Literature DB >> 29446524

Impact of blood flow-restricted bodyweight exercise on skeletal muscle adaptations.

J E Jakobsgaard1, M Christiansen1, P Sieljacks1, J Wang1, T Groennebaek1, F de Paoli2, K Vissing1.   

Abstract

This study ascertains the ability of bodyweight blood flow-restricted (BFR) exercise training to promote skeletal muscle adaptations of significance for muscle accretion and metabolism. Six healthy young individuals (three males and three females) performed six weeks of bodyweight BFR training. Each session consisted of five sets of sit-to-stand BFR exercise to volitional failure with 30-second inter-set recovery. Prior to, and at least 72 h after training, muscle biopsies were taken from m. vastus lateralis to assess changes in fibre type-specific cross-sectional area (CSA), satellite cell (SC) and myonuclei content and capillarization, as well as mitochondrial protein expression. Furthermore, magnetic resonance imaging was used to assess changes in whole thigh muscle CSA. Finally, isometric knee extensor muscle strength was evaluated. An increase in knee extensor whole muscle CSA was observed at middle and distal localizations after training (3·2% and 3·5%, respectively) (P<0·05), and a trend was observed towards an increase in type I fibre CSA, whereas muscle strength did not increase. Additionally, the number of SCs and myonuclei associated with type I fibres increased by 65·7% and 20%, respectively (P<0·05). No significant changes were observed in measures of muscle capillarization and mitochondrial proteins. In conclusion, six weeks of bodyweight-based BFR exercise promoted myocellular adaptations related to muscle accretion, but not metabolic properties. Moreover, the study revealed that an appropriate total training volume needs further investigation before recommending bodyweight BFR to patient populations.
© 2018 Scandinavian Society of Clinical Physiology and Nuclear Medicine. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  angiogenesis; blood flow occlusion; low-intensity resistance training; muscle metabolism; strength training

Year:  2018        PMID: 29446524     DOI: 10.1111/cpf.12509

Source DB:  PubMed          Journal:  Clin Physiol Funct Imaging        ISSN: 1475-0961            Impact factor:   2.273


  4 in total

1.  Exercise-Induced Changes in Muscle Size do not Contribute to Exercise-Induced Changes in Muscle Strength.

Authors:  Jeremy P Loenneke; Samuel L Buckner; Scott J Dankel; Takashi Abe
Journal:  Sports Med       Date:  2019-07       Impact factor: 11.136

2.  Skeletal Muscle Microvascular Changes in Response to Short-Term Blood Flow Restricted Training-Exercise-Induced Adaptations and Signs of Perivascular Stress.

Authors:  Jakob L Nielsen; Ulrik Frandsen; Kasper Y Jensen; Tatyana A Prokhorova; Line B Dalgaard; Rune D Bech; Tobias Nygaard; Charlotte Suetta; Per Aagaard
Journal:  Front Physiol       Date:  2020-06-12       Impact factor: 4.566

3.  Six Weeks of Low-Load Blood Flow Restricted and High-Load Resistance Exercise Training Produce Similar Increases in Cumulative Myofibrillar Protein Synthesis and Ribosomal Biogenesis in Healthy Males.

Authors:  Peter Sieljacks; Jakob Wang; Thomas Groennebaek; Emil Rindom; Jesper Emil Jakobsgaard; Jon Herskind; Anders Gravholt; Andreas B Møller; Robert V Musci; Frank V de Paoli; Karyn L Hamilton; Benjamin F Miller; Kristian Vissing
Journal:  Front Physiol       Date:  2019-05-29       Impact factor: 4.566

4.  Effects of Low-Load Blood-Flow Restricted Resistance Training on Functional Capacity and Patient-Reported Outcome in a Young Male Suffering From Reactive Arthritis.

Authors:  Stian Langgård Jørgensen; Inger Mechlenburg
Journal:  Front Sports Act Living       Date:  2021-12-20
  4 in total

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