs, and the brain ...

  9. Skeletal muscle - Wikipedia

    en.wikipedia.org/wiki/Skeletal_muscle

    Skeletal muscle (commonly referred ... involving prolonged periods of immobilization and weightlessness is known to result in muscle weakening and atrophy resulting ...

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