ArticleThe journals of gerontology. Series A, Biological sciences and medical sciences2025
Submaximal Eccentric Training During Immobilization Does Not Prevent Serial Sarcomere Loss or Impairments in Mechanical Function in Old or Young Rats.
Article in The journals of gerontology. Series A, Biological sciences and medical sciences, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 4 papers.
What it found
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Who cites it
4 citing papers in PubMed.
- Alterations to longitudinal muscle morphology and mechanical function following immobilization and recovery in female ovariectomized and intact rats.Experimental physiology · 2026Article
- Stretch-shortening cycles mitigate single muscle fibre power deficits following a two-week immobilization of the rat hindlimb.Journal of muscle research and cell motility · 2026Article
- Multimodal imaging of tibialis anterior muscle adaptations to neutral-position immobilization.PloS one · 2026Article
- The mechanical loading environment associated with eccentric exercise is one of the key stimuli to trigger sarcomerogenesis: It's a stretch to say eccentric exercise does not promote serial sarcomerogenesis.Journal of sport and health science · 2025Article
Corrections and comments
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3 authors.
Funding
Abstract
The age-related loss of muscle mass is partly driven by a reduction in serial sarcomere number (SSN), and further SSN loss occurs during immobilization. Serial sarcomere number is associated with optimal force and power production and muscle passive tension, thus immobilization-induced SSN loss is especially a concern for older individuals who are often subjected to forced muscle disuse with illness and injury. We previously showed that submaximal eccentric resistance training increased SSN and improved muscle function in old rats. The present study investigated whether this training could prevent the losses of SSN and function when performed intermittently during immobilization. Ten old (32 months) and 10 young (8 months) rats underwent unilateral casting of the plantar flexors in a shortened position for 2 weeks. Thrice weekly, casts were removed for isokinetic eccentric resistance training. Pre- and post-training we assessed in-vivo maximum isometric torque at ankle angles corresponding to stretched and neutral muscle lengths, the passive torque-angle relationship, and isotonic power. The soleus and medial gastrocnemius were harvested for SSN measurements, with the untrained leg as a control. In old and young rats, muscles of the casted leg had smaller muscle wet weights (- 20%-40%), physiological cross-sectional area (- 16%-20%), and SSN (- 7%-29%) than the control leg. Furthermore, maximum isometric torque (- 37%-46%) and isotonic power (-≈70%) decreased, and passive torque increased (+≈400%) from pre- to post-training for both age groups. Thus, irrespective of age, submaximal eccentric resistance training 3 days/week was ineffective for preventing the losses of muscle contractile tissue and mechanical function during casting.
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Registered trials
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